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Molecular Orbitals and Organic Chemical Reactions
Winner of the PROSE Award for Chemistry & Physics 2010 Acknowledging the very best in professional and scholarly publishing, the annual PROSE Awards recognise publishers' and authors' commitment to pioneering works of research and for contributing to the conception, production, and design of landmark works in their fields.Judged by peer publishers, librarians, and medical professionals, Wiley are pleased to congratulate Professor Ian Fleming, winner of the PROSE Award in Chemistry and Physics for Molecular Orbitals and Organic Chemical Reactions. Molecular orbital theory is used by chemists to describe the arrangement of electrons in chemical structures.It is also a theory capable of giving some insight into the forces involved in the making and breaking of chemical bonds—the chemical reactions that are often the focus of an organic chemist's interest. Organic chemists with a serious interest in understanding and explaining their work usually express their ideas in molecular orbital terms, so much so that it is now an essential component of every organic chemist's skills to have some acquaintance with molecular orbital theory. Molecular Orbitals and Organic Chemical Reactions is both a simplified account of molecular orbital theory and a review of its applications in organic chemistry; it provides a basic introduction to the subject and a wealth of illustrative examples.In this book molecular orbital theory is presented in a much simplified, and entirely non-mathematical language, accessible to every organic chemist, whether student or research worker, whether mathematically competent or not.Topics covered include: Molecular Orbital TheoryMolecular Orbitals and the Structures of Organic MoleculesChemical Reactions — How Far and How FastIonic Reactions — ReactivityIonic Reactions — StereochemistryPericyclic ReactionsRadical ReactionsPhotochemical Reactions Slides for lectures and presentations are available on the supplementary website: www.wiley.com/go/fleming_student Molecular Orbitals and Organic Chemical Reactions: Student Edition is an invaluable first textbook on this important subject for students of organic, physical organic and computational chemistry. The Reference Edition edition takes the content and the same non-mathematical approach of the Student Edition, and adds extensive extra subject coverage, detail and over 1500 references.The additional material adds a deeper understanding of the models used, and includes a broader range of applications and case studies.Providing a complete in-depth reference for a more advanced audience, this edition will find a place on the bookshelves of researchers and advanced students of organic, physical organic and computational chemistry.Further information can be viewed here. "These books are the result of years of work, which began as an attempt to write a second edition of my 1976 book Frontier Orbitals and Organic Chemical Reactions.I wanted to give a rather more thorough introduction to molecular orbitals, while maintaining my focus on the organic chemist who did not want a mathematical account, but still wanted to understand organic chemistry at a physical level.I'm delighted to win this prize, and hope a new generation of chemists will benefit from these books." -Professor Ian Fleming
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Chemical Process Design and Integration
Written by a highly regarded author with industrial and academic experience, this new edition of an established bestselling book provides practical guidance for students, researchers, and those in chemical engineering.The book includes a new section on sustainable energy, with sections on carbon capture and sequestration, as a result of increasing environmental awareness; and a companion website that includes problems, worked solutions, and Excel spreadsheets to enable students to carry out complex calculations.
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Chemical Engineering Design : SI Edition
Chemical Engineering Design: SI Edition is one of the best-known and most widely used textbooks available for students of chemical engineering.The enduring hallmarks of this classic book are its scope and practical emphasis which make it particularly popular with instructors and students who appreciate its relevance and clarity.This new edition provides coverage of the latest aspects of process design, operations, safety, loss prevention, equipment selection, and much more, including updates on plant and equipment costs, regulations and technical standards.
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Practical Process Design for Chemical Engineers
In-depth and practical textbook resource on chemical engineering processes, ranging from fundamentals to advanced aspects Practical Process Design for Chemical Engineers presents an extensive overview of the fundamental and advanced aspects of chemical engineering processes.Spanning 20 chapters, the book delves into various processes, equipment, and methodologies essential for modern chemical engineering, from basic principles to specific applications such as reactors, separations, and process integration.Each chapter systematically covers both theoretical concepts and practical applications, emphasizing process design, operational efficiency, environmental considerations, and safety.The book aims to equip chemical engineers with a robust toolkit for tackling diverse challenges in the industry, emphasizing innovation, sustainability, and the integration of new technologies.Unlike conventional texts that often focus primarily on established methods and theoretical fundamentals, this book actively explores innovative technologies and strategies to enhance efficiency and minimize environmental impact.Additionally, the book places significant emphasis on practical experience and real-world applications, imbuing readers not only with theoretical knowledge but also with practical skills and an understanding of industry trends.The book covers: Creativity, choice, and decision-making in chemical engineering, emphasizing the artistic and imaginative aspects of process designSolids processes such as size reduction, granulation, particle measurement and classification, and the conveyance of solidsPrinciples and methods employed to mix diverse materials such as miscible and immiscible liquids, gases with liquids, and solids with liquids or gasesCritical aspects of heat exchange in chemical processes, focusing on the heating, cooling, and phase changes of various substancesEstimation of process engineering hours With detailed discussions on process intensification and the latest developments in solvent and reactor technologies, and a focus on modern, sustainable practices alongside traditional engineering concepts, this book serves as a vital resource for students and professionals seeking to polish and hone their knowledge and practice in chemical engineering design.
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Which chemical experiments in organic chemistry are relatively safe?
Some relatively safe chemical experiments in organic chemistry include simple distillation, recrystallization, and extraction. These experiments involve relatively low-risk chemicals and processes, and can be conducted with proper safety precautions and supervision. Additionally, basic synthesis reactions using common reagents such as acids, bases, and alcohols can also be relatively safe when performed with care and in a controlled environment. However, it is important to always follow proper safety protocols and consult with a knowledgeable instructor or professional when conducting any chemical experiments.
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What does a Greek letter in a chemical formula mean in organic chemistry?
In organic chemistry, a Greek letter in a chemical formula is used to denote the position of a substituent on a carbon chain. For example, the Greek letter "alpha" (α) is used to indicate the first carbon atom adjacent to a functional group, "beta" (β) for the second carbon, and so on. This notation helps to specify the exact location of functional groups or substituents on a carbon chain, which is important for understanding the structure and reactivity of organic molecules.
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What does a Greek letter represent in a chemical formula in organic chemistry?
In organic chemistry, a Greek letter is often used to represent a specific position or orientation of a functional group within a molecule. For example, the Greek letter alpha (α) is commonly used to denote the first carbon atom next to a functional group, while beta (β) represents the second carbon atom, and so on. These Greek letters help chemists to specify the exact location of functional groups within complex organic molecules, aiding in the understanding of their chemical properties and reactivity.
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What is better, chemical technician or chemical laboratory assistant?
The choice between a chemical technician and a chemical laboratory assistant ultimately depends on individual preferences and career goals. A chemical technician typically has more responsibilities and may be involved in research, development, and analysis of chemicals and materials. On the other hand, a chemical laboratory assistant may have more of a supportive role, assisting with experiments, maintaining equipment, and preparing samples. Both roles are important in the field of chemistry, and the decision of which is better would depend on one's interests and career aspirations.
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Organic Redox Chemistry : Chemical, Photochemical and Electrochemical Syntheses
Organic Redox Chemistry Explore the most recent advancements and synthesis applications in redox chemistry Redox chemistry has emerged as a crucial research topic in synthetic method development.In Organic Redox Chemistry: Chemical, Photochemical and Electrochemical Syntheses, some key researchers in this field, including editors Dr. Frédéric W. Patureau and the late Dr. Jun-Ichi Yoshida, deliver an insightful exploration of this rapidly developing topic.This book highlights electron transfer processes in synthesis by using different techniques to initiate them, allowing for a multi-directional perspective in organic redox chemistry.Covering a wide array of the important and recent developments in the field, Organic Redox Chemistry will earn a place in the libraries of chemists seeking a one-stop resource that compares chemical, photochemical, and electrochemical methods in organic synthesis.
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Chemical Warfare CD + Chemical Warfare Hoody
1. Lightning Strike2. Invincible feat. Lindsey Stirling3. Unbreakable4. Chemical Warfare5. Erase You6. Not My Problem feat. Travis Barker7. Burn the Bridges8. Demons9. Hand Grenade10. Ashes Broken World11. My Gravity12. Walk On
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Chemical Warfare Chemical Advance 210 Caps
Chemical Warfare brings you the ultimate day time weight management formula comprised of clinically dosed ingredients designed to help you achieve your desired goal in an easy to mix, great-tasting drink. Description Ingredients Chemical Advanced is the complete male support product. It was designed with the understanding of the importance of keeping testosterone levels elevated when performing high-intensity training, weight-lifting and in general wellbeing. As we get older our natural testosterone levels decrease in time and we have designed a product that will provide you with the correct ingredients at the correct dosages to maximise your levels and unlock your full potential. Amongst the numerous ingredients in this formula are two that require a special introduction. Black Ginger extract (Kaempferia Parviflora) has long been used in Asia for energy enhancement and its aphrodisiac activity. The second highest-rated ingredient is KSM-66® Ashwagandha a branded, full-spectrum extract, with the highest concentration of all major root-only extracts available on the market today. It is produced using a unique proprietary extraction process, based on ‘Green Chemistry’ principles, without using alcohol or any other chemical solvent. For optimal endurance, strength, recovery and sexual performance, Chemical Warfare has dosed this at 800mg!
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Chemical Reactor Design : Mathematical Modeling and Applications
A guide to the technical and calculation problems of chemical reactor analysis, scale-up, catalytic and biochemical reactor design Chemical Reactor Design offers a guide to the myriad aspects of reactor design including the use of numerical methods for solving engineering problems. The author - a noted expert on the topic - explores the use of transfer functions to study residence time distributions, convolution and deconvolution curves for reactor characterization, forced-unsteady-state-operation, scale-up of chemical reactors, industrial catalysis, design of multiphasic reactors, biochemical reactors design, as well as the design of multiphase gas-liquid-solid reactors. Chemical Reactor Design contains several examples of calculations and it gives special emphasis on the numerical solutions of differential equations by using the finite differences approximation, which offers the background information for understanding other more complex methods.The book is designed for the chemical engineering academic community and includes case studies on mathematical modeling by using of MatLab software.This important book: - Offers an up-to-date insight into the most important developments in the field of chemical, catalytic, and biochemical reactor engineering - Contains new aspects such as the use of numerical methods for solving engineering problems, transfer functions to study residence time distributions, and more - Includes illustrative case studies on MatLab approach, with emphasis on numerical solution of differential equations using the finite differences approximation Written for chemical engineers, mechanical engineers, chemists in industry, complex chemists, bioengineers, and process engineers, Chemical Reactor Design addresses the technical and calculation problems of chemical reactor analysis, scale-up, as well as catalytic and biochemical reactor design.
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What is the chemical equation for chemical reaction 29?
The chemical equation for chemical reaction 29 is: 2H2 + O2 -> 2H2O This equation represents the reaction between hydrogen gas (H2) and oxygen gas (O2) to form water (H2O). This is a combustion reaction, where the hydrogen and oxygen combine to produce water and release energy in the form of heat and light.
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Chemical or physical?
Chemical changes involve the formation of new substances with different chemical properties, while physical changes only affect the physical state or appearance of a substance without changing its chemical composition. Examples of chemical changes include burning wood to produce ash and smoke, while examples of physical changes include melting ice into water or crushing a can. Both types of changes are important in understanding the behavior of matter and can be observed in various everyday phenomena.
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Where does one earn more: chemical laboratory technician or chemical technician?
The salary for a chemical laboratory technician and a chemical technician can vary depending on factors such as location, experience, and education. However, in general, a chemical technician typically earns more than a chemical laboratory technician. This is because chemical technicians are often involved in more complex tasks such as research, development, and production, which can command a higher salary compared to the more routine tasks performed by chemical laboratory technicians. Additionally, chemical technicians may have more specialized skills and knowledge, which can also contribute to higher earning potential.
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How do I arrive at this chemical equation of chemical equilibrium?
To arrive at a chemical equation for a chemical equilibrium, you first need to understand the reaction that is taking place and the balanced chemical equation for that reaction. Then, you need to consider the conditions under which the reaction is occurring, such as temperature, pressure, and concentration of reactants and products. Using this information, you can write the equilibrium expression for the reaction, which shows the ratio of the concentrations of products to reactants at equilibrium. Finally, you can use the equilibrium expression to write the chemical equation for the equilibrium state, showing the balance of reactants and products at that point.
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