All the Chemistry You Never Wanted to Know About Heroin, & More – American Council on Science and Health

Some of you screwballs out there have been complaining that I'm not giving enough chemistry lessons. No accounting for taste. If you'd asked me a few years ago when I first started writing these miserable thingsI would have doubted thatmy own family would bother to read them, but it turns out that they've become strangely popular.

So, let's do another.

THE MORE OR LESS SORDID HISTORY OF HEROIN

Here's the first journal articleon the synthesis of heroin. It is long and complex, despite the fact that the conversion of morphine to heroin is (now) a trivial reaction that can be done in minutes.

The title of the first reported synthesis of heroin. Wright, C. R. A.: On the action of organic acids and their anhydrides on the natural alkaloids, Journal of Chemical Society, 1874, 12, 1031. The paper contains no chemical structures, only molecular formulas. Does anyone know why? (1)

Source: Journal of the Chemical Society

OK, it's time...

Making Heroin is Easy Peasy. But it wasn't in 1874

Our progress in fightingpain hasn't progressed much since 1874, but organic chemistry has. It took four pages of experimental details for Wright to describe the procedure for the synthesis, purification, and analysis of the heroin he made. All of this for one very simple reaction...

Acetylation of morphine: Two hydroxyl groups react with acetic anhydride to form two acetateesters (red boxes) (heroin).

By contrast, the synthesis of aspirin from salicylic acid an almost identicalchemical reaction takes10 minutes(plus a little purification time) in an experiment suitedfor high schoolor organic 101 students.

Salicylic acid contains one hydroxyl group, which is easily acetylated to form aspirin. The acetyl group is shown in the red box.

See how similar the two reactions are?

ASPIRIN VS. HEROIN

In the 1890s Felix Hoffman, a German chemist working for Bayerwas acetylating everything in sightto examine the change in properties ofchemicals/drugs when hydroxyl groups are converted to acetate esters. Although Hoffman wasn't the first person to synthesize either aspirin or heroin, he did make both for Bayer, which sold both of them...at the same time... and in the same ad(!).

A Bayer ad, date unknown, selling both aspirin and heroin. Image: Bomb Magazine

You've withstood theDCLFHTM so what is your reward?

A BIOCHEMISTRY LESSON FROM HELL!

Why do the acetyl groups found inheroin and aspirin give the drugs enhanced properties compared to the hydroxylversions, morphine, and salicylic acid, respectively? The acetyl groups make a very big difference in the potency of the drugs in each case, but for different reasons.

ASPIRIN

Figure1: The inhibition of COX by aspirin. Aspirin forms a covalentbond to a serine group near the active site, which prevents the normal substrate from entering the channel to the catalytic (active) site ofthe enzyme.Source: Tulane University

Aspirin and other NSAIDs work by inhibiting a critical enzyme called cyclooxygenase (COX), which catalyzes the conversion ofa ubiquitous biomolecule,arachidonic acid (AA) into prostaglandinsand thromboxanesextremely potent hormones that have multiplefunctions throughout the body, including, pain and inflammation. As seen in Figure1, aspirin (4) fits into the channel in COX that leads to the catalytic (active) site (black dot).

Once there, the acetyl group, whichis chemically reactive,reacts irreversiblywith the serine another way of saying that aspirin transfersthe acetyl group to COX forming a covalent bond.Once theserine group of the enzyme has been acetylated things grind to a halt; the enzyme is inactivated.Arachidonic acid can no longer reach the catalytic site on COX so it cannot be convertedtoprostaglandins and thromboaxnes.This explains why aspirin, ibuprofen, etc.treatpain, fever, and inflammation (and also why they screw up your stomach.)

MAKING SENSE OF MORPHINE AND HEROIN

The function of the acetyl groups in heroin is completely different than thatin aspirin. In this case, they aremerely delivery devices -sort of molecular UPS trucks.

The two hydroxyl groups in morphine make themolecule hydrophilic (water-loving the opposite of lipophilic fat-loving). Lipophilic molecules are usually better at penetrating cells (and also getting into the brain) because they can pass more easily through cell membranes. Lipophilicityis measured or calculated(2) and expressed by a unit called logP, the higher the value the more lipophilic the molecule. (P is called the partition coefficient.Don't ask.) All you need to know is this:

A drug targeting the central nervous system (CNS) should ideally have a logP value around 2

Source: ACD Labs

Now, let's look at the logP values for morphine, heroin, and its primarymetabolite, 6-monoacetylmorphine. It should not be surprising that each time anacetyl group replaces a hydroxyl groupthe molecule becomesmore lipophilic. (For the chemical structure of these drugs see Figure 2 below.)

Morphine (two hydroxyl group)- 0.8

6-Monoacetylmorphine (one hydroxy group) -1.3

Heroin (no hydroxyl groups) -1.5

Sorry to interrupt your coma, but there is a bit more information you need to know in order to understand why heroin behaves like heroin metabolism.

Although heroin's logPis closeto 2 the ideal value for CNS drugs the difference between it and morphine, 0.7 doesn't seem like a big deal. But keep in mind thata 0.7 log10 unit difference means that heroin is6.5-timesmore lipophilic than morphine, so it gets to the brain more easily (this explains the "heroin rush").

Heroin's two acetyl groups are metabolized at different rates and atdifferent places in the body. This what makes heroin such an effective and deadly drug.

Figure 2. Metabolism of heroin. Original Source: Science Direct

Step 1. The acetyl group at the 3 position of heroin(3) (red box) is very reactive. It is cleaved by esterase enzymesin the blood in a few minutes, forming 6-monoacetylmorphine (6-MAM). This reaction occurs so quickly that heroin doesn't even reach the brain. And if it did, it wouldn't matter because heroin itself is not an opioid agonist.

Step 2. 6-MAM is also deacetylatedin the blood, formingmorphine, but not so fastthat it cannot reach the brain. It does so very quickly. In fact,6-MAM itselfis a mu-opioid agonist and this is probablywhy heroin packs more of a punch than morphine. Additionally, 6-MAM isdeacetylatedby the brain to give morphine.

It is not completely clear whether the "heroin rush" is due to 6-MAM itself, the rapid delivery of 6-MAM to the brain where it is converted to morphine, or both. But it doesn't really matter. Heroin is a very effective pro-drug of morphine (and/or 6-MAM).

It's amazing, in a twisted sort of way, that heroin, the scourge of mankind (at least until fentanyl came along) is a quintessential example of the power of pro-drugs.

Chemistry lesson over. Biochemistry lesson over.

You can wake up now.

NOTES:

(1) At this time chemical structures were unknown. Chemists could not determine how the atoms of a molecule were connected, only the molecular formula of that molecule.

(2) Virtually all the numbers given for logP are calculated, not measured. To do this, itwould take an eternity and cause chemists to be hurling themselvesinto the Kilauea Volcano. I have no idea how this calculation is done and am perfectly content to keep it that way.

(3) Why is that called the 3-position? Although there are rules for assigning numbers tomolecules for the purpose of naming them I'd rather drink nitric acid than go back and relearn them. Nomenclature makes organic chemists (more) crazy.

(4) Aspirin is the only NSAID to inhibit COX by forming a covalent bond. The others do so by tightly (but reversibly) binding to the enzyme.

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All the Chemistry You Never Wanted to Know About Heroin, & More - American Council on Science and Health

Chemical Distribution Market 2020 Expected to Reach at USD 359.14 Billion By 2027 Industry Challenges, Key Vendors, Drivers, Trends and Forecast…

Market Insights

Global chemical distribution market is expected to gain market growth in the forecast period of 2020 to 2027. Data bridge market research analyses that the market is expected to reach USD 359.14 billion by 2027 growing at a growth rate of 5.80% in the forecast period of 2020 to 2027. The chemical distribution market is growing due to the distribution of chemicals to many end user industries such as construction, automotive, infrastructure, electronics and pharmaceuticals among others.

The Chemical Distribution Market business report makes it easy to identify the types of consumers, their response and views about particular products, their thoughts for the improvement of a product and appropriate method for the distribution of certain product. Use of newest and established tools and techniques is highly imperative if the report is expected to be outstanding. The task of producing and managing marketing of goods and services is simplified and made effective with this report. Exhaustive and comprehensive market study performed in the credible Global Chemical Distribution Market report offers the current and forthcoming opportunities that put light on the future market investment.

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Major Market Players Covered in The Chemical Distribution Market Are:

The major players covered in the report are Univar Inc., HELM AG, Brenntag AG, ICC Industries, Inc., Barentz International B.V., Azelis S.A., Omya AG, Biesterfeld AG, Safic-Alcan, STOCKMEIER Group, REDA Chemicals, Ashland, BASF SE, Jebsen & Jessen Pte Ltd., Quimidroga, solvadis deutschland gmbh and TER HELL & CO. GMBH among other players domestic and global. Market share data is available for Global, North America, Europe, Asia-Pacific, Middle East and Africa, and South America separately. DBMR analysts understand competitive strengths and provide competitive analysis for each competitor separately.

Global Chemical Distribution MarketScope and Segments

Global chemical distribution market is segmented on the basis of type, product and end-use. The growth among segments helps you analyse niche pockets of growth and strategies to approach the market and determine your core application areas and the difference in your target markets.

On the basis of type, the global chemical distribution market is segmented into mixing, manufacturing, technical and safety training, packaging, and waste removal.

Based on product, the market is segmented into specialty chemicals, commodity chemicals. The speciality chemicals are further segmented into case, agrochemicals, electronic, construction, specialty polymers & resins, others. Commodity chemicals are further segmented into plastic & polymers, synthetic rubber, explosives, petrochemicals and others.

Based on the end-use, the chemical distribution market is segmented into specialty chemicals and commodity chemicals. Speciality chemicals are further segmented into automotive & transportation, construction, agriculture, industrial manufacturing, consumer goods, textiles, others. Commodity chemicals are further segmented into downstream chemicals, textiles, automotive & transportation, electrical & electronics, industrial manufacturing, others. Construction holds the largest share of the market in speciality revenue.

Regional Analysis

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Strategic Points Covered in Table of Content of Global Chemical Distribution Market:

Chapter 1: Introduction, market driving force product Objective of Study and Research Scope Chemical Distribution market

Chapter 2: Exclusive Summary the basic information of Chemical Distribution Market.

Chapter 3: Displaying the Market Dynamics- Drivers, Trends and Challenges of Chemical Distribution

Chapter 4: Presenting Chemical Distribution Market Factor Analysis Porters Five Forces, Supply/Value Chain, PESTEL analysis, Market Entropy, Patent/Trademark Analysis.

Chapter 5: Displaying the by Type, End User and Region 2013-2018

Chapter 6: Evaluating the leading manufacturers of Chemical Distribution market which consists of its Competitive Landscape, Peer Group Analysis, BCG Matrix & Company Profile

Chapter 7: To evaluate the market by segments, by countries and by manufacturers with revenue share and sales by key countries in these various regions.

Chapter 8 & 9: Displaying the Appendix, Methodology and Data Source

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Chemical Distribution Market 2020 Expected to Reach at USD 359.14 Billion By 2027 Industry Challenges, Key Vendors, Drivers, Trends and Forecast...

Gift to Honor Turpin’s Impact in Chemical Engineering – University of Arkansas Newswire

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Four family members who all hold degrees in chemical engineering have come together to honor the life of beloved professor and mentor Jim Turpin.

A gift from the Mourot family will establish the Dr. Jim L. Turpin Student Advising Center in the Ralph E. Martin Department of Chemical Engineering.

The $50,000 gift from Morrilton, Arkansas, natives Michael (B.S.Ch.E.'76, M.S.Ch.E.'77) and Janet Mourot was made to honor Turpin's impact on their family. Turpin served the College of Engineering for more than 40 years.

Mourot, his sons and his daughter-in-law all graduated from the department while Turpin was teaching. Joshua and Rebecca Mourot both graduated in 2003, and Jordan Mourot graduated in 2005, all with bachelor's degrees in chemical engineering.

During his distinguished career, Turpin received multiple teaching awards including the UA Alumni Association Outstanding Teaching Award in 1982, the Catalyst National Award for Excellence in Teaching in 1991, the Carnegie Foundation Arkansas Professor of the Year in 1996, and the College of Engineering Outstanding Service to Students Award in 2003. He was also a founding member of the UA Teaching Academy and a co-director of the Wally Cordes Teaching and Faculty Support Center.

More importantly, he made it his goal to personally know each of his students, and in doing so encouraged, mentored and profoundly impacted hundreds if not thousands of young lives.

Michael Mourot, who retired after 27 years with Dow Chemical and now is senior vice president with Sinclair Group Consulting, credited Turpin with showing him career opportunities that shaped the course of his life.

"Coming from a small Arkansas town the idea of chemical engineering was unknown," he said. My original plan was to be high school math teacher and a coach. Dr. Turpin helped change my plan. I was able to work for Dow for many years and then as a consultant. It was special to me to have Dr. Turpin as a mentor and then to have my two sons also mentored by him. It is a bond we will always share."

For Jordan Mourot, who graduated in 2005, Turpin was instrumental in his decision to come to the University of Arkansas, and he said Turpin was with him every step of his college career.

"Dr. Turpin was the person who welcomed me and everyone else into Intro 1 my freshman year and then sent me out with Process Control as a senior and gave me a hug on the stage at graduation," he said. "His messages in class, in particular the first lecture in Intro 1 and the last in Process Control had nothing to do with any technical problem solving, but were focused on ourselves and how the next four to six years in school and in industry would shape our lives. In those lectures, he gave us his heartfelt advice in living within your means and challenging yourself to continue learning in all that you do."

Jordan is now a Local Improvement Leader for Dow Chemical in Terneuzen, Netherlands.

2003 graduates Joshua and Rebecca Mourot both recalled Turpin's sage life advice.

"Everyone knew that when you were struggling or feeling overwhelmed that you went and talked to Dr. Turpin," Rebecca said. "After a visit with him, you'd walk out of his office feeling a little better and knowing that everything was going to be OK. He took the time to help me with scholarships and deciding between job offers, and his help and advice didn't stop once we left the university."

"Mentorship was at the core of Dr. Turpin's role in the department," Joshua said. "He was a great teacher and a transformational mentor. It is nearly impossible to find a student he taught that won't echo that reality; his ability to understand the individual person and tailor advice to their needs and situation was unique. As time passed for me in school, our meetings went from encouragement and just getting through a semester to planning for the future and strategizing not only about the next steps in my career, but about prioritizing my life. I am excited to be a part of establishing an advising center in his name as a representation of his tireless efforts to always deliver for his students."

Joshua attended medical school after graduation and is now a bariatric and advanced laparoscopic general surgeon.

Turpin's influence reached to all members of the Mourot family. Mallory Garcia (Mourot), Mike and Janet's daughter, said, "Dr. Turpin was very special to our entire family. As an example of how he cared for and influenced all of my family, I did not go to Arkansas, but he sent me a letter when I graduated high school even though I was not going to U of A." Mallory now works for Qbtech.

Michael Mourot said he hoped the advising space will bring together students and faculty and will lead to the same life-changing relationships his family forged.

"This new advising space will hopefully be a means for students to figure out their paths in their time in Fayetteville and beyond," he said. "From my experience, Dr. Turpin valued the one-on-one discussion time with his students to get to understand what you as the student wanted and how 'we' could get to that point. He never sugarcoated anything, but he was straight forward with you and made it clear that he was there to help. I hope that this space provides for those relationships between students and the faculty to grow."

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Gift to Honor Turpin's Impact in Chemical Engineering - University of Arkansas Newswire

BASF chemical producer to halt Muskegon Township operations – MLive.com

MUSKEGON, MI A multinational chemical company will close a Muskegon Township facility within the next two years, citing a consolidation of production.

The Germany-based BASF announced Monday that it will close a herbicide production facility, located at 1740 Whitehall Road in Muskegon Township, by 2022.

The township facility, formerly a Bayer CropScience facility, produces glufosinate-ammonium (GA) for use as a non-selective herbicide. It has been in operation since 1975.

BASF is also shuttering a plant in Knapsack, Germany, and 100 employees are expected to lose their jobs as a result of the closure. A breakdown of how many of those are employed in the Muskegon-area facility was not available.

A formal timeline for the closure has not yet been determined, according to the release.

Muskegon Township Supervisor Jennifer Hodges told MLive that she had not been informed about the closure prior to being contacted by media.

She said the local plant employs about 70 people, and she has since been told the plant is expected to be closed by July 2021.

She added that the property could be desirable for other industrial use. The campus is owned by BASF Agricultural Solutions US LLC, and spans 387 acres, according to public records.

BASF Agricultural Solutions US LLC is listed as the property owner of 1740 Whitehall Road, which includes 16 buildings totaling nearly 184,000 square feet. Most of the buildings on the property were built in 1976, with one 51,000-square-foot manufacturing building added in 1997.

A representative for BASF did not immediately respond to MLives requests for comment.

Like many companies that depend on the automotive industries, BASF has seen declining profits this year. The company said it will lose 2.12 billion in the third quarter (about $2.48 billion), and sales have fallen about 5 percent compared to this quarter last year. Shares in the company are down as well, according to market reports.

But earnings have improved since the height of the pandemic, according to a trade publication for the chemical and engineering industries. All told, the company is expected to post sales of $68 billion, down from $69 billion posted last year.

Elsewhere in the Muskegon area, manufacturers tied to the automotive industry have also faced downturns -- and layoffs -- because of the coronavirus pandemic. For example, Howmet Aerospace, a major employer in Whitehall, laid off about a quarter of its workforce earlier this year, citing decreased demand from major automotive plants.

But auto parts manufacturer Hilite International has recently signaled intentions to expand in Whitehall, adding about 108 jobs, mostly entry-level, to the area.

Read more on MLive:

Hilite to expand auto parts manufacturing operations, create 100 jobs in Whitehall

Marijuana retail, consumption outlets invited to locate in downtown Muskegon Heights

Jump in coronavirus cases causes anxiety for Muskegon County health director

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BASF chemical producer to halt Muskegon Township operations - MLive.com

Ty Lue says Clippers’ chemistry issues were due to injuries and a resulting lack of continuity – CBS Sports

According to new Los Angeles Clipperscoach Ty Lue, the team's biggest issue this past season was chemistry, or a lack thereof. In Lue's eyes though, the chemistry wasn't an off-court issue, or the result of players not liking each other. Instead, Lue thinks that the lack of continuity caused by injuries is what prevented the Clippers from finding a real rhythm.

"I think when you talk about chemistry and continuity, it is not off the court, the guys not liking each other," Lue said in his virtual introductory press conference, via ESPN. "When you talk about chemistry, it is more so [Paul George] came in and he had shoulder surgery, so he was out, he missed the whole training camp and was out the first 11 games of the season. Kawhi [Leonard] came in and couldn't participate in the whole training camp, and then we lost Pat Beverley, in and out of the lineup a few times."

Moving forward, Lue is obviously hopeful that the Clippers will be able to develop more consistent chemistry, and a big part of that is leadership. As the two stars of the team, most automatically expect that Kawhi Leonard and Paul George will be L.A.'s de facto leaders. However, that won't necessarily be the case according to Lue, who thinks that leadership will be a collaborative effort between several of the squad's veteran players, as well as the head coach himself.

"Leadership is different," Lue said. "You can talk about our two players, Kawhi and PG, they lead by example... And you are not going to have the best players be the natural leaders at all times. It doesn't happen like that. I think a lot of leadership has to come from me, has to come from Kawhi, PG, Lou and Pat Beverley. It's going to be collective... I got to show them different ways of leadership and they got to show me different ways of leadership. I don't know everything. They don't know everything. ... The biggest thing about leadership is just communication."

Heading into his new gig facing championship expectations, Lue knows that there will be immense pressure on him and his players, but he thinks that all parties are prepared.

"Anytime you have a chance to win a championship, it's pressure," Lue said. "I want to be one of the greatest coaches. In order to be great, you have to win."

There will be some added pressure on the Clippers this season as Leonard and George both have the option to opt-out of their current contracts after the 2020-21 campaign, and if things don't go well again, that possibility could become a reality. Lue isn't worried about that though, as he's confident that the two stars will remain in Clippers uniforms for the foreseeable future.

"I think Kawhi, PG are here to stay for a long time. We just gotta make it a great environment and we have to win," Lue said. "... [Leonard and George] are going to have to adjust to my system and my program. But also I also have to be able to adjust to their comfort zone and what makes them better. Also setting the tone defensively of being the two best two-way players in the league. I think it starts on the defensive end with those two guys with setting a tone defensively. I think health is the biggest thing moving forward."

After leading LeBron James and the Cleveland Cavaliers to an NBA title in 2016, Lue certainly has experience when it comes to dealing with pressure-packed situations. That experience will serve him well in L.A., where he will be expected to hit the ground running. Next season, the Clippers will at least have to advance farther in the postseason than they did this year -- when they were defeated by the Dallas Mavericks in the Western Conference semifinals -- for Lue's first season to be considered successful.

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Ty Lue says Clippers' chemistry issues were due to injuries and a resulting lack of continuity - CBS Sports

Searching for the holy grails of chemistry | Opinion – Chemistry World

A lot has happened since 1995. Smartphones, streaming, googling and graphene Youtube stars and Netflix, Amazon and Brexit banking crash, Obama, Crispr and the Mars rover Twin Towers, vaccines, Englands got the same Queen you get the idea. All the wonders and terrors of the 21st century were just around the corner and we were all much younger, still unironically partying like it was 1999. In that year, a group of chemists got together and curated a list of their subjects holy grails. In this special were exploring what has become of that list.

At just eight topics, the list is hardly exhaustive, but nor is it meant to be. There were many worthy and fascinating chemistry queries in 1995, and there are even more today as the original editors noted, these areas are a tiny fraction of the goals in chemistry deserving critical study. Their aim, Richard Zare recalls, was to highlight promising pathways as a challenge to curious minds a gauntlet as much as a grail. You may agree with their choices but I suspect youll have plenty of your own suggestions too. I hope theres at least something that rouses your curiosity, but if not youd still be in good company: in a letter to the issues editors back in 1995 Linus Pauling declined to participate, saying he didnt have any interest in the Holy Grails mentioned.

What is clear is that each grail has posed a challenge big enough, and a prize worthy enough, to attract the attention and effort of chemists for decades. And as Philip Ball notes, its the journey theyve taken that matters, not the destination. Which is what weve tried to focus on in this collection: tracking those journeys and mapping the pathways of science over a quarter of a century, to to ask ourselves, Well, how did we get here? The topics are a lens to look at the often meandering method of science to see how it brings us answers to our questions, but often by indirect routes.

Of course, there have been predictable changes and anticipated discoveries in each area, and much of the progress has been by the patient, incremental inching that typifies good science. But there are also many surprises, and looking back we can see how those unexpected changes have brought new ideas and directions for research. In 1995, cuprates were the hottest thing in high-temperature superconductors, and theyre still the material of choice for most in that area. But two decades later, a few researchers compressing metal superhydrides look like they will actually scoop the prize.

Weve also explored the publication data to reveal other each aspects of these stories. For example, some areas represent a sizeable portion of our community (it will surprise no one to learn that coaxing CH bonds into chemistry attracts more chemists than any of the other grails) while others are niche subjects confined to relatively small groups of specialists. Our bibliometric analysis also reveals something about the character of each field some are highly connected and collaborative, others more insular. And we get some hints of how answers uncovered in one field are connected to questions in another. We also see some of the changes in our society reflected here: water splitting and solar fuels papers, for example, have seen a huge surge over the last decade.

In that respect its worth noting that the Nobel prize in chemistry in 1995 was awarded to Paul Crutzen, Mario Molina and Sherwood Rowland for revealing the impact of CFCs on the ozone layer. 25 years later, the damage is now slowly being reversed, but thats largely thanks to political and economic action, not scientific. These grails (and many other fields of chemistry) could deliver truly transformational technologies, but as we face the immediate crisis of Covid-19 and a looming climate crisis, we should remember that science wont change much on its own.

Still, science has a vital role to play, and its clear that every answer it supplies brings many more questions too. Personally, the most exciting aspect of reviewing 25 years of research has been the realisation that theres so much more to come. What lies ahead waiting to be discovered?

Roll on 2045

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Searching for the holy grails of chemistry | Opinion - Chemistry World

Not By the Book: Chemistry, Math Gateway Instructors Adapt to Hybrid, Interactive Learning During Pandemic – UKNow

LEXINGTON, Ky. (Sept. 30, 2020) Instructors in the College of Arts and Sciences at the University of Kentucky are combining technology, learning techniques honed by experience, and human interaction to provide multifaceted learning environments for their students.

The goal, as always, is to keep students engaged with hands-on instruction methods even if the current pandemic limits face-to-face class time.

Students learn by working on problems, not just by listening, said Alberto Corso, associate professor and director of undergraduate studies in the Department of Mathematics. Thats what I tell all of my students. We all like to watch our favorite basketball teams play, but we cant play with them unless we practice. We need to be on the court and practice three-pointers.

The chemistry and mathematics departments present prime examples of this commitment to teaching excellence, as faculty members combine recorded lectures, Zoom class meetings for questions and some in-person work in problem-solving for students taking gateway classes.Teachers discuss this technique as a flipped classroom, where students take an active part in their education. They watch videos to prepare themselves for interaction with faculty and teaching assistants.

The flipped classroom has been the big innovation in teaching over the past 10 years, said Kathi Kern, director and associate provost of Teaching, Learning, and Academic Innovation. Two of our very popular undergraduate courses flipped almost 10 years ago HIS 121 (War and Society), and STA 210 (Introduction to Statistical Reasoning). In each of these courses, faculty pre-recorded lectures so that class time could be devoted to discussion, analysis and experiments, with faculty and graduate students interacting with the undergrads. This style of teaching in Stats 210 was the inspiration for the design of some of the large, interactive classrooms in the Jacob Science Building.

Kern compared flipped classrooms to preparing for discussion in a seminar.

Students shouldnt come to class just to listen to a faculty member, she said. Its like reading a novel on your own and coming to class to discuss it. You could use your class time to watch a documentary film, but if people already have absorbed that material, then they get to interact with each other. They encounter the material initially on their own, but then they make sense of it with their faculty.

The idea of the flipped classroom informs teaching in the colleges gateway chemistry classes, said Allison Soult, senior lecturer and director of general chemistry. Technology has aided instructors in interactive learning, and that technology continues to benefit students during the pandemic. Such programs as the Canvas online learning system and the interactive PlayPosit app make coordinating classes easier and more meaningful.

We already had our students watching videos, and then we had them come to class to do active learning activities, Soult said. Weve recorded four- to six-minute videos some people go a little longer and then we use a tool called PlayPosit. The app lets you insert questions. The questions pop up, and you have to answer them before you can go on. The app then sends the answers back to Canvas for a grade.

The app motivates the students to watch the videos and measures their understanding of the content. Then students can come to class through Zoom and ask more advanced questions.

Before class, I can go in and see that the students were struggling with this topic, Soult said. Then in my Zoom session, I can do an overview of that topic, and Ill record that session as part of my class.

In gateway mathematics classes, faculty members are mixing in-person and online class meetings with recorded lectures to give students a full look at this difficult subject, Corso said. Corso is teaching a yearlong calculus class for biology majors. Faculty members worked diligently before the semester started to plan out lectures, information sessions and recitations with teaching assistants to make sure a mix of in-person, live-conferencing and video lectures would do the trick.

To devise our plan and this is something for all the service classes that math teaches, with about 5,000 students in any given semester the coordinators of the courses met together over the summer every week with a different topic: How do we do the lectures? How do we organize the recitations? How do we organize the exams and quizzes? For my class, we decided wed have videos that the students could watch on their own time, and then the class time would be used for answering questions.

Thus, Corso is teaching his class by mixing lectures and question sessions with working on problems in groups the heart of mathematical learning.

Typically, our calculus classes meet for lecture three times a week and for small recitation sections twice a week, he said. For small recitations, on Tuesdays, half the class is supposed to be in the classroom, and half the class is watching the livestreaming in Echo 360. Students can type questions and ask the TA from home. On Thursdays, its more of a Zoom meeting where students typically work in groups with problem sheets.

Katherine Paullin, lecturer in mathematics, coordinates 22 sections of college algebra, including two joint college-credit classes in high schools. The classes all have the same basic Canvas shell that students can work from and interact with instructors.

We redid the class over the summer of 2019, she said. All students are seeing video lectures that I recorded myself. They have a Canvas page where they can read the definitions of the terms I use and the formulas, and then they get to watch a video of me working problems just as I would in the classroom.

Those recorded video lectures actually can be a benefit for instruction, Kern said.

Students are first introduced to the course topics with a recorded lecture, and then they deepen their understanding with discussions, applications, simulations and sample working problems, she said. Its the same model as the classic lecture with recitation sections or labs: a time to be exposed to the material and then a time to practice. In this model, the practice more often takes place with the professor rather than solely the graduate assistants. Faculty spend a lot of time making their recorded lectures, because its too painful to post something that isnt good. Another advantage is that a recorded lecture can be captioned, which helps all sorts of students. And, of course, a lot of students like having a recorded lecture that they can review before exams.

For one student Grace Kearney, a UK student in Kerns Citizenship, Diversity and Community class the flipped classes offer her decided advantage when it comes to preparation and study.

I think that flipped classes make it easier to learn in class because youve already been exposed to the material, Kearney said. I liked flipped classes, because they give me independence and flexibility as to when I start learning material. Its also nice because you can normally get your questions sorted out in class, instead of having to email your professor.

The college algebra sections demonstrate the problem-solving abilities of university instructors: Paullin points out that different teachers are approaching the class with a great deal of flexibility.

Each instructor is using the class time as they choose, she said. We have three sections that are completely online. Were all doing things a little bit differently.

And its that flexibility along with the technological innovations that assist both online and in-person learning that iscreating opportunities for innovation amid trying times, said UK Provost David W. Blackwell.

Through blending different delivery methods, our faculty members are demonstrating their creativity and dedication to deliver quality courses for our students under difficult health and safety guidelines, Blackwell said. These techniques accelerate and improve learnin
g even beyond the pandemic setting, which is a concept we have been leaning into we want to come out of this better than we were before.

Were all adapting to new modalities, Paullin said. Thats what we do as educators.

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Not By the Book: Chemistry, Math Gateway Instructors Adapt to Hybrid, Interactive Learning During Pandemic - UKNow

Group workouts give Wolves a chance to work on chemistry – Minneapolis Star Tribune

The Timberwolves are running their first group workouts and scrimmages since the NBA postponed its season March 11. They likely wont take the floor again for another few months after this as the NBA decides when it will begin the next season.

Of course, coach Ryan Saunders has been installing concepts the Wolves will be using on both ends of the floor, but the main objectives of this camp, he said, were just to find a safe way to be around each other and to compete. If they did nothing else, this time would still be a success.

Our No. 1 goal within this week was to compete, Saunders said. Because its been a really long time since theyve been able to do that in more of a structured setting. Then we also wanted to connect with this group. While youre connecting, you also want to be able to build relationships. We talked about it today where the team that is the most connected will get a jump start on next season whenever next season starts.

Under President Gersson Rosas the Wolves have made a concerted effort to grow their off-court chemistry. Before last season there was a trip to the Bahamas, and after Rosas revamped the roster at the trade deadline, the Wolves took advantage of a trip to Miami to get in some team bonding.

But does off-court chemistry actually lead to on-court chemistry? Does playing well require that everybody be friends off it? Saunders thinks there is a correlation.

Theres a lot of documented teams that have been talented groups but, throughout the league, and not just in basketball, but in other sports, that maybe have a lot of talent but they arent the most connected group away from competition on the court or field, Saunders said. So I do believe that it plays a role.

It helps to accomplish that when the team is isolated in a hotel for a few weeks with nothing else to do.

When you talk about culture, when you watch these playoffs, you see a lot of these teams that have gone through those types of builds, and those are the things that they do they play together, they play hard and they play for each other, Saunders said.

An important part of establishing that, Rosas said, is the continuity Saunders has brought with his coaching staff. The NBA coaching carousel has been in full swing now with big names like Mike DAntoni and Doc Rivers becoming available.

But Rosas has liked what he has seen from Saunders, especially after being handed a completely different roster at the trade deadline and not having Karl-Anthony Towns for a significant chunk of the season.

We knew when youre going into the process of building a program, its hard, Rosas said. I talked about it last year when I took this job that this first season wasnt going to be about the record. It wasnt going to show what we were doing. It was going to be more about our ability to establish a program, to establish an identity, to change the philosophy and bring the organization into more of a modern platform. And weve done that in a lot of ways.

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Group workouts give Wolves a chance to work on chemistry - Minneapolis Star Tribune

Vols R-senior Brandon Kennedy talks about the chemistry of offensive line – WJHL-TV News Channel 11

Knoxville, TN When the Tennessee Volunteers kick off on Saturday night there will be one Volunteer who will be going through his 6th opening night with two different teams.

After missing nearly the entire 2018 season, Brandon Kennedy was granted a sixth year of eligibility with the Vols. The former Alabama graduate joined the big orange after the sec had to change its graduate transfer rule in order for Kennedy to be eligible immediately.Kennedy will have the most experience on an offensive line that is all 5-stars and he feels the chemistry couldnt be better.

I think we have better chemistry now because throughout this whole fall camp weve relied on some guys that may not usually get certain opportunities. Theyve been able to learn and grow and also some of the young guys have been able to get more opportunities. This whole pandemic has allowed them to come along, and we feel great going into the first game at who we will have out there, says Kennedy.

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Vols R-senior Brandon Kennedy talks about the chemistry of offensive line - WJHL-TV News Channel 11

Girls tennis: Cardinal’s chemistry continues to persevere in win over Spuds – Echo Press

"We started well by winning Nos. 3 and 4 singles and Nos. 1 and 2 doubles," Alexandria head coach Dave Ronning said. "I think that was encouraging to get those right off the bat. I always want the kids to look around the courts at their teammates because that will lift you up too. Moorhead is a solid team. They split with Willmar, so getting that quick start was the key for us."

Jaya Hatlestad returns a serve in the No. 4 singles match. Hatlestad won 6-1, 6-1 in Alexandria's 5-2 win over Moorhead. (Jared Rubado / Echo Press)

One of the first wins on the board came from Jaya Hatlestad in the No. 4 singles match. She beat her opponent 6-1, 6-1, and has settled into her role.

"I feel comfortable playing singles because I'm in the same spot I was in last year," Hatlestad said. "There's always adjustments you have to make for each opponent. I think what helped is we played some weaker teams at the start of the season that is rebuilding. We have confidence now when we are playing teams like Moorhead."

Hatlestad routinely picks up a point for the Cardinals. Because of Alexandria's depth, she is slotted in the fourth singles spot, even though she has the talent to put her higher up on other teams.

Sarah Jiang returns a backhand shot during her No. 3 singles win over Elizabeth Glatt. Alexandria beat Moorhead 5-2 on Tuesday afternoon. (Jared Rubado / Echo Press)

"We are really happy with Jaya's progress," Ronning said. "She's getting better every single match. Sarah (Jiang) too. She's never been blown out even in the ups and downs she's had. When they get beat, it's always a tough three sets. I'm really happy with our depth and what we have going on there."

Alexandria's top two doubles teams each have only one loss on the season. With only 11 regular season meets on the schedule, each pairing's instant connection has given them an edge.

"It's really fun to see because we didn't know what to expect," Ronning said. "Whitly (Netland) played No. 3 doubles last year and Kaylee (Svee) was playing singles. We didn't know if the chemistry was going to be there or not. Right from the get-go they had it. Same with Anna (Doherty) and MaKenna (Aure). They're such great athletes, and I encourage them to just fly around the court. They play hockey together, and I want them to play hockey out here."

MaKenna Aure lunges for a low shot on on Thursday afternoon while her partner, Anna Doherty, waits in the backcourt. Aure and Doherty won their No. 2 doubles match 6-1, 6-1.

Hatlestad believes the connections on the court comes from the leadership.

"We have a lot of seniors out here," Hatlestad said. "There's a lot of girls that have been playing since freshman year. I think it's shown how well this team works together even though we are on our own. We are always cheering each other on in between points. In practice, we know we can make each other better because we know everybody's potential."

With only one meet left before the conference tournament, Ronning thinks his girls can take another step forward.

"The sky's the limit with this team, and I really believe that," Ronning said. "When we go to Brainerd, that's going to tell us a lot. Whether we beat them or not, we just want to go there and compete really hard, so we get some momentum going into the conference tournament."

Anna Doherty jumps to return a shot in her No. 2 doubles match against Moorhead. Doherty and MaKenna Aure beat their opponents 6-1, 6-1. (Jared Rubado / Echo Press)

ALEXANDRIA 5, MOORHEAD 2

SINGLES- No.1 Katryna Hanson(M) def. Briana Holm 2-6, 6-2, 6-4; No. 2 Nicole Hoogland (M) def. Tabea Roggenbuck 6-2, 6-1; No. 3 Sarah Jiang (A) def. Elizabeth Glatt 6-1, 6-1; No. 4 Jaya hatlestad (A) def. N/A 6-1, 6-1; DOUBLES- No. 1 Kaylee Svee-Whitly Netland (A) def. Azylen Lunak-Bailey Overbo 6-2, 6-4; No. 2 Anna Doherty-MaKenna Aure (A) def. JOsie Palmer-Anna Kiser 6-1, 6-2; No. 3 Macie Tilleskjor-Grace Reed (A) def. Kylie Torkelson-Sophie Swenson 6-3, 6-2;

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Girls tennis: Cardinal's chemistry continues to persevere in win over Spuds - Echo Press

The Clippers Lacked The Chemistry And Identity Needed To Be Champions – UPROXX

Patrick Beverley was busy. He was busy back in July 2019, when he reportedly knocked on LeBron Jamess door the night Kawhi Leonards trade to the Clippers was announced to deliver the not extremely sure in its own words promise, Its pretty much over for you guys now.

He kept busy when the season got started, taunting fans at Oracle after the Clippers beat the Warriors in late October, telling Steph Curry, You had the last five years, the next five years are mine.

You could say that Beverley stayed busy all season, easily picking up where he left off when the Bubble got underway. He compared Nikola Jokic to Luka Doncic only in their propensity for a lot of flailing and shot down Michele Roberts, the executive director of the NBPA, in a players meeting during the game stoppages as she explained the potential financial ramifications of the pause. Beverley is a career talker, deft at flinging smirking barbs at anyone and everyone, but the talk was always best paired with basketball. This season, much of the talk came despite the Clippers not quite living up to lofty expectations.

The Clippers own loud, vaguely prophetic preseason trajectory mirrored Beverleys. Theyd made visible passes at Leonard, sending their people to sit in the stands in Toronto as part of a prolonged courting process that ultimately had Steve Ballmer crowing in victory during Leonard and Paul Georges first press conference in L.A. The teams marketing machine quickly got to work, attempting to position the franchise as the blue collar alternative to the Lakers even as plans were unveiled for the teams new $1 billion dollar arena in Inglewood.

In the fall, the team cut through the latent haze of its summer fireworks and started the slow climb to the prophesied top the same way any other club would have to, one game at a time. To its credit, the front office got out of its players way. The Clippers looked perfectly fine. Their schedule stacked them early against their Staples Center roommates, and two former champs in the Raptors and Warriors, they beat all three by double digits. But the losses that started to pepper their season, looking back, gave some clues as to what was coming. When Kawhi Leonard sat, they played like a barely above-.500 team, going 8-7 without him.

Leonard is a masterclass in basketball all by himself. Watching him play, there is a sense that hes never quite in the game, its physicality and sharply tactile elements slipping around the hulk of him as he works lightly above it all, looming in another plane. Hes not an absent player when Leonard dominates, the whole floors in his thrall but to reach that higher, bullying cognitive state, his head has to be clear, while the engrossing repetitions necessary in contextualizing the court calling plays, slowing things down, constant communication is best left to somebody else.

In Toronto, Leonard had a floor savant in Kyle Lowry, someone whose future-sight of how things could unfold, in any dozen of possible scenarios, came just as lightly and by reflex. Lowry ground all possible barriers down so Leonard could make cutting through the paint, or finding a clear corner to fade from, look like water-walk. In San Antonio, buttressed between Tim Duncans leadership, an overall equilibrium that kept offense and defense forever flowing into each other, the playmaking of Tony Parker, and Manu Ginbilis sprawling, fearless range, Leonard was protected. With no pressure to lead, he was free to pop up, fadeaway, step quietly through all the space being created for him, and afforded endless lethal routes to the rim. In L.A., there was no such sage.

Without leadership, the Clippers are a collection of good, but easily stymied, players. Denver was able to adjust. Whether they needed the three games they took to do it or added two for dramatic effect will stay a club secret, but they clamped down on defense to frustrate, chase, and do whatever was needed to mar the Clippers favorite looks. Without an efficient leader to reorganize and redirect, Leonard, George, Lou Williams, and Montrezl Harrell tried in vain to go through through the walls the Nuggets were putting up.

There were plenty of other ways the Clippers lacking leadership cost them. The post-Game 7 blame shifts, while vague, named absent chemistry, fatigue, and a lack of understanding when it came down to, in Leonards words, the exact spots we need to be, but all these ephemeral excuses cut to a harder point: they had so much time to figure it out.

Per Cleaning the Glass, the starting five the club relied on in the postseason of Marcus Morris, Ivica Zubac, Beverley, George, Leonard played 298 possessions together in the regular season. The trio of Leonard, George and Williams together played 452. The team, as a whole, played 6,903. The Lakers, comparatively, ran their playoff lineup through 634 possessions, and thats still second to the teams regular season lineup that included Avery Bradley, who opted out of the restart. The Lakers also have a roster of largely new, occasionally discordant pieces, but they also have James, someone who not only excels at putting the onus on himself to close the gap between a freshly constructed team and its championship aspirations by fostering a very specific organizational culture, but who patently demands of teammates put up or shut up.

As much as the Clippers front office worked tirelessly to separate themselves from the purple and gold presence that haunted their home on alternating nights, it may have served them to study the devil they knew. In James sophomore year under the marquee lights of Showtime, the Lakers brought back only five players out of last years mainstays and a brand new coach. Add in a late acquisition of Dion Waiters, an even later sub of J.R. Smith, and Rondos initial absence from most of the restart, and the Clippers look like old friends by comparison.

Another team not all that concerned with how their fresh chemistry could be tested are the Heat, who entered the ECF with a 10-2 record. Their secret, forged from Pat Rileys unflinching system and honed by the bold, crafty coaching of Erik Spoelstra is so loud it isnt really one at all they talk, all the time, they never stop. And to the verbal cues they touch, toss hand signals, all of it combining into a confidence thats cyclonic, whipping around the court without leaving air for even a breath of doubt.

What the Clippers lacked was the road testing. The teams leadership, seasoned as it was with Rivers knowing the ropes since 2013 and a tenured front office braintrust so intent on giving the team all the tools it needed to triumph in the postseason, saw the road of the regular season as a thing to get over instead of through. It was impossible to hand Leonard a team constructed for a championship and expect him to lead it while maintaining a strict (and, to be fair, necessary) schedule of load management you cant drive from the bench. They wanted him perfect for the playoffs, but the team suffered because in his first year as a true, singular leader, he couldnt see what made it tick.

Even Denver, now the surprise out of the West, was a story as subtle as a mountain will sit stubbornly, forgettably, at the horizon, not showing its full scope until you yourself draw any closer. Nikola Jokic and Gary Harris were drafted in 2014, Mike Malone hired a year later, Jamal Murray drafted in 2016, Paul Millsap snagged as a free agent in 2017, all gradual changes working toward something bigger with Denvers largely unchanged bench as a ballast.

This season, including the March-June hiatus, has been happening for nearly 12 months. A historic near-year of bought time to address what had loomed since the Clippers first handful of games. Whether Ballmer and Rivers were initially intent on laying tracing paper over Torontos blueprint, or tried to protect who they saw as their best chance to win, the team never stored up enough experience together to fuel them when it came time to close.

Chemistry comes from work, whether it be a collecti
on of personalities coalescing after going through the wringer or a group thats been blitzed and battle-tested, whove learned not just from wins but adjusted quickly after losses. Its cited as quickly in the story of the underwhelming Clippers as it is in the narrative surrounding a team has that makes it all the way, but trace chemistry back to its origins on a team where its humming at a discernible volume and youll find a secure sense of trust. When a teams winning, trust and how it manifests passing, communication, the versatility to adapt in tight spots can be something rolled easily into a category of intangibles, a permeating element that touches everything a team does well, not necessarily supported by any one stat but crucial to in-game execution. When trust wanes, as etherial as it can seem, all of those intangibles visibly suffer players go ISO, chatter quiets, shooting cools, and team confidence wilts.

Rivers acknowledged the absence of trust on the floor in Game 7, saying postgame, We start missing shots and you can see us trusting less and less and less. Williams, too, lamented on this while looking back on the season as a whole, saying that A lot of the issues we ran into, talent bailed us out. Chemistry didnt.

The Nuggets, on the other hand, have it in spades. They have learned from every game in the playoffs, proving a team not considered elite defenders could improve enough on that end of the floor to clamp down on the Clippers, relentlessly rattle their shot selection, and muck up any semblance of half court offensive cohesion. They hustled, going after loose balls where the Clippers wouldnt, kicking the ball around to tire out a team already looking gassed. Successfully under the Clippers skin, Denver dismantled any confidence L.A. had left, picking passes from overhead like low-hanging fruit, slicing languid lanes to the basket, pulling up from practically anywhere they wanted. A team doesnt come back 3-1 without an unwavering, self-generative wellspring of trust. The Nuggets did it twice.

The problem with treating chemistry as eventuality, like treating talent as a tangible reserve, crystallizes on a team like the Clippers, stacked so thoroughly with personalities that chemistry essentially inverts. When the majority of a roster sees themselves as team figurehead or embodiment their concerns and problems on and off court the most pressing theres no collective understanding as to what the team even is, let alone aspires to be.

You go from last year, we were the team that wasnt expected to make the playoffs to going and being a championship-caliber team when you bring in two high-level guys, thats an adjustment, Williams said. He was right, but it was an adjustment nobody on the team ever bothered to make.

As a nebulous identity, the franchise became a useful vacuum in sucking up any blame being tidily brushed aside. George said in June the team expected to come in and win it all, there was no plan to take a year to get used to each other. After elimination, George shrugged, This was not a championship or bust year for us. He could be revisionist because there was hardly a team narrative to follow, everything up to then had been individual lines in a cast of leads imagining their own stories.

Even Rivers, his third trip back to this exact same place, could give no definitive answer to something that had been heralded as surefire suddenly stuttering out. Prior to Game 7, Rivers told his team to play free, a strange and tenuous notion for a group with title expectations that faced elimination. There was no form, no follow through, like any measure of heart shown was just going to weigh them down.

I mean, listen, obviously I could have done something more, Rivers said regretfully after the loss, and while the overwhelming response is to ask why he did not, the burden of blame, like the absent mantle of leadership, never rested squarely on Rivers. Having gotten through this prolonged season without ever coming together, theres still no team to really isolate or analyze, only a sense of each player, talent as Williams called them, slowly backing away into their respective off seasons. Rivers cant plan for what still doesnt exist.

In a presser hosted by NBA Canada after the Nuggets series win, Murray was asked repeatedly for the secret behind how theyd made it happen. Murray, polite, credited his teammates and the identity theyve built together over the years. But, with a pause at another question on his success, Murray dipped his head thoughtfully and delivered the only potential dig: Theres a thing called mental work, too. He talked about the ability to stay focused, clearing out what isnt important to the game being played and zero in on the work that needs to be done. It is not an eventuality, but a directive to dig in and take responsibility, to create something lasting with the team around you.

Effort is what Murray was getting at, playing like it matters. In the last game the Clippers would play all season, that effort was clear, painful only to the Clippers. Denver never played free, but anchored by joy and tied with trust they ascended. Next season, the Clippers could stand to be boxed in by that kind of belief.

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The Clippers Lacked The Chemistry And Identity Needed To Be Champions - UPROXX

Fruit flies’ protective corneal coatings reproduced | Research – Chemistry World

A nanoscale replica of the coating that protects the eyes of fruit flies that retains its anti-reflective and anti-adhesive properties has been developed by a team of reserchers at the University of Geneva. This new nano-coating, which is comprised of the protein retinin and corneal wax, could find applications in contact lenses, medical implants and textiles.

The researchers were able to produce retinin cheaply by using genetically modified bacteria, and then purifying it and mixing it with various commercial waxes and coating glass and plastic surfaces. They also showed that their nano-coating can be deposited on other surfaces such as wood, paper, metal and plastic.

Our work identifies how multifunctional nano-coatings are created in nature and translates this knowledge into technological applications, the scientists explained. They noted that they achieved this through a combination of mathematical simulation, phylogeny, genetics, biochemistry and forward engineering.

The bio-inspired nano-coatings proved to be stable, even after 20 hours of washing. However, the material was easily damaged by detergent or scratching, and the researchers suggest that technological enhancements could make it stronger. Its anti-reflective properties have already caught the attention of contact lens manufacturers, and its anti-adhesive properties could be of interest to medical implant manufacturers.

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Fruit flies' protective corneal coatings reproduced | Research - Chemistry World

Baird’s rule of aromaticity extended to all-metal systems – Chemistry World

A new study has shown that all-metal species can follow Bairds rule and have aromatic excited states.

Hckels rule is one of the most widely known concepts in organic chemistry. It says that a cyclic molecule is aromatic if the ground singlet state has 2n+4 -electrons and anti-aromatic if there are 4n -electrons. Bairds rule works in a very similar way, except it refers to the lowest lying triplet state of the molecule. The other key difference is that aromaticity in this case is reversed i.e. the molecule is aromatic if it has 4n electrons. This makes Bairds rule useful in assessing the properties of excited molecules.

While aromaticity is traditionally thought of as the domain of the organic chemist, recent studies have shown that molecules consisting entirely of metal elements can also obey Hckels rule. Now, a collaboration between researchers in China, Spain and Poland, led by Jun Zhu of Xiamen University and Miquel Sol of the University of Girona has shown that Bairds rule can also extend to all-metal systems.

Using density functional theory calculations, the researchers were able to show that a series of lithiumaluminium clusters obey Bairds rule. They began by comparing the delocalised electron density of the metal clusters with that of cyclobutadiene, a well known organic molecule that obeys Bairds rule. Further studies considering the geometry and symmetry of the clusters confirmed their aromatic character.

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Baird's rule of aromaticity extended to all-metal systems - Chemistry World

Dancing With the Stars: Why Peta & Vernon Davis Have The Best Chemistry – Screen Rant

Former NFL tight end Vernon Davis and his Dancing With the Stars partner Peta Murgatroyd showed off their chemistry while dancing the foxtrot.

FormerNFL tight end Vernon Davis and his Dancing With the Stars partner Peta Murgatroyd sent the internetinto a frenzy during their debut on the 29th season premiere of the ABC hit show, when they showed off their intense dance chemistry during a performance of the Foxtrot. Dancing to the soundtrack of John Legend's "All of Me, the retired athlete and the professional Latin dancer rocked light-coloredoutfits as they swayed to the beat in an audience-less studio.

Although Davis and Murgatroyd received mediocre scores for their routine (the couple scored a 17 out of 30), they were still praised by the judges for their ability to perform together. Both fellow judges Derek Hough and Bruno Tonioli gave rave reviews of Daviss work, with Tonioli calling the chemistry between Davis and Murgatroyd sizzling. Tonioli also shared that he was going to need an ice bucket later in the season when the pair would be set to dance the rumba, a steamy Cuban dance known for its side to side hip movements and close connection between the pair who dances it together. Although Judge Carrie Ann Inaba knocked a point off their final score due to Davis lifting his partners feet when he dragged her, she still praised his ability as an athlete-turned-dancer, and simply statedthat he had a little more to learn.

Related: Dancing With the Stars: Why Monday's Episode Was Moved To Tuesday This Week

That aside, Davis has proved to be somewhat of a natural on the dance floor, considering he had no prior dance experience before appearing on DWTS. But having a strong connection with his partner is certainly a bonus; its a connection that Murgatroyd says was there from the very beginning. I think [the chemistry] was pretty immediate, hes such a nice guy, she told Us Weekly. Hes so easy-going and hard working so there wasnt really anything I needed to work on personality-wise. We always just get along. We have a lot of fun together. We just kind of clicked. Murgatroyd was especially impressed with how easy the athlete adapted. Vernon has never danced a step so for him to go out there and do that, thats incredible, she said.

For now, that chemistry seems only destined for the dance floor, as Murgatroyd is married to fellow DWTSalum Maksim Chmerkovskiy, with whom she has a three-year-old son. As for Davis, the athlete announced his engagement to girlfriend Kayla Sortor in April of 2018, although they have yet to walk down the aisle.

Davis spent 13 seasons in the NFL before trading his football uniform in for dancing shoes, but so far hes having the time of his life. Im enjoying it, Im having fun, he said. Shes a great partner to work with. Shes tough on me at times but hey, everyone needs a tough coach.

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Dancing With the Stars: Why Peta & Vernon Davis Have The Best Chemistry - Screen Rant

Join Chemistry Seminar ‘Microcystin Is Highly Variable in Lake Fayetteville’ on Zoom Sept. 18 – University of Arkansas Newswire

Photo submitted

Brian Haggard

U of A's Brian Haggardwill give a virtual seminar titled "Microcystin is highly variable in Lake Fayetteville"on Zoomfrom 4-5p.m. Friday, Sept. 18. The talk is free and open to the public.

Haggard is an avid water enthusiast (kayaking, fishing, etc.)andhis research and hobbies align around streams, rivers and reservoirs. He is a professor in the biological engineering program at the Uof Aand director of the Arkansas Water Resources Center.

Haggard's education is diverse, he holds a B.S. life sciences, an M.S. in agronomy (which he calls environmental soil and water sciences), and a Ph.D. in engineering.

"It's definitely not the normal path to an engineering Ph.D., but I started in chemical engineering until I decided to go pre-medicine. Then I took ecology and my interests shifted to environmental sciences," Haggard said.

Haggard will speak aboutmicrocystin (MC) that has been observed in lakes and reservoirs nationwide. After MC was found in a few small reservoirs in Dec.2018, a routine monitoring program was used at Lake Fayetteville throughout the 2019 growing season of May through October. The project goal was to try to understand why cyanobacteria produced high MC concentrations, and how variable MC concentrations were over time and space.

Haggard will talk about how MC concentrations varied spatially at the three routine monitoring sites, as well as during a comprehensive sampling at 14 sites across Lake Fayetteville.Cyanobacteria MC production was greatest when nitrogen was becoming limiting, but then when dissolved nitrogen was not available these cyanobacteria did not produce high MC concentrations.The big three cyanobacteria seen in the lake included Microcystis, Aphanizomenon, and Anabaena.

To attend the seminar, first download Zoom, if you haven't already done so. Then you can use the Zoom link or enter the meeting information.

Fifteen minutes prior to the seminar, attendees are welcome to join and chat with the speaker. Attendees are encouraged to stay on the Zoom meeting following the seminar, grab something to eat or drink, and socialize with the speaker and other attendees.

Meeting ID: 873 4638 0922Passcode: 8x&W7k)B

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Join Chemistry Seminar 'Microcystin Is Highly Variable in Lake Fayetteville' on Zoom Sept. 18 - University of Arkansas Newswire

Team chemistry could carry Phillies long way in 2021 season – That Balls Outta Here

Consider the past two major Philadelphia sports championships the 2008 Philadelphia Phillies and 2017 Philadelphia Eagles. A common attribute between the two teams, which will forever be in the hearts of fans, is that each player and coach had chemistry with each other.

There was talent on both, but it was the chemistry that ultimately led the Phillies past the New York Mets in the division, followed by the Milwaukee Brewers, Los Angeles Dodgers, and Tampa Bay Rays in the postseasonand what helped lift the Eagles past the Atlanta Falcons, Minnesota Vikings, and New England Patriots on their way to their first-ever Super Bowl championship.

The 2020 Phillies season was unfortunate on many fronts, especially how it ended. The Phillies had perhaps the most talent on their roster since their 2007-11 postseason run. Manager Joe Girardi believes that if anything, a lot of chemistry was built across the 60-game season.

Dont be surprised if that carries the team further than expected in 2021.

I think a lot of times you create stronger chemistry when you go through difficult times, Girardi recently told reporters. You can also lose some people in a sense, but if you could get through to get to the other side, I think it creates stronger chemistry than if youre just winning because you do go through the ups and downs and have to support each other, sometimes pull each other out of slumps or a few bad outings in a row. You know the guy next to you has your back and I think thats really powerful.

When recently asked if he had ever been on a team that because of failure, that it led to success down the line, re-signed Phillies shortstop Didi Gregorius pointed out the 2017 New York Yankees a team also managed by Girardi.

They predicted us to be at the bottom of the standings. Talking to the guys, we said, Look, we have a great group of guys and always compete. So, no matter what, we can always put our name on the map and fight as a team,' Gregorius said. Thats the same thing that happened last year, too. Nobody expected us to be even close, because they always talk about how, This is not good.'

In 2016, the Yankees finished six games over .500, but still was fourth in the American League East, nine games behind the division-winning Boston Red Sox.The following year, the Yankees improved to 20 games over .500 and second in the division behind their rival. They ended up advancing all the way to Game 7 of the ALCS, before losing to the infamous Houston Astros.

At the end of the day, youre still a team. We came short one game [in 2020], but showed that we didnt go out and give the games up. We fought until the end, Gregorius continued. You feel in the team that the team has a heart to fight 24/7. We came short, but that was last year. We turned the page on that and now move forward this year. I think were good.

This chemistry is something to watch for in 2021.

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Team chemistry could carry Phillies long way in 2021 season - That Balls Outta Here

Long-banned toxics are still accumulating in Great Lakes birdsas new chemical threats emerge – Environmental Health News

Decades ago several bird species in the Great Lakesincluding the iconic bald eaglefaced an uncertain future because toxic chemicals were threatening their populations.

While several bans and policies have offered some protection, the same chemicals threatening these birds 60 years ago continue to accumulate in their bodiesand new chemical threats are adding to their toxic burdens, according to two new studies.

The two studies add to evidence that pollutants not only persist in the Great Lakes, but continue to travel up food chains to reach and endanger apex predators; and suggest that birds in the Great Lakes continue to impart toxic loads to their offspringresults that do not bode well for long-term bird populations. In addition, as birds are sentinel species, the studies show how previous and existing regulations have been inadequate at protecting all biota of the Great Lakes, including humans, from the harms of these industrial chemical pollutants.

In the first study, published online in Environment International last month, researchers examined how legacy pollutants around Lake Erie such as polychlorinated biphenyls (PCBs), polybrominated diphenyl ethers (PBDEs), and dichlorodiphenyltrichloroethane (DDT) continue to bioaccumulate in common terns. These migratory seabirds spend winters in Central and South America but stay near the Great Lakes from late April to mid-October, relying on the area as breeding grounds.

"Every common tern we looked at had some level of PCBs and PBDEs," Diana Aga, an analytical chemist at the University of Buffalo and co-author of the study, told EHN.

The U.S. phased out PBDEs in 2013, PCBs in 1979, and DDT way back in 1972. PBDEs were most commonly used as flame retardants; PCBs were used as coolants and electrical insulation; and DDT was a widely used insecticide. The chemicals were all banned because they were showing up in wildlife and humans and are linked to a variety of health impacts.

All three are persistent organic pollutants, chemicals that remain stable in the environment, lingering in sediments and plants rather than breaking down. Over the years, these chemicals move up food chains as predators eat contaminated prey, bioaccumulating in apex predators like the common tern. That is why birds of the Great Lakes region continue to feel the aftereffects of decades-old pollution.

To mitigate the accumulation of toxics in their bodies, female common terns, like other birds and animals exposed to chemical pollutants, will offload chemicals to their babies, said Aga"out of all the birds at different life stages, tern eggs birds had the highest accumulation of these pollutants."

Persistent organic pollutants are fat soluble, and egg yolks are full of fat, so the eggs they lay provide mother terns with an opportunity to rid themselves of those harmful compounds. This results in chicks that are born with already very high loads of toxics, if they manage to hatch at all.

While there is very little research that explicitly looks at the toxicology of PBDEs and PCBs in terns, a few older studies suggest a link between these contaminants and physical abnormalities like twisted beaks or deformities in eyes and feet in several other bird species like chickens, kestrels and cormorants. DDT, on the other hand, has long been linked to egg shell thinning and reduced hatching success.

The second study, published in Environmental Research this month, showed how peregrine falcons accumulate perfluorinated chemical pollutants like perfluoroalkyl substances (PFAS), which have made headlines in recent years for being "forever chemicals"since they take exceedingly long times to break down. Human PFAS exposure is linked to cancer, endocrine disruption, and elevated cholesterol, among other health detriments.

The study's results suggest that peregrinesbirds of prey and one of the most widely found bird speciesget exposed to these chemicals through maternal transfer to eggs, their diets via contaminated smaller birds and mammals, and also simply by living in areas with higher levels of these substances.

"We're also at the mercy of a shifting chemical landscape," Robert Letcher, an environmental toxicologist at Environment and Climate Change Canada and co-author of the study, told EHN.

Despite being largely phased out in North America, perfluorooctanesulfonic acid (PFOS), a kind of PFAS that was officially added to the Stockholm Convention's list of persistent organic pollutants in 2010, is "still singularly the most bioaccumulative, highest level perfluorinated compound that's being reported in the environment and in the biota," said Letcher. He said the chemical industry is consistently developing new chemicals to replace those that are phased out, chemicals that stay largely secret until they are investigated and identified by scientists like himself.

"We have to do a little bit of chemical sleuthing to figure out our targets," Letcher said. Through that sleuthing, he says, scientists have been able to trace PFOS replacements like F53B, GenX, ADONA, and a number of others that are all different minor variations of PFOS, but it's hard to keep up with the sheer number of replacements that just keep coming.

This perpetual conveyor belt of toxics, on top of the already varied arsenal of legacy pollutants, makes zeroing in on what each chemical is doing to the falcons' health extremely difficult, Kim Fernie, another environmental toxicologist at Environment and Climate Change Canada and one of Letcher's co-authors, told EHN. Not to mention that there are a multitude of other environmental factors like climate change that could be acting in tandem, she added.

Despite the unknown, the results are concerning, as PFAS chemicals have been previously shown to be overtly toxic. Research in other animals reveals that PFAS decreases reproductive success, can cause developmental defects, endanger kidney and liver health, and even cause cancereffects that researchers suspect may translate to the health of these falcons and other Great Lakes birds.

"As we continue to have these new chemicals crop up, it's a little bit like whack-a-mole," Laura Rubin, the director of the Healing Our WatersGreat Lakes Coalition, told EHN. The Coalition is a group of about 165 NGOs and nonprofits throughout the Great Lakes region that pushes for clean water and the protection of landscapes and their wildlife.

"What we need now more than ever, is a precautionary principle, the idea that we should not be introducing new pollutants or chemicals until we know the effects," said Rubin. Currently, the onus to prove that a chemical is safe does not lie with the company manufacturing it. Without a precautionary principle, industries are free to release chemicals under presumed ignorance of the harms their products cause to the environment. Scientists and activists then have to identify and raise alarms about each individual pollutant. It becomes a repetitive story with different faces.

The destructive chemical pollutants of decades past yielded a few really seminal pieces of legislation, Rubin saidThe Clean Water Act, The Clean Air Act, and the National Environmental Policy Act, to name a few. "But those are starting to show their age and they need some updating in terms of responding to these newer classes of chemicals." Getting a precautionary principle in place would be a monumental step forward for protecting our landscapes, she said.

Pollution in the Great Lakes has significant implications for human health as well. According to the Great Lakes regional Water Use Database, 30 million people depend on the 40.4 billion gallons of water withdrawn from the Great Lakes-St. Lawrence River Basin each day. The land around that area is also home to roughly 10 percent of the U.S. population and more than 30 percent of the Canadian population, according to the U.S. Environmental Protection Agency.

A 2016 study also found that public water supplies with PFAS concentrations at or above the EPA's recommendat
ions reached as many as 6 million U.S. residents. PFAS in food is also of concern, especially via manufactured food, food packaging, and fish consumption. One report of PFOS concentrations in fish found the highest levels in lake trout collected from Lake Ontario.

These birds being contaminated by all these chemicals are really acting as canaries in the coal mine for us humans, Alicia Perez-Fuentetaja, an aquatic ecologist at SUNY Buffalo State University and one of Diana Aga's co-authors, told EHN.

To Perez-Fuentetaja, the birds should be a warning to us all.

"These birds are not even smoking, they're not drinking, they're not doing any of the things we do," she said "They're just eating their food in the wild, and look at the exposure they have."

Banner photo: Common terns in Hueston Woods State Park, College Corner, Ohio. (Credit: Andrew Cannizzaro/flickr)

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Long-banned toxics are still accumulating in Great Lakes birdsas new chemical threats emerge - Environmental Health News

Five charged with shooting chemical tanks, building – The Daily News Online

RIDGEWAY Three adults and two juveniles were arrested and accused of shooting chemical tanks and buildings at Helena Agri-Enterprises Monday afternoon, Orleans County Sheriff Christopher Bourke said.

Rigdeway firefighters were called to the business on Allis Road just before 5 p.m. for a report of a tank of chemicals leaking.

Fire officials discovered that tanks had been punctured by bullets and with bullets still ricocheting off the tanks and building, Bourke said.

Deputies, state police, Medina police and DEC officers converged on the scene and found five people south of the business.

The five were target shooting and told deputies where they had been shooting. An investigation revealed the shooting lane was in direct line with the chemical tanks and building, Bourke said.

Jared S. Silva, 41, Stephen J. Jackson, 41, Joe W. Jackson, 35, and two juveniles were charged with second-degree reckless endangerment and criminal mischief.

Bourke said extensive damage was done to the holding tanks. Helena officials estimated damage at $65,000.

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Five charged with shooting chemical tanks, building - The Daily News Online

Einsteinium: 100 years after Einstein’s Nobel Prize, researchers reveal chemical secrets of element that bears his name – The Conversation UK

A century ago, an upstart German physicist by the name of Albert Einstein turned the scientific world on its head with his discovery of the photoelectric effect, which proved light to be both a particle and a wave. Awarded the 1921 Nobel prize in physics for his work, Einstein would later contribute to theories related to nuclear fusion and fission arguably paving the way for the invention and detonation of nuclear weapons, as well as nuclear energy.

And so, when elements previously unknown to science were discovered in the chemical debris of a nuclear explosion 69 years ago, it was fitting that scientists named what they found after the great physicist adding einsteinium to the periodic table.

Now, 100 years after Einsteins Nobel prize win, chemists have finally been able to peer into the chemical behaviour of this elusive, highly radioactive element. What theyve learned could help scientists further expand our understanding of the periodic table including elements that are yet to be added to it.

Einsteinium (Es) is the 99th element in the periodic table. It was first discovered in 1952 when a thermonuclear device dubbed Ivy Mike was detonated on the island of Elugelab in the Pacific Ocean (now part of the Marshall Islands). Ivy Mikes detonation was the first demonstration of a hydrogen bomb. Such a blast creates four times more energy than nuclear fission bombs (like those dropped on Japan in 1945) and four million times more energy than the burning of a similar amount of coal.

It was in the fallout from Ivy Mikes explosion, amid the chemical debris, that atomic number 99 was found for the first time. Only about 200 atoms of this element were detected, which shows just how scarce it is. It took nine years of painstaking work for scientists to be able to synthesise element 99 in a lab, which they achieved in 1961.

The team of researchers who made the discovery thought about naming the element pandamonium, since the project team behind Ivy Mike had operated under the acronym PANDA. But in the end, they decided to honour Albert Einstein.

Perhaps unsurprisingly, very little has been known about einsteinium. An element birthed in a thermonuclear blast, its incredibly hard to experiment with due to its extreme radioactivity. Not only is it literally too hot to handle one gram of einsteinium produces 1,000 watts of energy it also emits harmful gamma rays, so working with the element requires researchers to wear protective gear at all times.

Whats more, einsteiniums most commonly occurring form (called Es-253, based on the number of neutrons in the atoms nucleus) has a half-life of only 20 days. That means that, after 20 days, einsteinium decays by half. After a couple of months, the tiny quantities of the element that scientists are able to work with practically disappear.

So its no wonder that its taken nearly 70 years for scientists to get to grips with this element. But now, a team from the Lawrence Berkeley National Laboratory and the University of California at Berkeley have managed to pin down enough einsteinium to run some basic tests on the element breaking new ground in experimental chemistry and fundamental science.

Read more: Five chemistry inventions that enabled the modern world

In their paper, the researchers explain how they managed to use just 200 nanograms of Es-254 (a rare form of einsteinium with a half-life of 275.5 days) to run their experiments. A nanogram is just one billionth of a gram, so these experiments took place on an incredibly small scale.

Performing chemistry with einsteinium for the first time, the research team managed to synthesise a chemical compound that included the element in order to examine how it might interact with other elements in a compound. This was done under the Stanford Synchrotron Radiation Lightsource, which beams high-energy light at chemical compounds to enable their structure to be exposed. You can think of this method as similar to how silhouettes are formed but on an atomic scale.

One big finding was the bond distances between einsteinium atoms and other atoms around it like carbon, oxygen and nitrogen. Knowing einsteiniums bond distances for the first time means we can predict what other combinations of compounds featuring einsteinium will look like adding entirely new combinations to our current knowledge of chemistry.

Crucially, the researchers also managed to measure the valence state of einsteinium, which is the charge on the atom. An atoms charge controls how many other atoms it can bond to. This quantity is of fundamental importance in chemistry, determining the shape and size of the building blocks from which the universe is made. Einsteinium happens to lie at an ambiguous position on the periodic table, between valence numbers, so establishing its valence helps us understand more about how the periodic table should be organised.

Einsteinium is currently the heaviest chemical element that can be examined in this way so its exciting for chemists that new ground has been broken by this recent paper. The challenge facing future chemists is to try to synthesise heavier elements in similarly measurable quantities, revealing more about the chemicals that make up our world.

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Einsteinium: 100 years after Einstein's Nobel Prize, researchers reveal chemical secrets of element that bears his name - The Conversation UK

Mid-Michigan AIChE to host presentation on chemical security Feb. 16 – Midland Daily News

The Mid-Michigan Section of the American Institute of Chemical Engineers (AIChE) invites the public to a special presentation.

The group is committed to providing a safe and healthy environment for all meeting attendees. In light of the impact of the coronavirus, all meetings will be held virtually until further notice. The next meeting will feature an address by Mary Beth Mulcahy, "Chemical Security: Protecting Chemicals from People," from noon to 1 p.m. on Tuesday, Feb. 16.

Chemical safety aims to prevent an accidental release of hazardous materials or energy, while chemical security addresses the prevention and control of threats that have the potential to result in unauthorized access, loss, theft, misuse, diversion or intentional release of hazardous materials or energy. Stated more simply, chemical safety aims to protect people from chemicals while chemical security aims to protect chemicals from people. Is this seminar, Mulcahy will provide a brief introduction to chemical weapons, introduce basic chemical security concepts, and examine a toxic release described in a U.S. Chemical Safety Board report through a chemical security lens.

Mulcahy is an R&D S&E, systems research and analysis professional in the Global Chemical and Biological Security (GCBS) program and a causal analyst with the Environmental Safety & Health (ES&H) Performance Assurance Occurrence Management team at Sandia National Laboratories. As part of GCBS, Mulcahy works with an interdisciplinary team to engage global partners for the identification and integration of technical solutions in chemical security and safety. Her work with ES&H includes performing casual analysis of safety incidents and near-misses to support Sandia's goal of continual safety learning.

In additional, Mulcahy serves as the editor-in-chief of the American Chemical Society's ACS Chemical Health & Safety journal which focuses on publishing high-quality articles of interest to scientists, EH&S professionals, and non-research personnel who manage or work in areas where chemicals are used or hazardous waste is generated.

Previously, Mulcahy worked for nine years as a chemical incident investigator with the U.S. Chemical Safety Board (CSB), an independent federal agency that determines the root causes of major chemical accidents in the United States. At the CSB, Mulcahy investigated accidents in a variety of settings; a five-worker fatality on an onshore oil rig blowout, a dust explosion at a corn milling facility in Wisconsin that killed five workers and injured 14 others, an 11-fatatilty offshore oil drilling rig (Deepwater Horizon), a 14-fatality ammonium nitrate explosion, a university laboratory, as well as explosions at a food and power plants.

Mulcahy earned her Ph.D. in physical chemistry from the University of Colorado in Boulder. After graduate school, she completed a postdoctoral fellowship funded by the National Science Foundation at the Instituto Balseiro in Bariloche, Argentina, and then spent time doing research for a biotechnology company before joining the CSB.

The lecture qualifies for one continuing education hour. CEH certificates are needed for licensed Professional Engineers to maintain their license and certificates will be provided to interested attendees.

For seminar call-in information, email Pranav Karanjkar at pranav.karanjkar@dow.com.

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Mid-Michigan AIChE to host presentation on chemical security Feb. 16 - Midland Daily News