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  • Biochemical Individuality
    Biochemical Individuality

    There is no such thing as an average person, we are all genetically and biologically unique.But when sperm meets egg, our characteristics are not locked in stone.This work argues that bad genes do not necessarily cause disease by themselves, and nutrition and environment can alter the outcome.

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  • Biochemical Reaction Engineering
    Biochemical Reaction Engineering

    This textbook comprehensively covers fundamental and advanced aspects of biochemical engineering along with MATLAB codes.It comprehensively covers important topics including enzyme catalyzed reaction kinetics, catalytic antibodies and non-protein biomolecules as catalysts, process flow diagram (PFD), piping & instrumentation diagram (P&ID), wastewater treatment processes, design of fermenters and mass and energy balance.Pedagogical features including solved problems and unsolved exercises are interspersed throughout the text for better understanding. This book:· Provides solid foundation and understanding of the fundamental principles of mathematics, science, and engineering. · Explores tools for solving theoretical and open-ended biochemical engineering problems · Covers principles of downstream process and biochemical engineering principles with illustration and problems · Discusses application of computer and programming in biochemical engineering · Covers case studies for bioprocess plant design. The textbook is primarily written for senior undergraduate and graduate students in the fields of chemical engineering, biotechnology, and food process engineering for courses on biochemical engineering/bioprocess engineering/downstream processing.

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  • Techniques for Biochemical Analysis
    Techniques for Biochemical Analysis

    Techniques for Biochemical Analysis provides researchers with a practical guide for investigating a variety of different biomolecules.It includes a range of tried and tested protocols, outlining the principles upon which each technique is founded, as well as providing instructions on equipment setup and use, buffer preparation, reagents required, safety considerations and analysis of findings.Beginning with an introduction to biochemistry and laboratory procedures, the book moves on to specific methods focused on investigation of carbohydrates, proteins, enzymes, plant hormones, minerals, amino acids, and more. The large range of protocols covered in this foundational, how-to reference are interdisciplinary and adaptable to a variety of areas, making this an ideal resource for researchers across various fields, including biochemistry, molecular biology, medical sciences, plant physiology, agriculture, and related subjects.

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  • Principles of Biochemical Toxicology
    Principles of Biochemical Toxicology

    This leading textbook in the field examines the mechanisms underlying toxicity, particularly the events at the molecular level and the factors that determine and affect toxicity.The new edition is updated to reflect the latest research into the biochemical basis of toxicology and the growing concerns over the adverse effects of drugs, environmental pollution, and occupational hazards. Principles of Biochemical Toxicology, Fourth Edition thoroughly explains dose-response relationships, disposition and metabolism, and toxic responses to foreign compounds, and presents detailed examples to make the mechanisms of toxicity more accessible to students encountering the subject for the first time.Comprehensive in scope with a clear and concise approach, the text includes summary sections, questions and model answers, and thoroughly revised artwork that serves as an essential aid to learning and teaching. New to the Fourth Edition:reorganized sections that cover basic principles followed by sections on different types of toxicityextensive use of examples throughout and numerous explanatory diagramsnew material on risk assessment, export systems, oxidative stress, Thalidomide, Tamoxifen and asbestos proliferators, domoic acid, bone marrow (benzene), heart (adriamycin), blood (primaquine), biomarkers, cytochrome P450 and other enzymes, receptor mediated effects, endocrine disruption, ethanol, botox, arsenic, and morequestions with answers for each chapter for review and self-checkingexpanded and updated chapter bibliographies

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  • Is consciousness a biochemical process?

    Consciousness is a complex phenomenon that involves various aspects of the brain and body working together. While there is evidence to suggest that certain biochemical processes in the brain are associated with consciousness, it is not fully understood how these processes give rise to subjective experiences. Some researchers argue that consciousness is more than just a biochemical process and involves other factors such as neural networks, information processing, and cognitive functions. Overall, the relationship between consciousness and biochemical processes is still a topic of ongoing research and debate in the field of neuroscience.

  • What is a biochemical mutation?

    A biochemical mutation is a change in the genetic material of an organism that results in an alteration of a biochemical pathway. This alteration can affect the production or function of proteins, enzymes, or other molecules involved in cellular processes. Biochemical mutations can lead to a wide range of effects, from mild changes in metabolic function to severe genetic disorders. These mutations can be caused by various factors, such as exposure to mutagens, errors in DNA replication, or inherited genetic variations.

  • What is a biochemical reaction?

    A biochemical reaction is a process in which biological molecules such as proteins, carbohydrates, and lipids undergo chemical transformations. These reactions are essential for the functioning of living organisms, as they are involved in processes such as metabolism, energy production, and the synthesis of essential molecules. Biochemical reactions often involve the breaking and forming of chemical bonds, and are catalyzed by enzymes to occur at a faster rate. Overall, biochemical reactions play a crucial role in maintaining the homeostasis and functionality of living systems.

  • Is man just a biochemical machine?

    While humans are indeed made up of biochemical processes and reactions, reducing them solely to being a biochemical machine oversimplifies the complexity of human existence. Humans possess consciousness, emotions, creativity, and the ability to make choices, which cannot be fully explained by biochemical processes alone. Therefore, it is important to recognize the multidimensional nature of human beings beyond just their biochemical makeup.

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  • Aquatic Fairy Biochemical Cotton Filter Double Head Mini Fish Tank Biochemical Sponge Filter Sponge
    Aquatic Fairy Biochemical Cotton Filter Double Head Mini Fish Tank Biochemical Sponge Filter Sponge

    Aquatic Fairy Biochemical Cotton Filter Double Head Mini Fish Tank Biochemical Sponge Filter Sponge

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  • Biochemical Principles and Techniques in Neuropharmacology
    Biochemical Principles and Techniques in Neuropharmacology

    It is difficult to imagine an era in which there were no selective drugs for treating anxiety, depression, schizophrenia, and other mental ailments.Yet in a remarkably short time these drugs have come to occupy a position of prominence in medical practice throughout the world, and they now account for a major portion of all prescriptions.Most psychotropic drugs were discovered with little premeditation on the part of the inves~ tigator.The drugs simply "worked," often with little rationale, and psychopharmacology has been for many years an empirical discipline in search of scientific underpinnings.In the past decade, a basic science of psychopharmacology has de­ veloped and grown rapidly.Though psychotropic drugs are exceedingly "young" as drugs in medical practice go, we probably know more about their various mechanisms of action than we know about most drugs in clinical use.Advances in understanding effects of psychopharmaceuticals on the brain have been so prodigious that a new research paradigm has evolved.Instead of being concerned solely with understanding how the drugs act, many researchers now employ psychotropic drugs as tools-often the most powerful ones-to elucidate brain function.Consequently, psychophar­ macology is central to neurobiology, which in turn has emerged as an important discipline, heir to the preeminent glamor of molecular biology.

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  • Third Century of Biochemical Oxygen Demand
    Third Century of Biochemical Oxygen Demand


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  • The Biochemical Basis of Sports Performance
    The Biochemical Basis of Sports Performance

    Some understanding of the biochemistry of exercise is fundamental to any study of the factors that contribute to sports performance.It is the physical, chemical and biochemical properties of cells and tissues that determine the physiological responses to exercise, and yet the teaching of exercise biochemistry is poorly developed compared with exercise physiology.Where the subject is taught, the student often finds the approach somewhat daunting, with its focus on thermodynamics, chemical structures and metabolic pathways.Many students find the subject difficult, when it should not be so.This book introduces the student of sports science or exercise physiology to the biochemical processes that underpin exercise performance and the adaptations that occur with training.The focus is on skeletal muscle metabolism and the provision of energy for working muscles and the principles of exercise biochemistry are introduced in a context that is immediately relevant to the student of sports science.Instead of the traditional approach of working through the main classes of biomolecules and metabolic pathways, the subject is tackled by considering the biochemical processes involved in energy provision for different sports events and the way in which limitations in energy supply can cause fatigue, and thus limit performance.Recovery from exercise is important for athletes who train and compete with only a limited rest period, and the biochemical processes that influence recovery and restoration of performance capacity are also addressed.The processes fuelling the activities that contribute to sport form the core of this book, together with the changes that occur with training and the role of diet in providing the necessary fuels.But sporting talent is a rare gift, and a brief description of its hereditary basis is included. · A complete introduction to the biochemical basis of sports performance, appealing to undergraduate students, coaches, and athletes · Numerous links made between biochemistry and physiology for an integrated view of the subject· The student is directed to carefully chosen further reading articles, allowing them to readily explore key topics in more detailOnline Resource CentreThe Online Resource Centre to accompany The Biochemical Basis of Sports Performance features:For students:· 'In the News' updates· Multiple choice questions· Hyperlinked bibliography· Extended case study following an athlete through a season, with exercisesFor lecturers:· Figures from the book, available to download

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  • What is a biochemical enzyme reaction?

    A biochemical enzyme reaction is a process in which enzymes, which are biological catalysts, facilitate chemical reactions within living organisms. Enzymes work by binding to specific molecules, called substrates, and lowering the activation energy required for the reaction to occur. This allows the reaction to proceed at a much faster rate than it would without the enzyme. Enzyme reactions are essential for many biological processes, including metabolism, digestion, and cellular respiration.

  • Why is hydrochloric acid added to biochemical enzymes?

    Hydrochloric acid is added to biochemical enzymes to create an acidic environment that is optimal for the enzyme's activity. This acidic environment helps to denature proteins and break down molecules, allowing the enzyme to function more efficiently. Additionally, hydrochloric acid can help to stabilize the enzyme's structure and maintain its activity over time. Overall, the addition of hydrochloric acid helps to enhance the performance of biochemical enzymes in various biological processes.

  • How does behavior therapy eliminate the biochemical problems?

    Behavior therapy does not directly eliminate biochemical problems. Instead, it focuses on changing maladaptive behaviors and thought patterns that may contribute to or exacerbate biochemical issues such as anxiety or depression. By addressing these behaviors and thought patterns, behavior therapy can help individuals develop healthier coping mechanisms and reduce the impact of biochemical problems on their daily functioning. Additionally, behavior therapy can also be used in conjunction with other treatments, such as medication, to provide a comprehensive approach to addressing biochemical issues.

  • What is the difference between biotechnology, biochemical engineering, and bioengineering?

    Biotechnology involves using living organisms or their systems to develop products or processes. Biochemical engineering focuses on applying engineering principles to design and optimize processes that involve biological molecules. Bioengineering is a broader field that combines principles of engineering and biology to develop solutions for various applications, such as medical devices, tissue engineering, and biomaterials. Overall, while biotechnology and biochemical engineering are more specialized fields, bioengineering encompasses a wider range of applications and disciplines.

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