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Sport Psychology : Performance Enhancement, Performance Inhibition, Individuals, and Teams
Sport Psychology, 2nd Edition provides a synthesis of the major topics in sport psychology with an applied focus and an emphasis on achieving optimal performance.After exploring the history of sport psychology, human motivation, and the role of exercise, there are three main sections to the text: Performance Enhancement, Performance Inhibition, and Individuals and Teams. The first of these sections covers topics such as anxiety, routines, mental imagery, self-talk, enhancing concentration, relaxation, goals, and self-confidence.The section on Performance Inhibition includes chapters on choking under pressure, self-handicapping, procrastination, perfectionism, helplessness, substance abuse, and disruptive personality factors.While much of the information presented is universally applicable, individual differences based on gender, ethnicity, age, and motivation are emphasized in the concluding section on Individuals and Teams. Throughout, there are case studies of well-known athletes from a variety of sports to illustrate topics that are being explored.
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Health Food > Diet > Absorption inhibition > Oil > Metabolic Migaru 60 grains Oil Absorption inhibition Three special ingredients (Salacia, Chitosan, and Active Fiber) support sugar, fat, and salt. ---Dosage and Administration ---- [How to Take] As a dietary supplement, take about 2 capsules once or twice a day with plenty of water or lukewarm water, without biting. Nutrition Facts per 3 capsules (including packaging material)] Energy: 4.9Kcal Protein: 0.21g Fat: 0.03g Carbohydrate: 0.95g Salt equivalent: 0.0022g Vitamin B6: 1.0mg [Standard Ingredients
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The Art of the Cosmos : Visions from the Frontier of Deep-Space Exploration
Hundreds of deep space missions since the 1960s have captured stunning photographs of the cosmos.Many of these scientific images can also be classified as art.This book highlights more than 100 examples, revealing the splendor of our universe. This book is a gallery of human accomplishment that celebrates the scientists and engineers who push civilization-including the ways that we produce and experience art-beyond the physical limits of our planet.The photographs, selected by Dr. Jim Bell, represent some of the finest examples of the art of deep space exploration, most of them involving high-tech robotic emissaries.The images are loosely organized by distance from the Earth, so that readers will slowly travel on a journey farther and farther away from home, ultimately voyaging out to vistas of the farthest-known places in the universe.
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Is allosteric inhibition the same as non-competitive inhibition?
Allosteric inhibition and non-competitive inhibition are not the same, although they are related. Non-competitive inhibition refers to the binding of an inhibitor to a site on the enzyme that is not the active site, thereby preventing the substrate from binding to the active site. Allosteric inhibition, on the other hand, occurs when an inhibitor binds to a site on the enzyme that is distinct from the active site, causing a conformational change in the enzyme that reduces its activity. While both types of inhibition involve the binding of an inhibitor to a site other than the active site, allosteric inhibition specifically involves a change in the enzyme's shape and activity.
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What type of inhibition occurs through allosteric activation/inhibition?
Allosteric inhibition occurs when a molecule binds to an allosteric site on an enzyme, causing a conformational change that reduces the enzyme's activity. This type of inhibition is non-competitive, meaning it does not compete with the substrate for the active site. Allosteric activation, on the other hand, occurs when a molecule binds to an allosteric site and enhances the enzyme's activity. Both allosteric inhibition and activation involve the binding of a regulatory molecule to a site other than the active site of the enzyme, leading to a change in the enzyme's activity.
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What is the difference between competitive inhibition and allosteric inhibition?
Competitive inhibition occurs when a molecule competes with the substrate for the active site of an enzyme, effectively blocking the substrate from binding and inhibiting the enzyme's activity. In contrast, allosteric inhibition occurs when a molecule binds to a site on the enzyme other than the active site, causing a conformational change that reduces the enzyme's activity. While competitive inhibition directly competes with the substrate for the active site, allosteric inhibition involves binding to a different site on the enzyme to regulate its activity.
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What is allosteric inhibition?
Allosteric inhibition is a type of enzyme regulation where a molecule binds to a site on the enzyme that is different from the active site, causing a conformational change in the enzyme's structure. This change reduces the enzyme's activity and ability to bind to its substrate, ultimately inhibiting its function. Allosteric inhibition is a reversible process and can be used to regulate enzyme activity in response to changing cellular conditions.
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Space Exploration
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Architecture of the Cosmos : Shanghai Astronomy Museum
This book, edited by the designer of Shanghai Astronomy Museum, Ennead Architects LLP, is an all-round record of the design and construction process of Shanghai Astronomy Museum, with a foreword written by Ye Shuhua — an astronomer and academician of the Chinese Academy of Sciences, and a preface by Shanghai Science and Technology Museum.The main part of the book unfolds from four perspectives: site, concept, realisation, and engineering and construction, which describes the process of generating the core form of the Shanghai Astronomy Museum, as well as the design ingenuity of the main functional areas inside.The book presents many beautiful images of the museum, and includes texts by the chief designer, Thomas J.Wong. The designers' love for the universe and their great enthusiasm for the project contribute to the essence of this book. Text in English and Chinese.
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Permanent Hair Inhibition Oil Cyperus Rotundus Pure Plant Essential Oil Not Irritating Smoothing
Permanent Hair Inhibition Oil Cyperus Rotundus Pure Plant Essential Oil Not Irritating Smoothing
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50ml Hair Removal Spray Deep Cleaning Smooth Skin Natural Hair Inhibition Cream 50ml
Ingredients: talc, mica, silicon dioxide, magnesium stearate, simethicone, ethylhexyl palmitate Item Name:Hair Removal Spray Material:Synthetic Net Capacity:50ml Features:Painless, Deep Cleaning, Delay Growth Size Available: Measurement in CM 3.5cm X 3.5cm X 12.2cm/1.38'' X 1.38'' X 4.80 (Approx.): Description: Brand New & High quality. Pls Note: 1.Please allow 0.1-0.3cm differences due to manual measurement, thanks. 2.As shown, all products are made under natural light. What you see is a real shot, but for various reasons, such as a monitor, you may see that the colors on the image may be slightly different from the actual colors. Please prevail in kind. Package Contents: 1 x Hair Removal Spray
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Non-competitive inhibition, right?
Non-competitive inhibition is a type of enzyme inhibition where the inhibitor binds to a site on the enzyme that is not the active site. This binding causes a conformational change in the enzyme, making it less effective at catalyzing the reaction. Non-competitive inhibitors do not compete with the substrate for binding to the enzyme. Instead, they can bind to the enzyme-substrate complex or to a separate allosteric site on the enzyme.
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Is allosteric inhibition irreversible?
Allosteric inhibition is typically reversible, meaning that the inhibitor can bind to the allosteric site and block the activity of the enzyme, but can also dissociate from the site, allowing the enzyme to regain its activity. This is in contrast to irreversible inhibition, where the inhibitor forms a covalent bond with the enzyme, permanently inactivating it.
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What is the difference between allosteric inhibition and competitive inhibition in biology?
Allosteric inhibition occurs when a molecule binds to an allosteric site on an enzyme, causing a conformational change that reduces the enzyme's activity. This type of inhibition is non-competitive and can affect multiple enzymes in a metabolic pathway. On the other hand, competitive inhibition occurs when a molecule competes with the substrate for the active site of the enzyme, effectively blocking the substrate from binding and reducing the enzyme's activity. Competitive inhibition can be overcome by increasing the concentration of the substrate, while allosteric inhibition cannot be overcome in the same way.
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What is the difference between non-competitive inhibition and allosteric inhibition in biochemistry?
Non-competitive inhibition occurs when an inhibitor binds to an enzyme at a site other than the active site, causing a conformational change in the enzyme that reduces its activity. This type of inhibition does not compete with the substrate for binding to the active site. On the other hand, allosteric inhibition occurs when an inhibitor binds to an allosteric site on the enzyme, causing a conformational change that reduces the enzyme's activity. Allosteric inhibition can be reversible or irreversible, and it can be overcome by increasing the concentration of the substrate.
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