Kim Jung Hyun Talks About Hyun Bin + Son Ye Jin’s Dating Rumors And Chemistry In Crash Landing On You – soompi

Kim Jung Hyun has shared his thoughts on the on-screen chemistry between his Crash Landing on You co-stars Hyun Bin and Son Ye Jin!

The two actors, who previously starred together in the film The Negotiation, were swept up in dating rumors multiple times last yearand Hyun Bins agency recently denied rumors of their romantic involvement a third time, after a fan suggested that the two appeared to be holding hands in behind-the-scenes footage from the filming of Crash Landing on You.

In an interview with Korean news outlet Segye Ilbo, Kim Jung Hyun praised the professionalism of his two co-stars, explaining that their intense romantic chemistry in the dramawhich has led to legions of fans hoping that life will imitate artwas the product of their acting skills.

When they were rehearsing, there werent any of the rosy, romantic vibes that the media talked about in articles [about their dating rumors], he shared. But as soon as the cameras began rolling, they would gaze at each other lovingly, with honey dripping from their eyes. When I saw that, I thought they were really cool.

It made me think that I was working together with really amazing senior actors, he continued. They were cool to the extent that I thought, This must be what a real professional looks like.'

Kim Jung Hyun went on to enthuse, Both Son Ye Jin and Hyun Bin look really cool when theyre acting. They were very active in terms of coming up with ideas, and they spoke everything that was on their mind. Even though I was standing beside them as a junior actor, they treated me as a same-level colleague. They made it possible for me to act comfortably.

The actor also spoke highly of his co-star Seo Ji Hye, commenting, Seo Ji Hye helped me a lot so that I could act act comfortably. When I first saw her, I thought that she looked very cold and untalkative, but she was so nice to me that it made it easy for me to prepare for my scenes.

During rehearsals, she would share her opinions with me, and she was also great at listening to my own ideas, he recalled. So there werent any difficulties in working together on scenes.

Crash Landing on You aired its final episode on February 16, setting a new record for the highest viewership ratings in tvN history.

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Kim Jung Hyun Talks About Hyun Bin + Son Ye Jin's Dating Rumors And Chemistry In Crash Landing On You - soompi

Chemistry – Organic, Inorganic, and Physical Chemistry Concepts

Science in its totality is the study of the objects, surroundings and various natural events and their effects based on experiments and observations. It encompasses a systematic and logical approach towards the behavior of changes around us and the events concerned with them. The curiosity of human brain for understanding the world and things that are beyond this world has led to the development of various laws and principles. Science has helped the human brain to understand its surrounding very precisely which in turn has resulted in numerous discoveries and inventions. These discoveries and inventions have improved the standard of living on this planet and have paved the way for further studies. Science has been divided into different sub-groups based on their concerned area of study. Chemistry is a branch of science that deals with matter, particularly the study of atoms and molecules and the parameters that govern their inter-convertibility.

What is Chemistry?

Chemistry is one of the basic branches of science that deals with the properties, structure, and constituents of matter or substances and its interactions with other forms of matter. There is a lot of difference that can be seen when you compare Basic Chemistry and Modern chemistry. Basic Chemistry originated in ancient times at the hands of famous scientists called Alchemists. It explained all the basics of the subject which were concluded after a series of experiments which shed light on how they really worked. Whereas Modern Chemistry prevailed in the 17th century which laid systematic steps in gaining knowledge about the matter. Modern chemistry brought about various theories which finally became justified with the experiments they conducted to prove how matter interacts.

The domain of chemistry comprises of the study of thecomposition of matter, its structure, and properties. The fundamental constituents of matter, atoms & molecules, form the basis of chemistry. Chemistry has provided answers to various questions. The quantitative measurement of the number of basic constituents of matter i.e. atoms and molecules and their dependence on the mass of the given matter is well explained by chemistry. Advances in chemistry have helped scientists and engineers to harness the energy associated with these atoms & molecules.

Today we can preserve food items for long durations of time; we have millions of chemicals that are being used in different industries for manufacturing a variety of products. Cell phone covers, plastic bags, the steel used in construction, the pasteurized milk, photosynthesis, the crackers we burn, etc. are only a few examples of products of chemistry. These products are such deeply rooted in our lives that we fail to visualize their importance and the role of the science behind them.

Branches of Chemistry

Due to the vast variety of interactions possible between matter in general, there are said to be five branches of Chemistry namely organic chemistry, analytical chemistry, inorganic chemistry, biochemistry and physical chemistry. The details about them are explained below-

It is a branch of chemistry which deals with the study of carbon-based compounds. It mainly applies to the study of the behavior, characteristics, compositions and the properties of the organic compounds. It is also known as The Chemistry of Life.

A branch of chemistry that deals with the study of metals and gaseous matter or materials which do not contain carbon as an element in it is called as Inorganic chemistry. It is opposite side of Organic Chemistry.

The combined study of using physics and chemistry to explain chemical systems is called as Physical chemistry. This branch relates to the physical properties along with the structure of matter and energy. The sub-branches coming under this field are quantum physics and thermodynamics.

Biochemistry is a branch of chemistry which deals with the study of the chemical processes that takes place in living organisms. Hence the name Biochemistry.

It is an interesting field of chemistry that studies about the properties of matter, along with the composition of different substances and materials. This branch of chemistry uses quantitative methods for the identification of chemical and physical properties of matter.

Chemical Reactions

As you might be aware of common salt which we use in our foods, Have you ever observed what happens when the elements of these substances are involved in reactions?

Consider the sodium metal element when it reacts with water it produces a kind of hissing sound by giving out hydrogen as a gas. This is due to the chemical reaction which makes it happen. The equation for this chemical reaction can be represented as given below :

Na + H2O NaOH + H2

On more reaction would be the chemical reaction between sodium and chlorine. There is a formation of Sodium chloride or commonly known as common salt. Likewise, there are many chemical reactions taking place within and around us all which are all by the phenomenon of chemistry.

Applications of Chemistry

Chemistry has a wide number of applications coming in various fields, some of which are given below-

Learning Chemistry Online How is it helpful

Chemistry is a subject that involves fun. Meanwhile, it also requires a good imagination to understand the deeper insights of the topics. Many students find it hard when going through chemical reactions and formulas. These things need an imaginative and conceptual study. With the old blackboard learning, there might be few topics which the student might have been missed or might not have understood.

Hence online learning is so preferred because it enhances the learning skills of students. They tend to enjoy while learning things online. A student can easily fetch a topic which he/she has missed in the classroom.

Here at BYJUS, students are offered with engaging and fully structured video sessions from experts and the methods of studying explained will widen their learning ability. At BYJUS, the chemistry topics are taught with animated diagrams in such that they never forget about. A student is provided with chemistry quiz programs, regular tests and interactive study sessions with our experts for the class 4 to class 12 so that Chemical engineering aspirants can make it to their goal.

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Chemistry - Organic, Inorganic, and Physical Chemistry Concepts

A unified mechanism for unconfined deflagration-to-detonation transition in terrestrial chemical systems and type Ia supernovae – Science Magazine

Achieving unconfined supersonic explosions

In some forms of supernovae and chemical explosions, a flame moving at subsonic speeds (deflagration) spontaneously evolves into one driven by a supersonic shock (detonation), vastly increasing the power output. The mechanism of this deflagration-to-detonation transition (DDT) is poorly understood. Poludnenko et al. developed an analytical model to describe DDTs, then tested it with lab experiments and numerical simulations. Their model successfully reproduced the DDT seen in the experiments and predicted a DDT in type Ia supernovae, which is consistent with observational constraints. The same mechanism may apply to DDTs in any unconfined explosion.

Science, this issue p. eaau7365

The nature of type Ia supernovae (SNIa)thermonuclear explosions of white dwarf (WD) starsis an open question in astrophysics. There is a general consensus that SNIa explosions are driven by fast thermonuclear burning in 12C/16O WD stars with a mass close to, or below, the Chandrasekhar-mass limit of 1.4 solar masses. Beyond this general statement, however, the exact mechanisms of SNIa remain unclear, with a number of possible scenarios.

Virtually all existing theoretical models of normal, bright SNIaincluding the classical, single-degenerate Chandrasekhar-mass and sub-Chandrasekhar-mass scenarios, along with the double-degenerate merger modelrequire formation of a supersonic detonation wave. This wave consumes all of the stellar material as a WD begins to expand during the explosion. Detonation initiation in unconfined systems, such as the interior of a WD, remains poorly understood and is particularly difficult to achieve in the absence of the confining effect of walls and obstacles or preexisting or externally introduced strong shocks. Numerical models of SNIa are unable to capture detonation formation from first principles because of the extreme range of scales involved. Instead, they are forced to make two crucial assumptions: (i) that detonation ignition always occurs during an explosion and (ii) the time and location of the detonation formation. As a result, detonation initiation conditions are free parameters present in most existing SNIa models, which limits their predictive power.

Thermonuclear combustion waves in SNIa are qualitatively similar to chemical combustion waves on Earth because they are controlled by the same physical mechanisms. This similarity allows us to seek insights into the fundamental aspects of the physical processes that control SNIa explosions by using theoretical, numerical, and experimental results obtained for terrestrial chemical systems. This includes detonation initiation phenomena that are also relevant to terrestrial applications that range from detonation-based propulsion and power-generation systems to the explosion safety of industrial facilities related to coal mining, fuel storage, chemical processing, and nuclear power generation.

Prior direct numerical simulations (DNS) have shown that chemical flames interacting with high-intensity turbulence can spontaneously accelerate and produce strong shocks or detonations. Such turbulence-driven deflagration-to-detonation transition (tDDT) can occur in essentially unconfined settings.

We present a general analytical theory of tDDT in unconfined systems. The theory explains the behavior of fast turbulent flames that become unstable, produce shocks, and can transition to detonations. This occurs when the turbulent burning speed exceeds the Chapman-Jouguet deflagration velocity, which is the maximum possible speed of a steady-state reaction wave without a shock. We describe an experimental confirmation of this process in terrestrial H2-air flames. Next, we used numerical simulations of a fully resolved turbulent thermonuclear flame in a degenerate 12C stellar plasma to show that under conditions representative of those in a SNIa explosion, this mechanism can also result in the spontaneous formation of strong shocks. We show that these shocks can rapidly amplify by interacting with surrounding turbulent flames and ultimately trigger a detonation. Last, we used the developed theory to determine the criteria for detonation initiation in the classical single-degenerate Chandrasekhar-mass model of SNIa. We found that DDT is almost inevitable at densities in the range of 107 to 108 g cm3, with the maximum probability at 3 107 g cm3.

We developed a theory of turbulence-induced DDT and validated it by using experiments on chemical flames and numerical simulations of thermonuclear deflagrations. Our results describe a unified mechanism of unconfined DDT both in chemical and thermonuclear reacting flows. This theory is parameter free and can be used to predict self-consistently the conditions for detonation initiation in SNIa explosions.

The DDT in SNIa is predicted to occur on scales of ~103 to 106 cm, which is well below the characteristic scale of a WD star (109 cm) and mostly below the smallest scales resolvable in three-dimensional simulations, ~105 cm. To demonstrate the turbulence-driven, unconfined DDT in experiments and DNS, we considered turbulence-flame interaction on small scales of ~105 to 10 cm. The synergy between the experiments and DNS of chemical and thermonuclear flames led to our unified theory of DDT.

The nature of type Ia supernovae (SNIa)thermonuclear explosions of white dwarf starsis an open question in astrophysics. Virtually all existing theoretical models of normal, bright SNIa require the explosion to produce a detonation in order to consume all of stellar material, but the mechanism for the deflagration-to-detonation transition (DDT) remains unclear. We present a unified theory of turbulence-induced DDT that describes the mechanism and conditions for initiating detonation both in unconfined chemical and thermonuclear explosions. The model is validated by using experiments with chemical flames and numerical simulations of thermonuclear flames. We use the developed theory to determine criteria for detonation initiation in the single-degenerate Chandrasekhar-mass SNIa model and show that DDT is almost inevitable at densities of 107 to 108 grams per cubic centimeter.

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A unified mechanism for unconfined deflagration-to-detonation transition in terrestrial chemical systems and type Ia supernovae - Science Magazine

Chemistry of the stars – Royal Society of Chemistry

Michael Leggett has been a member of his local astronomical society for several years. He tells us how he has been drawing on his chemistry background to deliver lectures on astrochemistry to astronomers.

My local astronomical society ran a survey to find out what subjects members might want covered. One member requested something about chemistry and I decided to prepare an introduction to astrochemistry as a series of short talks looking at one element at a time, its basic chemistry and aspects of interest to astronomers.

The series began in 2016 with the first short talk on hydrogen, and this was followed by a second short talk on the heavy hydrogen isotopes deuterium and tritium. The final short talk in 2016 was about helium and the noble gases.

The series will continue well into 2017 (possibly beyond) with the next short talk provisionally about lithium and the alkali metals. This will be followed by talks on beryllium, boron, carbon, nitrogen, oxygen, fluorine and their corresponding groups, with subsequent talks on selected transition metals, lanthanides and actinides.

I also regularly present talks for astronomical societies on chemical, biological and historical aspects of astronomy and astronautics.

The Orion Nebula, taken by a member of the Milton Keynes Astronomical Society, John Bell Picture: John Bell

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Chemistry of the stars - Royal Society of Chemistry

American Chemistry Council updates PPE, hygiene guidelines for phosgene – Safety+Health magazine

Washington The American Chemistry Council recently released updated guidelines on preventive health measures and the use of personal protective equipment for workers exposed to phosgene, a chemical used in manufacturing that is a poisonous gas at room temperature.

To detect the presence of the phosgene, ACC recommends the use of monitoring badges, which change colors when exposed to the chemical. ACC added that remote optical sensing systems may be effective in identifying phosgene down a long path, rather than detecting its presence at a single point.

Badges should be placed in the breathing zone of a worker, and any badges potentially hindered by water or ultraviolet light should be placed underneath the front brim of a hard hat. Clips also may be used to keep badges attached to a collar, but wearing them underneath protective equipment or on the back of a hard hat could negate their effectiveness.

ACC suggests that organizations develop written instructions for the use of badges and establish a medical reporting system. The organization also recommends handling the gas in completely closed processing systems to decrease possible worker exposure.

If phosgene is released, ACC advises quickly evacuating the affected area and upon re-entry, using proper respiratory protection pressure demand full-face supplied air respirators in combination with an auxiliary self-contained breathing apparatus.

ACC also noted additional PPE to be used:

For decontamination purposes, ACC recommends that emergency response personnel seal any contaminated clothing/phosgene badges in airtight containers. Decontamination should be verified before respiratory protection is removed. Keep in mind, ACC states, that phosgene can remain trapped in low dips in pipes/equipment, process fluids or solids.

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American Chemistry Council updates PPE, hygiene guidelines for phosgene - Safety+Health magazine

They go together: Gibson, Ewoniuk exhibit chemistry early in season – The Dickinson Press

"They have very good chemistry," head coach Pete Stanton said. "They're both very similar that they're very good leaders and both have the same goals. They both have a great understanding of the game, and I think that chemistry is what's really helped in the first couple games."

Gibson has proven to be the worthy choice of starting quarterback for the Hawks. He threw four touchdown passes in the 43-28 win over Rocky Mountain College on Aug. 24, and three more in Saturday's 30-21 win over Valley City State University. Those three scores were all to Ewoniuk.

Ewoniuk easily stands out on the field. The Belfield native checks in at 5-foot-7, 160 pounds and sports brown hair that hangs to his shoulders. But those aren't the only traits that makes him so easy to spot.

"Seth is very quick and very smart, and one of the things that he does when we put him in the slot with some of the routes we've been running, he gets matched up with linebackers and we like that matchup," Stanton said. "He's got a really good knack for getting open. He's very elusive and very quick and experienced."

Over two games, Ewoniuk has scored four touchdowns and caught nine footballs for 149 yards. That accounts for nearly a third of the Blue Hawks' 455 passing yards.

"We were just taking what they gave us," Ewoniuk said. "We had good play calls and we got the run going to set up play-action. Hayden threw me good balls and they were the three easiest touchdowns I've ever scored in my life."

At 6-foot-3 Gibson is one of the taller players on the team and is able to see over the field to spot open receivers.

"He's done a good job," Stanton said of the young quarterback. "His completion percentage has been very high. He's made good decisions as far as what we want to do offensively. He's gotten the ball out well. He's just been very efficient. His arm is strong too. When it's third-and-8, third-and-9, we know he has the ability to make that throw and make the right read."

Over two games, Gibson has completed 30 of 42 pass attempts, good for a 71.6 completion percentage.

"His job is to read the play and give the ball to the guy that's open," Ewoniuk said of Gibson. "I happened to be the read last week but next week it could be a different guy scoring three touchdowns."

While it's the two of them lighting up the scoreboard so far, Gibson said it's not just him and Ewoniuk who can take the credit for offensive success.

"I think the whole group on offense played well," Gibson said. "The big guys up front had a good game. You know, it's not just the guy that catches the ball, it's all the other wideouts that run their routes really hard and take the defense from guys like Seth."

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They go together: Gibson, Ewoniuk exhibit chemistry early in season - The Dickinson Press

Seahawks rookie DBs continue to build chemistry in group workout – Seahawks Wire


Seahawks Wire
Seahawks rookie DBs continue to build chemistry in group workout
Seahawks Wire
According to a post by Ford Sports Performance owner Tracy Ford, the Seahawks defensive backs have been getting their grind on together and building chemistry. The training facility where the rookies are shown below working out is also frequented by ...

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Seahawks rookie DBs continue to build chemistry in group workout - Seahawks Wire

‘Chemistry’ Is an Anti-Coming-of-Age Story – New York Times


New York Times
'Chemistry' Is an Anti-Coming-of-Age Story
New York Times
She is also deeply ambivalent about marriage and committing to a career in synthetic organic chemistry. Chemistry is a sort of anti-coming-of-age story: Instead of figuring out how to be an adult, the narrator learns to live with uncertainty and ...

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'Chemistry' Is an Anti-Coming-of-Age Story - New York Times

‘Snatched’ review: Amy Schumer, Goldie Hawn’s mother-daughter chemistry gets lost in Ecuador getaway – Chicago Tribune

An action comedy about white women beset by brown men in Latin American countries portrayed by Hawaii, "Snatched" is Amy Schumer's second big movie, her follow-up to the very funny "Trainwreck," which introduced her to audiences unfamiliar with her stand-up or her TV work on "Inside Amy Schumer." The film co-stars Goldie Hawn, in her first major screen role since "The Banger Sisters" 15 years ago. Shrewdly, 20th Century Fox is positioning their product as a Mother's Day weekend offering; what better way to market it? Mother. Daughter. Kidnapped by Ecuadorean ransom-seekers while on vacation. They get stuffed in a car trunk; they harpoon a bad guy; they dance; they learn to take it easy on each other.

The movie does not take it easy. Director Jonathan Levine ("50/50," "The Night Before") has skill, but broad visual gags aren't really his strength. Screenwriter Katie Dippold wrote "The Heat," the one with Sandra Bullock and Melissa McCarthy (sequel coming), which pulled a successful variation on a familiar odd-couple theme. "Snatched," more about victimhood than women running their own show, is funny here and there, but in ways that make the bulk of the formulaic material all the more frustrating.

Stiffed by her boyfriend (Randall Park) on the eve of their nonrefundable Ecuador getaway, directionless, hard-drinking Emily (Schumer) invites her cat-obsessed suburban shut-in of a mother (Hawn) on the trip instead. Mother Linda's fears of abduction come true soon enough, though Emily's too smitten by the flirtatious Englishman (Tom Bateman) on vacation to sense trouble. "Snatched" engineers ways to get Emily and Linda in danger and then out again, evading their kidnapper (Oscar Jaenada, stereotypical swarthy menace incarnate) as best they can, while back home Emily's agoraphobic brother (Ike Barinholtz) nudges a skeptical U.S. State Department in the rescue of his family.

If you're going to write a movie like this one, you're going to try to invent ways and means of pushing the story forward without your audience getting that weary, back-to-the-kidnapping-stuff feeling. I had that feeling a lot during "Snatched." You sense the relief on Dippold's behalf every time she gets the chance to ditch what's "required" and focus on what's amusing, or offbeat. Wanda Sykes and Joan Cusack make for entertaining side players as a couple of vacationers who come in handy plotwise; Christopher Meloni scores a laugh or two as a would-be adventurer who serves as Emily and Linda's guide through the jungles of Colombia. "Feel free to drink from any puddle you see," he says at one point. "All water in the jungle is safe." The jokes are sardonic 21st century variations on "Don't Drink the Water," sometimes literally.

It's extremely broad humor, for the most part, nervously edited, involving the extraction of a vicious-looking tapeworm from Emily's throat, or Emily makeshift-douching herself in a restroom, preparing for a possible hookup with her English friend. Hawn does not easily suggest a paranoid lonelyheart with bad knees, as the script dictates, but she and Schumer parallel-play together, affectionately. "Snatched" is too busy with everything around, and outside, this central relationship. In that regard it resembles the Tina Fey/Steve Carell action comedy "Date Night," which got by with audiences despite itself. We'll see about this one; it is, after all, opening on Mother's Day weekend.

Michael Phillips is a Chicago Tribune critic.

mjphillips@chicagotribune.com

Twitter @phillipstribune

"Snatched" 2 stars

MPAA rating: R (for crude sexual content, brief nudity, and language throughout)

Running time: 1:37

Opens: Thursday evening

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'Snatched' review: Amy Schumer, Goldie Hawn's mother-daughter chemistry gets lost in Ecuador getaway - Chicago Tribune

WATCH: Warriors’ chemistry is so good, they even complain to ref in perfect sync – CBSSports.com

The Golden State Warriors overcame a 25-point deficit on Sunday to steal Game 1 of the Western Conference finals against the Spurs.

All season long the chemistry among the Warriors, who boast the No. 1 offense in the NBA, has been what has made this team so difficult to oust. It's been their calling card. And on Sunday, the chemistry was so good that it bled over into other facets of the game -- like the way they complained about officiating.

Look at how beautifully timed this reaction is from Zaza Pachulia, Stephen Curry and Draymond Green. It's synchronized complaining at its finest.

The Warriors began the game out of sync and let the Spurs ride the early momentum into a 20-point halftime deficit but, as you can see, they clearly found their rhythm and put things together as a team, which was a major part of their 113-111 win in Game 1.

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WATCH: Warriors' chemistry is so good, they even complain to ref in perfect sync - CBSSports.com

MSU students honored by chemistry department – Springfield News-Leader

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News-Leader 4:29 p.m. CT May 17, 2017

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Students in the department of chemistry at Missouri State University recently attended the annual Chemistry Recognition Banquet in April.

Stephanie Dannen, a senior chemistry major from Seymour, received the Dr. Martin Research Fellowship, the Emil Lorz Memorial Scholarship and a Department of Chemistry Board of Advisers Summer Research Fellowship.

Brennon Foster, a senior biochemistry major from Springfield, received the Outstanding Physical Chemistry Student Award, the Outstanding Senior Award from the chemistry department and the Graduating Senior Award from the Midwest District of Kappa Kappa Psi.

Bryttani West, a senior chemistry major from Springfield, received the American Chemical Society Undergraduate Award in Inorganic Chemistry.

For more information visitThe College of Natural and Applied Sciences.

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MSU students honored by chemistry department - Springfield News-Leader

AP Chemistry taught me to value the growth mindset – The JagWire

Although I didnt receive the grade I wanted, my experience with a challenging class was still beneficial

As I finish up the semester, I am letting out a huge sigh of relief. AP Chemistry, which has been the source of both excitement and stress for the past 9 months, is finally over. I can definitively say that it was the hardest class Ive ever taken, not necessarily because of the content, but because of the strain it put on me to learn faster, study harder and retain more than I have ever experienced in my high school career. Even though Im ending the semester on a lower score than I anticipated, Ive surprised myself by actually recognizing that Ive grown as a student since August. To me, this made the class worthwhile.

Arriving in AP Chem, I felt more than confident this was going to be my favorite class. I wanted my grades to be perfect so I could study chemistry in college and work in labs all day as a career. And that was a pretty attainable goal. I had breezed by in Pre-AP Chemistry, getting perfect scores on every single test, and the summer assignment didnt even force me to break a sweat. As the year went on, however, things just got more and more difficult. Like most AP classes, there is simply too much content to cover in such a short amount of time. I felt overwhelmed, and mostly scared, because there just seemed to be no other option than to take the grade I was given. No matter how many times I went to go see science teacher Mary Beth Mattingly, she couldnt make me understand chemistry.

Frankly, I still dont understand chemistry. I understand the various concepts, and the math, and how some things fit together, but I havent had the click yet. I havent had the big realization everyones been telling me about. Maybe its because I didnt study enough or I didnt watch enough Khan Academy videos, but mostly I think its because my own understanding just isnt there yet. And for a high school junior, thats OK. Im starting to view learning chemistry as a lifelong process instead of just a way to sign off on some arbitrary credit.

Just because I didnt receive outstanding chemistry grades this year in no way means I never will, and thats the idea that keeps me going. This idea that I can get better at it and improve upon myself is the true reward Ive gotten out of AP Chem. In high school theres this idea that learning a subject is done once you leave high school or college. Though some might be disappointed, thats just not true. Having a philosophy of improving yourself throughout life and at your own pace is called the growth mindset, and until this year, I had no experience with it.

Through taking AP Chem, Ive had some rough nights where Ive just cried at the kitchen counter because I couldnt remember all the intermolecular forces, but Ive also had the days in class where Im asking all the right questions. Ive had the labs with my friends where we mess up a titration so bad, we just have to laugh about it and start over. In the end, I may not have gotten an A, but AP Chem has still been my favorite class.

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AP Chemistry taught me to value the growth mindset - The JagWire

Texas Lutheran hosts chemistry fair – Seguin Gazette-Enterprise

A group of area students took a peek into the world of science Thursday night during Texas Lutheran Universitys CHAOS Chemistry Fair.

Amanda Galvan was among the area residents to visit the fair with their children.

My kids are both interested in science, and Im a student here at TLU, as well, she said. I felt like it was a good opportunity for them to actually do some small experiments and see the college students do experiments.

This was the third year the fair was held, with this years theme being Chemistry of the Earth.

This is our chemistry outreach night, where we have a lot of hands-on activities for students, TLU chemistry professor Alison Bray said. A lot of the experiments are based on different properties of the earth: the water thats on Earth, volcanoes, were doing some iron oxide rust experiments, a lot of things that are hands-on, and you can make snowflakes in the back.

The event is run by TLUs Pi Rho Chemistry Club and the volunteer staff was made up of TLU chemistry students.

Were an organization that does a lot of outreach at local schools and we do this once every year, club member and TLU student Lynsey Terrill said.

Children were able to make their own rust and use it to make artwork at the station she worked, Terrill said.

We use steel wool, salt and hydrogen peroxide and mix it up, she said. It oxidizes the steel wool and the iron in it to make rust. They go down to the filtering station and filter it with a coffee filter so just the rust is left on top. Then they come down here and make cave paintings using the rust they filtered out.

Additionally, the fair included chemiluminescence and a molting volcano made of thermite, TLU chemistry professor Mike Ruane said.

Were just doing outreach to the community, letting them know there is a university in town that does chemistry, he said. Were to get people to come here for college.

The fair also is a way for TLU to help get children interested in science, Bray said.

We think when kids interact with scientists, its a lot more exciting, she said. In school, they dont get to do a lot of these hands-on things, because they dont necessarily have the equipment or the training. Here we can let them do these things in a safe environment.

Ruane said the event is a way to get young students more acquainted to the nature of being a scientist.

Normally they think of scientists as these guys in a lab with a lab coat. They dont really get to see the fun thats in science, he said. So we try to bring the fun to the community and show them everything we can do.

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Texas Lutheran hosts chemistry fair - Seguin Gazette-Enterprise

US Senate creates chemistry caucus – Chemistry World (subscription)

The US Senate has established a new chemistry caucus that will provide a bipartisan forum for senators to address topics related to chemistry, and to safeguard the countrys chemical industry. Major goals of the new forum include highlighting the importance of science in policymaking, promoting efforts to encourage chemical manufacturing and further developing the pipeline of new chemists in the US.

The House of Representatives launched its own chemistry caucus in September 2016, and its expansion to the Senate was made public on 28 March. Senator Chris Coons a chemistry major in college said the new caucus will enable the Senate to promote science in policymaking and encourage businesses to take the scientific advancements chemistry yields and bring them to the marketplace. Another leader of the chemistry caucus is Senator Steve Daines, who is the only chemical engineer in Congress.

Establishment of this bicameral caucus will serve as an important forum for pro-innovation, pro-chemistry lawmakers to advance the chemistry enterprise, said Thomas Connelly, the American Chemical Societys executive director and CEO. Never have policies and legislation focused on investments in research and development, job creation, economic growth, and US global competitiveness been more crucial to the success of the country.

Calvin Dooley, the American Chemistry Councils president and CEO, said these House and Senate caucuses have come at a very critical time or American chemical manufacturing. Reversing a long trend, our industry is experiencing historic growth here in the US that is having a very positive effect on domestic investment and adding jobs to our economy, he stated.

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US Senate creates chemistry caucus - Chemistry World (subscription)

JACK PARKS: Basic chemistry on a conspiracy – The Albany Herald

Greetings, Jackolytes! Once again I must apologize for the long time between communications, but my time has been occupied with important research. I am writing to you today from a secret location and am transmitting it to the editors through an encrypted system because this information is potentially dangerous. But in the interest of the safety and well-being of every other person in this city, I must take the risk to myself and my family.

As I said, I have been doing some extensive research, specifically into local environmental concerns. I dont put much stock into conspiracy theories. But someone (who will remain nameless) alerted me to a potential threat and, since I trust this person, I felt it warranted some attention. I also have a passing knowledge of basic chemistry.

At least, I gained enough knowledge to pass Intro to Chemistry in high school. So I put what knowledge I retained to the test and did some digging. And I have discovered one whopper of a secret: Our water system has been contaminated with extremely high concentrations of a chemical known as hydric acid chemical name: dihydrogen-monoxide.

I know I use humor a lot, but I am not kidding about this. Information about dihydrogen-monoxide is freely available from legitimate scientific sources, and I encourage you to educate yourself. The dangers of this chemical are innumerable, but I will list several for you here so you can begin to get an idea of what were dealing with.

Dihydrogen-monoxide has a pH level of 7, more than three times higher than hydrochloric acid.

Dihydrogen-monoxide is one of the main contributors to acid rain and the greenhouse effect.

Dihydrogen-monoxide is used in car batteries.

Dihydrogen-monoxide can be especially dangerous during space travel, so all astronaut food goes through special processing to remove it.

Dihydrogen-monoxide is composed of two elements that are highly unstable and prone to explosive combustion.

Dihydrogen-monoxide is released into the atmosphere by airplanes in visible lines known as contrails.

Dihydrogen-monoxide can cause severe burns when vaporized.

Dihydrogen-monoxide is deadly when inhaled even in very small amounts.

Dihydrogen-monoxide is added to vaccines.

Dihydrogen-monoxide was the most abundant chemical found after the BP oil spill.

Dihydrogen-monoxide passes through even the highest quality filters.

Dihydrogen-monoxide cannot be washed off.

Dihydrogen-monoxide is so corrosive, it eats through iron, steel and stone.

Dihydrogen-monoxide is a waste product from nuclear power plants.

Dihydrogen-monoxide causes electrical failures and decreases the effectiveness of automobile brakes.

Dihydrogen-monoxide is used as both an industrial solvent and coolant.

And it is in our water.

Actually, it is our water. The chemical formula for di(2)hydrogen-mon(1)oxide is H2O. April Fools!

By the way, every item listed above is 100 percent true. Go back and read it again, but substitute water in place of dihydrogen-monoxide. Doesnt seem so scary now, does it? More just a list of interesting facts about water.

So many things these days are misunderstood just because they have names that are hard to pronounce. But just because something is referred to by its chemical name doesnt mean its any worse for you.

The truth is, everything is made up of chemicals. Chemicals are just molecules, and molecules are made up of different elements. And molecules can have very different properties than their base elements.

For instance, sodium is a metal that explodes in water. Chlorine is a poisonous gas. But the molecule sodium chloride is salt, which plays an essential part in keeping your body hydrated, as well as making food taste good. Like ketchup.

Seriously. Have you ever had salt-free ketchup? If not, you dont need to find out what youre missing. I tried it once. Suffice it to say that was one hot dog I ate plain. The point Im trying to make is that I can recommend avoiding salt-free ketchup because I have experience with it.

Its ironic that one of the biggest threats to the so-called Information Age is actually misinformation. People with no degree or experience are often treated as experts simply because they write well and have a unique style, lots of followers, or just because what they say challenges the mainstream.

Theres nothing wrong with questioning the mainstream. But if youre going to hold actual experts with years or decades of training and experience under a microscope, you should also do the same with those encouraging you to do so. The person encouraging you to question authority should be able to stand up to the same level of questioning.

Too often these people dont allow questions though. They either laugh them away, delete comments or even block people who challenge their words. Does that sound like someone who is honest? Someone who is dedicated to the truth? What reason do you have to trust these self-styled gurus any more than the ones they oppose?

You shouldnt be afraid of something youve never heard of before just because someone tells you that you should be. If you see something mentioned in an article or on a social network and you dont know what it is, take a few minutes to read about it from a neutral source. Educate yourself on it. Worst-case scenario, you have an interesting bit of trivia for the water cooler.

On the other hand, you just might learn how to think for yourself. Even more importantly, youll be able to show others how to think for themselves. So kick back, relax and enjoy an ice cold glass of dihydrogen-monoxide.

Its not like itll kill you.

Jack Parks writes Talk Nerdy to Me, an occasional column on nerd culture. Follow him on Twitter @tn2me.

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JACK PARKS: Basic chemistry on a conspiracy - The Albany Herald

Science teachers, alumnae reflect on UMSL’s first female chemistry professor, who inspired their careers – UMSL Daily (blog)

Professor Emerita of Chemistry Jane Miller (center) stands with former students and UMSL alumnae (from left) Jeanette Hencken, Liz Petersen, Sandra Mueller and Joan Twillman. The women credit Miller with inspiring them to pursue careers in science education and instilling their passion for science and womens empowerment in generations of St. Louis youth. (Photo by August Jennewein)

Four University of MissouriSt. Louis alumnae struggle to find adequate words to sum up Jane Miller.

The professor emerita of chemistry has meant so much to Jeanette Hencken, Sandra Mueller, Liz Petersen and Joan Twillman. Its impossible to touch on all the ways she has fueled their teaching careers, love of science and empowerment of women in the field and beyond.

Anybody that she comes in contact with, its almost like she has this fairy dust she sprinkles over them, Petersen said. Shes just so inspirational.

After having Miller as a professor, the four women went on to become some of the St. Louis regions most outstanding and accomplished science teachers.

Hencken, BA chemistry 1985, has taught chemistry and forensics science at Webster Groves High School since 1993. Besides earning a 2012 Peabody Leaders in Education Award, Hencken has been a leading expert in establishing forensics science curricula and workshops for high school teachers across the nation. She and her students also gather and document Payless and Walmart shoe data to send to the Federal Bureau of Investigation and maintain a website for law enforcement and forensic footwear examiners to reference for crime scene investigations. They are the only resource for this information on shoes from Payless and Walmart because no other agency or person has been allowed to photograph and document within those stores. This entire projectI never dreamt it would be like this, said Hencken, who still teaches and coordinates the effort.

Mueller, BA chemistry 1976, taught science for 37 years, most of those as a chemistry teacher at John Burroughs School. She would arrive at school every day at five in the morning and stay late. A shining moment in her career came in 2015 when one of her students received the Presidential Scholar Award for Missouri and named her as his most influential teacher. She got to go to Washington D.C. and be recognized for her inspiring teaching. Mueller was also named the St. Louis-area Chemistry Teacher of the Year and chaired the American Chemical Society-Topical Group for six years. That was a big thing I tried to do, she said, to get the teachers the resources available to them. Shes since retired.

Petersen, BA biology 1979, was a teacher at Ladue Middle School for 18 years, where she taught sixth-grade Earth science and seventh-grade life science. Her colleagues credit her with turning around Science Teachers of Missouri, a resource organization for science educators in the state. Petersen was the president of STOM in 2005 and served in an active leadership capacity for 10 years. She was also the Humane Society Teacher of the Year in 2003 and named Outstanding Teacher of the Year by the St Louis Academy of Science. For me its really about touching kids lives, Petersen said. Theres a part of you that goes with every single kid. She now does professional development for teachers as a facilitator and instructor of STEM TQ (Teacher Quality) at Washington University in St. Louis.

Twillman, BA chemistry 1981, taught chemistry at St. Charles West High School for 24 years. She organized the Science Research Kids class there and had students go to the Intel International Science and Engineering Fair, where they were recognized for their excellence. Twillman had to guide each student through a research project. If they didnt know more than I did about their subject, they didnt know enough, Twillman said. She was named Outstanding Teacher of the Year by the St Louis Academy of Science. Twillman can also boast having a former student hired to the Central Intelligence Agency during his first year as an engineering undergraduate at Missouri S&T in Rolla. The offer came after the recruiters learned of his impressive gadget-building experience in the science club Twillman helped establish at St. Charles West. Twillman is retired now.

Ask any one of them, and theyll trace their passion for science back to Miller, who they, in part, credit for their career successes.

Miller graduated from the all-womens Agnes Scott College in Decatur, Georgia, where she earned her bachelors degree in chemistry. She went on to receive both her masters and doctoral degrees in chemistry from Tulane University in New Orleans.

After marrying a St. Louisan, Miller relocated to the Gateway City. She came to UMSL as the first female hire in the Department of Chemistry in 1965, only two years after the official opening of the university. She later became the first woman to receive tenure in the department as well.

It was not an easy ride, Miller said.

Womens roles in higher education, and especially the sciences, were often questioned and undervalued something she later challenged and helped change at the university.

Due to a limited budget and social stigmas of the time, Miller didnt have a laboratory.As a professor, she was required to do research, so she took up researching the history of science, particularly the history of chemistry and women in the field. She also became one of the go-to methods teaching supervisors for students who had majored in chemistry with the intent to teach and earn their certification from UMSL. Miller would advise and observe their student teaching.

When shed observe the sessions and then afterwardsyou just sat there and talked and talked, Mueller said.

She always wanted to know what we were doing, Hencken said. It was all sharing ideas what you knew and what she could share.

I never had an education course, Miller said. So I did work very hard to get into science education so that I could do a good job with them. And it was a great situation. Not only because you can make sure that your students know the material theyre teaching, but also teach them how to be a good teacher. Schools just begged for our student teachers. They never had a problem getting a job.

Besides her outstanding support, the four women also remember some key traits Miller taught them.

Independence, Petersen said. And to stand up for yourself. Its OK to challenge authority. In fact, please do so.

And while Miller challenged her students, they also felt nothing but support from her.

She had total confidence in you, Twillman added. And she knows everything. She can give you information and make you know that you asked for it, or maybe you didnt, but you wanted to hear it when she told it to you.

Im so proud of all my students because they have done really wonderful things, Miller said.

When asked about her pioneer approach to teaching as a woman in the sciences, Miller had no doubt about where she learned her fierceness.

I think a lot of it had to do with going to a womens high school and a womens college, Miller said. When I graduated from Agnes Scott, I thought I could do anything. I had had mentors who were excellent women. Most of the faculty at both schools were women. And just, I loved learning, and I loved research. Thats what did it.

Miller taught at UMSL until 1992, when she retired. She is 89 this year, and her four former students are already planning her birthday celebration.

In fact, birthdays are a tradition with this group. They meet five times a year to celebrate each others big day.

When you get home from the dinner, you just feel so good for so longso energized and ready to tackle the next big thing, Mueller said.

We all love Jane, Petersen added. And we love each other and support each other. Were just really lucky to know her and grow with her.

Short URL: http://blogs.umsl.edu/news/?p=67444

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Science teachers, alumnae reflect on UMSL's first female chemistry professor, who inspired their careers - UMSL Daily (blog)

The Chemistry of Change – The Times

Dr. James Perkins shared his inspirational story during his keynote address, The Chemistry of Change, during Mondays Dr. Martin Luther King Jr. Day Celebration at Lincoln Park Performing Arts Center in Midland. An esteemed educator and chemist, Perkins, a Midland native, spoke to a packed audience Monday about growing up in a steel town, the pitfalls of segregation and the importance of role models.

MIDLAND Esteemed educator and chemist James Perkins spoke to a packed audience Monday about growing up in a steel town, the pitfalls of segregation and the importance of role models.

Perkins addressed this chemistry of change through the work of Dr. Martin Luther King Jr., who believed in peace and diversity, during a special program in honor of the late civil rights leader.

Its like Dr. King was attempting to change the salinity of the Atlantic Ocean with an eye dropper full of fresh water, but little did we know that that eye dropper represented by his person and a small team of leaders was not an eye dropper of fresh water, Perkins said. Instead it was an iceberg the size of Greenland represented by the civil rights movement that would indeed change the salinity of the vast ocean representing our nation. The inertia of what he created is still changing every aspect of our society. The test of real change is whether or not it can be sustained.

Perkins, born and raised in Midland, said neither of his parents completed high school and had placed a premium on their childrens education. The family of eight was just one of a couple black families living in Midland Heights, where Perkins said his father created a garden in an empty lot to provide food for the family and raise additional money for other needs.

Growing up, we were materially very poor, however the wealth of our values, the values they instilled in us, was without bounds. The deep faith that I developed while attending Mt. Olive Baptist Church, and my home environment established by my mom and dad, prepared me for the substantial challenges that followed.

Perkins recalled being the lone child turned away from a public swimming pool during a scouting trip while the rest of the children, all white, were permitted to swim. He recalled being the first black varsity basketball player at Slippery Rock University, where he majored in chemistry in the 1960s, with his brother being only the second. Despite those experiences, Perkins had teachers and coaches in Midland and throughout college who looked out for him and pushed him to the limit. Having a positive educational experience early on, particularly in chemistry and physics, instilled the concept of excellence that he carried with him throughout his academic years and beyond.

The garden that my father showed me how to prepare, plant seeds and grow a variety of fruits and vegetables, prepared me to plant the seeds necessary to produce hundreds of black engineers, MDs and Ph.Ds, who will in turn serve as role models for young children and their parents, Perkins said.

Hosted by the Midland Womens Civic Club, Perkins presentation was the culmination of The Chemistry of Change, Beaver Countys official Dr. Martin Luther King Day Celebration on Monday at Lincoln Park Performing Arts Center in Midland.

"Itsa great day when surrounding communities come together in unity to learn and fulfill the true meaningof life as we celebrated a great man of spiritual and moral values, said Stephanie Pennington, chairwoman of the King celebration. Dr. Perkins grew up in the Midland community during the civil rights movement and today it was inspirational to hear how Dr. King's legacy successfully impacted his life by serving young people and many institutions within our nation and beyond.

The annual day of fellowship and enlightenment benefits local hometown college-bound students through the Greater Midland Scholarship Foundation.

Perkins keynote speech wrapped up a full day, which began with a professional development session for educators earning Act 48 credits. Attendees viewed the film Hidden Figures, a biographical drama about Katherine Johnson and the female African-American mathematicians working at NASA during the space race in the 1960s.

Following a catered luncheon, inspirational music and dance performances and multi-media presentations were showcased under the direction of Lincoln Parks Resident Artists and school and community groups from across the region.

Perkins, president of Translational Technologies LLC., has a doctorate in chemistry from the University of Pittsburgh, and has served academic institutions internationally as a professor, academic administrator and consultant. An entrepreneur, his research and publications have been instrumental to organizations in the development of science, engineering and technological programs throughout the United States and Africa.

While much has been done, the road is still hard and there are many challenges because of race or gender, but do not let that stop you, he said. Remember what has been done to make your path better, and the responsibility to make the path even better for those that will follow you.

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The Chemistry of Change - The Times

UPDATE: KCFD recommends evacuations for people within six miles of chemical spill – WWLP.com

UPDATE: The department is advising evacuations for people who live or work within six miles of the spill site.

If you live or work beyond six and up to nine miles of this location, it is recommend that you shelter in place, the Kern County Sheriffs Office said. The department recommends that residents close all their doors and windows, shut off their central air systems and close fireplace vents.

An evacuation center has been set up by the American Red Cross at First Baptist Church, located at 220 N. First St.

TAFT, Calif. (KGET) The Kern County Fire Department is responding to a chemical spill near Taft.

The department said the hazardous materials spill occurred at Taft Manufacturing Co., located at 19705 S. Lake Road. Employees have been evacuated from the plant.

According to Taft Mayor Dave Noerr, the chemical acrolein was accidentally released at the plant. The chemical is used as an intermediate in the synthesis of acrylic acid and as a biocide.

Acrolien vapor may cause eye, nasal and respiratory tract irritations.

Taft College has ordered students to go home due to the spill, the college confirmed.

Taft Union High School and all schools in the Taft City School District said they are in shelter in place for student and staff safety. Shelter in place means they have found a safe location indoors and are staying there until they are given an all-clear or ordered to evacuate.

The road was closed at the intersection around 10 a.m. and motorists are encouraged to use an alternate route, according to the county.

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UPDATE: KCFD recommends evacuations for people within six miles of chemical spill - WWLP.com

Jon Cooper: No chemistry concerns when Lightning’s hurt players ready to return – Tampabay.com

TAMPA Coach Jon Cooper began his post-morning-skate news conference Saturday by going through the list of Lightning players not available for that night's game against the visiting Canadiens.

C Steven Stamkos? C Tyler Johnson?

"No. No," Cooper said. "Keeping going. (C Cedric) Paquette? No. (D Jason) Garrison? No."

Later in the session, Cooper was asked whether that given the play of the young players who have stepped in from AHL Syracuse to help fuel the Lightning's late-season playoff push, is it possible that the return of Stamkos, who hasn't played since Nov. 15 because of knee surgery, or Johnson, who has missed 11 games with a lower-body injury, could upset the current chemistry in the dressing room?

"For me, in the end, I want the best players in, and when those guys are healthy and ready to go, they're going back in," Cooper said. "I do see your point of don't rock the boat when things are going well, but we lost three games in a row right before (the four-game winning streak leading into Saturday's game.)"

Cooper said he liked the way D Jake Dotchin, C Gabriel Dumont, C Yanni Gourde and company have played during the winning streak but given a choice, he wants his best players on the ice.

"In the end, wouldn't it be great to have Stamkos back? Yes. Johnson? Yes. Paquette? You just go down the list," Cooper said. "But you got to tip your cap to the players who've come up. They've been game-changers for us."

How much of a game-changer?

"These guys that have come up have really been the straw that stirred our drink," he said.

Hedman of the class

D Victor Hedman set the Lightning season record for points by a defenseman Thursday against the Red Wings when he picked up his 51st assist of the season. Hedman entered Saturday with 66 points (15 goals) to break Roman Hamrlik's mark of 65 (16-49) set in 1995-96. Dan Boyle (20-43) had 63 in 2005-06.

Doing what he can

To say coach Jon Cooper is impressed with C Gabriel Dumont is an understatement. That he was a fifth-round draft pick in 2009 might be the key to his success, Cooper said. Instead of wondering when he would reach the NHL, like some first- and second-rounders think, Dumont, 26, just worked on improving his game.

Now Dumont is taking faceoffs in the defensive zone and blocking shots.

"There's no pressure on (lower-round picks), and they just work, work, work," Cooper said. "They have to get past the hurdle of not being a high draft pick, but once they get past that, everything is infectious with the way they play. It's on (Dumont) how long this is going to last, but he continues to give me reasons to put him on the ice. Then you couple that with he's a phenomenal kid. He still just wants to learn and get better. Guys like him is a good reason why we're still hanging around (the playoff picture)."

Injury updates

C Steven Stamkos (knee), C Tyler Johnson (lower body), C Cedric Paquette (lower body) and D Jason Garrison (lower body) did not play Saturday. Cooper said Stamkos and Johnson could return on the road trip that begins Tuesday in Boston.

Jon Cooper: No chemistry concerns when Lightning's hurt players ready to return 04/01/17 [Last modified: Saturday, April 1, 2017 9:54pm] Photo reprints | Article reprints

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Jon Cooper: No chemistry concerns when Lightning's hurt players ready to return - Tampabay.com

Chemists recognised in 2020 New Year’s Honours list | News – Chemistry World

A number of chemists are among those who have been recognised in the 2020 New Years Honours list. Among those honoured are innovators in materials science, pharma and analytical chemistry.

The University of Cambridges Anthony Cheetham received a knighthood for services to materials chemistry, UK science and global outreach. Cheethams research focuses on inorganic materials including metalorganic frameworks and hybrid perovskites, which have potential applications in nuclear energy and photovoltaics.

The UKs special envoy on antimicrobial resistance, Sally Davies, was made Dame Grand Cross of the Order of the Bath for her services to public health and research. Davies, who had previously been made a Dame in 2009, was the chief medical officer for England between 2010 and 2019 and has also served as the UK governments chief scientific adviser.

Lynn Gladden, also at Cambridge, was made a Dame for services to academic and industrial research in chemical engineering. Gladdens research focuses on magnetic resonance techniques for studying chemical engineering challenges, including in catalysis, drug delivery and oil recovery and she has been executive chair of the Engineering and Physical Sciences Research Council since 2018.

Menelas Pangalos, AstraZenecas executive vice-president for biopharmaceuticals research, received a knighthood for services to UK science.

Of the 1097 people named on the list, 14.6% received honours for work in science, technology and health sectors. A full list of chemists recognised in this years honours can be found on the Royal Society of Chemistrys website.

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Chemists recognised in 2020 New Year's Honours list | News - Chemistry World