BioChemistry: Energy
How energy is stored and released from chemical bonds. Topics: Atoms, chemical bonds and energy.
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BioChemistry: Energy - Video
BioChemistry: Energy
How energy is stored and released from chemical bonds. Topics: Atoms, chemical bonds and energy.
By: wanakscience
Here is the original post:
BioChemistry: Energy - Video
Explore Chemistry Biochemistry at Kent State University
Welcome to the Department of Chemistry and Biochemistry at Kent State University! Meet some of our faculty and current students as they describe our instructional and research community. ...
By: KSU Chemistry Biochemistry
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Explore Chemistry & Biochemistry at Kent State University - Video
Department of Biochemistry, UDSC
"We will either find a way or make one." This is from department of biochemistry, university of Delhi south campus.
By: Manoj Kumar
Medical Biochemistry
First text book of "Medical Biochemistry" by Dr. Praful B. Godkar Ph D. and Dr. Darshan Godkar MD, FACC, FAHA, FASE, FASNC, in the globe, that would bring ev...
By: Praful Godkar
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Medical Biochemistry - Video
Biochemistry Session 3 Video 2
This is the U.S. Army Aeromedical Reseach Laboratory #39;s Gains in the Education of Mathematics and Science (GEMS) 2014 program. GEMS is an extracurricular, sci...
By: U.S. Army Aeromedical Research Laboratory
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Biochemistry Session 3 Video 2 - Video
Biochemistry Session 2 Video 1
This is the U.S. Army Aeromedical Reseach Laboratory #39;s Gains in the Education of Mathematics and Science (GEMS) 2014 program. GEMS is an extracurricular, sci...
By: U.S. Army Aeromedical Research Laboratory
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Biochemistry Session 2 Video 1 - Video
INBI Shaker Club from A.N.Bach Institute of Biochemistry of RAS, Moscow Russia
INBI Shaker Club made by the A.N.Bach Institute of Biochemistry of RAS, Moscow Russia Video made for the Competition The Art of Shaking operated by Kuhner Sh...
By: The Art of Shaking by Kuhner Shaker
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INBI Shaker Club from A.N.Bach Institute of Biochemistry of RAS, Moscow Russia - Video
Liver Biochemistry: The Role of Cholestasis in Increased Serum Levels of Alkaline Phosphatase
The Role of Cholestasis in Increased Serum Levels of Alkaline Phosphatase. Video from Tasha Obrin vimeo.com/95798030 creativecommons.org/licenses/by/3.0/
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Liver Biochemistry: The Role of Cholestasis in Increased Serum Levels of Alkaline Phosphatase - Video
Quantum Biochemistry: the rise of semiempirical methods
Presented at The Future of Electronic Structure Theory: Pushing Our Understanding and Limits conference in Sandbjerg, Denmark 2014.09.09.
By: Jan Jensen
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Quantum Biochemistry: the rise of semiempirical methods - Video
What Is The Definition Of Biochemistry Medical Dictionary Free Online
what is the definition of medical terminology, medical dictionary, medical dictionary free download, medical terminology made easy, medical terminology song tags: "What Is The Definition...
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What Is The Definition Of Biochemistry Medical Dictionary Free Online - Video
Santa Fe College Biochemistry Protein Function Lecture
Santa Fe College Center for Emerging Technologies Lecture: Protein Function Instructor: Aaron Hirko PhD.
By: Santa Fe College Emerging Technologies
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Santa Fe College Biochemistry Protein Function Lecture - Video
If youre a regular reader of Nanalyze, youll know that were big fans of the work that Bryan Johnson of Kernel is doing, essentially trying to enable read/write access to the brain. In one of his interviews, he remarks thatever since we first booted up a cell with human engineered DNA, we entered a new era that according to his mentor Peter Diamandis, 99.9% of people have no idea weve entered.
What theyre referring to is the fact that humans have essentially discoveredthe Engines of Creation that Eric Drexler was talking about. While everyone is running around slinging political mud at each other like a bunch of primitive monkeys, mankind is working on one of the most transformational technologies that may ever be invented. Its called synthetic biology and its why everyone should have a basic understanding of biochemistry.
When you werechoosing your major in college, you either had your mind set on a particular field already or you needed to peruse all thesubject areas to see what sounded like a good fit. Each subject area will have a certain stereotype associated with it.Some fields sound boring, like electrical engineering or accounting. Some fields sound inherently difficult, like physics or mathematics. Other fieldsyou may not have an idea of what they do because they never sounded compelling enough to research. Thats the case for us withbiochemistry and thats why we thought, as investors, we should edify ourselves on what turned out to be a very relevant and interesting area of the sciences.
If we lookup the basic definition of biochemistry, this is what we get:
the branch of science concerned with the chemical and physico-chemical processes and substances which occur within living organisms.
So its a bit different from chemistry since itsall about the study of chemical processes in living organisms. Heres why it came about according to the American Chemical Society:
Biochemistry emerged as a separate discipline when scientists combined biology with organic, inorganic, and physical chemistry and began to study how living things obtain energy from food, the chemical basis of heredity, what fundamental changes occur in disease, and related issues.
The most basic premise is that you are using living things to take INPUT X and turn it into OUTPUT Y in the most efficient manner possible. If you think about humans as a complex organism, we are able to utilize the equivalent of several pounds of vegetative material to power one of the most complex and amazing machines on the planet. The problem with us though, is that the output from that process has no real use except maybe as fertilizer.
In the U.S. alone, there are approximately 13,500 chemical manufacturing facilities in the United States owned by more than 9,000 companies. These are giant operations which consume a great deal of energy, require a large workforce to maintain, and generate a great deal of pollution. Imagine how much energy and effort goes into building complex mechanical contraptions like this:
Your bog standard chemicals plant
Think about how inefficient these plants have been over the decades as theyve sat there consuming resources and feeding the mass consumerism that we enjoy in todays modern society.Now think about this. What if instead of using these inefficient plants, we engineered biological organisms to produce chemicals by modifying the DNA of the organisms so they did what we needed.The simplest way to think about it is to visualize those punch-cards we used our dads used back in the day. If thats beyond your time, heres what an IBM punch card used to look like:
In the olden days of mainframe computing, we used apunch card like the ones seen above toprovide the computer with a set of instructions. With DNA, its pretty much the same idea except its like havingprecisely these many punch cards:
The above pile of phone books shows roughly the amount of data that a strand of DNA contains, approximately 700gigabytes of data. DNA is one giant punch card that just recently weve been given the hole punch for. That hole punch is called gene editing and its been all over the news lately due to a nasty lawsuit that will determine who has the commercial rights to one of the most exciting discoveries known to man. This biological hole punch called CRISPR will soon let us change every single characteristic we like for any organism and then boot it up so we have our own little biological nanobots doing things for us.Since organisms are the most efficient biological factories (or engines of creation) known to man, it makes sense that we should be modifying them to produce as many industrial chemicals as possible.
The use of synthetic biology for creating things like biofuels (primarily)was off to a rough start as evidenced by the cratering stocks involved in this space like Amyris (NASDAQ:AMRS) and Gevo (NASDAQ:GEVO). Fast forward to today and the potential is even greater but a different model is now being applied. Now you have nanobot factories like Ginkgo Bioworks and Zymergen that areusing artificial intelligence, robotics, and gene editing in order to create little tiny biological chemical manufacturing plants.
Lets say youre a chemical plant that uses a particular enzyme in your production process. You can then go ask Ginkgo or Zymergen to take that enzyme you use and modify it over millions and millions of iterations using the principles of biochemistry. The speed at which they can perform this process has just hit hockey stick growth as seen below:
The end result is an optimized enzyme that meets your requirements and saves you millions of dollars. Startups like this that are using synthetic biology to completely overhaul the industrial chemical manufacturing process are as secretive as you would expect. While we may not have detailed information about what theyre working on, we can take a look at some examples of startups that are using biochemistry and synthetic bioogyin order to create some pretty complex and useful outputs from some basic interesting inputs:
These startups are backed by some big dollars and some big names, however the future business model is a bit hazy here. Will we have the chemical companies going directly to the creators of the synthetic organisms like Ginkgo or will we have startups like the ones mentioned above doing all the production and selling to the chemical companies, only to get acquired once the technology is proven? The one thing that we can be sure of here is that the large chemical producers will profit fromthe use of biochemistry, synthetic biology, and gene editing, consequently we can expect shareholders in these companies to reap the benefits.
If you have children, you maywant to steer them towardsbiochemistry as a major becausethere is a lot of work to do. According to Statista, total revenue of the global chemical industryin 2015 exceeded 5 trillion dollars. This morning when youre tempted to talk about how much political mudslinging there was at the Oscars or who wore the cutest dress, do the world a favor and tell someone how exciting biochemistry is instead.
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What is Biochemistry and Why it Matters - Nanalyze
bio367 metabolism biochemistry 1d ETCs ATP
bio367 metabolism biochemistry 1d ETCs ATP.
By: Loren Launen
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bio367 metabolism biochemistry 1d ETCs & ATP - Video
Santa Fe College Biochemistry: Peptides, Proteins, and 3D structures
Santa Fe College Center for Emerging Technologies Biochemistry lecture: Peptides, Proteins, and 3D Structure Instructor: Aaron Hirko PhD.
By: Santa Fe College Emerging Technologies
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Santa Fe College Biochemistry: Peptides, Proteins, and 3D structures - Video
Biochemistry Major
With our entrance into the 21st century, it is increasingly apparent that distinctions between the sciences are becoming blurred. To prepare students for this environmentand others that theyll encounter in the not-so-distant futureAllegheny offers an interdisciplinary and integrated major in the field of biochemistry, increasing the diversity of Alleghenys hands-on educational opportunities and encouraging students to see the connections between scientific disciplines.
The biochemistry major is part of an interdisciplinary program primarily supported by faculty from the biology and chemistry departments. The major requires a group of courses from the biology, chemistry, physics, and mathematics departments.
The junior seminar offers students the chance to specialize within the major, applying their knowledge from the introductory and upper-level courses to a specific sub-discipline. In addition, the in-depth exposure to scientific literature and assignments emphasizing scientific communication form an important bridge to the senior project. The required senior project is a two-semester, laboratory-based, independent project that is ultimately defended before an interdisciplinary faculty committee.
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Biochemistry | Allegheny College - Meadville, PA
Master in Biochemistry - Introduction
Master in biochemistry, Sciences, University of Geneva, Switzerland.
By: Universit de Genve
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Master in Biochemistry - Introduction - Video
principle of biochemistry
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principle of biochemistry - Video