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The New Science Encyclopedia : Chemistry • Physics • Biology
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Plasma Science and Technology : Lectures in Physics, Chemistry, Biology, and Engineering
Plasma Science and Technology An accessible introduction to the fundamentals of plasma science and its applications In Plasma Science and Technology: Lectures in Physics, Chemistry, Biology, and Engineering, distinguished researcher Dr. Alexander Fridman delivers a comprehensive introduction to plasma technology, including fulsome descriptions of the fundamentals of plasmas and discharges.The author discusses a wide variety of practical applications of the technology to medicine, energy, catalysis, coatings, and more, emphasizing engineering and science fundamentals.Offering readers illuminating problems and concept questions to support understanding and self-study, the book also details organic and inorganic applications of plasma technologies, demonstrating its use in nature, in the lab, and in both novel and well-known applications.Readers will also find: A thorough introduction to the kinetics of excited atoms and molecules Comprehensive explorations of non-equilibrium atmospheric pressure cold discharges Practical discussions of plasma processing in microelectronics and other micro-technologies Expert treatments of plasma in environmental control technologies, including the cleaning of air, exhaust gases, water, and soil Perfect for students of chemical engineering, physics, and chemistry, Plasma Science and Technology will also benefit professionals working in these fields who seek a contemporary refresher in the fundamentals of plasma science and its applications.
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Physics in Biology and Medicine
**Selected for Doody’s Core Titles® 2024 in Medical Physics** Physics in Biology and Medicine, Sixth Edition includes new, revised material, and corresponding exercises on many exciting developments in the field.New sections cover biomechanics, biotribology, frictional properties of biological materials, 3-D printing and its use in medicine, new materials in dentistry, microfluidics, bioelectronic medicine, microsensors, and microscopy.This revised edition delivers helpful and engaging additions to the role and importance of physics in biology and medicine, including new coverage on metamaterials, metabolism, and environmental science.It is ideal for courses in biophysics, medical physics, and related subjects.
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Click Chemistry: In Chemistry, Biology and Macromolecular Science
Click Chemistry: In Chemistry, Biology and Macromolecular Science
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Why is organic chemistry called organic chemistry?
Organic chemistry is called so because it was originally believed that compounds found in living organisms could only be produced by living organisms, and were therefore called "organic" compounds. This belief was later disproven, but the name stuck. Organic chemistry is the study of carbon-containing compounds, which are abundant in living organisms, and it focuses on the structure, properties, and reactions of these compounds.
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What is more important in nutritional science: organic or chemistry?
Both organic and chemistry play important roles in nutritional science. Organic focuses on the quality and source of food, emphasizing natural and sustainable practices. Chemistry, on the other hand, helps us understand the composition and interactions of nutrients in our body. Both aspects are crucial in understanding how food affects our health and well-being, making it difficult to prioritize one over the other in nutritional science.
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What is Organic Chemistry 3?
Organic Chemistry 3 is an advanced course that builds upon the principles learned in Organic Chemistry 1 and 2. It delves deeper into the study of organic compounds, their structures, reactions, and mechanisms. Topics covered in Organic Chemistry 3 may include advanced organic synthesis, spectroscopic techniques for structure determination, and the study of complex molecules. This course is typically taken by students majoring in chemistry or related fields who require a more in-depth understanding of organic chemistry.
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What is organic and inorganic biology?
Organic biology is the study of living organisms and their interactions with each other and their environment. It focuses on the structure, function, growth, evolution, and distribution of living organisms. Inorganic biology, on the other hand, is the study of non-living matter and its interactions with living organisms. This includes the study of minerals, nutrients, and other inorganic substances that play a role in biological processes. Both organic and inorganic biology are important for understanding the complexities of life on Earth.
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GCSE Combined Science AQA Revision Question Cards: All-in-one Biology, Chemistry & Physics
If you want to really test your GCSE Combined Science knowledge, try CGP's massive box of Revision Question Cards!There are over 180 cards in the pack, covering all the key Biology, Chemistry and Physics topics from the Grade 9-1 AQA Trilogy course.Each card starts off with quick questions to warm you up, followed by harder questions to get your brain into top gear.Flip the card over and you’ll find full answers to each question, carefully written to help you understand everything you need to know.Along the way, we’ve packed in plenty of diagrams and expert revision tips, and there are even questions on Working Scientifically and Practical Skills.If you'd prefer we have AQA Combined Science Biology (9781789080551), Chemistry (9781789080568) and Physics (9781789080575) Cards in separate packs.
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Organic Chemistry
Inspiring and motivating students from the moment it published, Organic Chemistry has established itself in just one edition as the students' choice of organic chemistry text.This second edition takes all that has made Organic Chemistry the book of choice, and has refined and refocused it to produce a text that is even more student-friendly, more coherent and more logical in its presentation than before. At heart, the second edition remains true to the first, being built on three principles:An explanatory approach, through which the reader is motivated to understand the subject and not just learn the facts;A mechanistic approach, giving the reader the power to understand compounds and reactions never previously encountered;An evidence-based approach, setting out clearly how and why reactions happen as they do, giving extra depth to the reader's understanding. The authors write clearly and directly, sharing with the reader their own fascination with the subject, and leading them carefully from topic to topic.Their honest and open narrative flags pitfalls and misconceptions, guiding the reader towards a complete picture of organic chemistry and its universal themes and principles. Enriched with an extensive bank of online resources to help the reader visualise the structure of organic compounds and their reaction mechanisms, this second edition reaffirms the position of Organic Chemistry as the essential course companion for all organic chemistry students.Online Resource CentreFor students:A range of problems to accompany each chapterFor registered adopters of the text:Figures from the book in electronic format
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The Great Mental Models: Physics, Chemistry and Biology
A cult bestseller in the US, available around the world for the first time, The Great Mental Models introduces the simple tools we all need to see the world clearly. Time and time again, great thinkers like Warren Buffett and Charlie Munger have credited their success to mental models: simple representations of how the world works that can be applied in a wide array of contexts.Mastering a small number of these concepts enables you to rapidly grasp new information, identify patterns others don’t, and better anticipate outcomes. The Great Mental Models introduces the most powerful models that anyone can use right away to improve decision making and productivity.In this volume, Shane Parrish introduces mental tools borrowed from the hard sciences in language anyone can understand, including:Leverage: When the application of a small force to one end results in a larger force at the other end. Inertia: An object (or organization) at rest will stay at rest unless acted upon by an external force. Activation Energy: The minimum amount of energy required to incite a chemical reaction. Building a latticework of mental models is one of the most powerful things you can do to become a better thinker, leader, or creator.The Great Mental Models is the accessible guide you need to unlock this ability.
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Discover Biology, Chemistry & Physics
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What are alkanes in organic chemistry?
Alkanes are a class of organic compounds that consist of only carbon and hydrogen atoms, with single covalent bonds between the carbon atoms. They are also known as saturated hydrocarbons because they contain the maximum number of hydrogen atoms possible for their carbon chain. Alkanes are the simplest and most basic type of hydrocarbon, and they are commonly found in natural gas and petroleum. The general formula for alkanes is CnH2n+2, where n represents the number of carbon atoms in the molecule.
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What are branches in organic chemistry?
Branches in organic chemistry refer to the different sub-disciplines or areas of study within the field of organic chemistry. These branches can include areas such as organic synthesis, organometallic chemistry, bioorganic chemistry, and physical organic chemistry. Each branch focuses on specific aspects of organic molecules, reactions, and properties, and contributes to our understanding of the behavior and applications of organic compounds in various fields such as medicine, materials science, and environmental science. Overall, the branches of organic chemistry help to further our knowledge and application of organic compounds in diverse areas of research and industry.
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Why is it called organic chemistry?
Organic chemistry is called so because it originally focused on compounds that were derived from living organisms, such as plants and animals. These compounds were believed to contain a vital force or "life force" (called "organic" in Greek) that distinguished them from inorganic compounds. Over time, the definition of organic chemistry has expanded to include the study of carbon-containing compounds, regardless of their origin, but the historical roots of the field are reflected in its name.
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Is organic or inorganic chemistry more difficult?
The difficulty of organic versus inorganic chemistry can vary depending on the individual's background, interests, and learning style. Organic chemistry is often considered more challenging due to its focus on the structure, properties, and reactions of carbon-containing compounds, which can be complex and require a deep understanding of molecular structures and mechanisms. In contrast, inorganic chemistry deals with the properties and behavior of inorganic compounds, which may involve a different set of concepts and principles. Ultimately, the difficulty of each subject is subjective and can vary from person to person.
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