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Q: Why predators are generally less abundant than their prey use the second law of thermodynamics to explain why?
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Using the second law of thermodynamics how would you explain why predators are generally less abundant than their prey?

In some environments, the vast majority of the biomass of an ecosystem is in upper level predators! (Coral reefs come to mind)Right, um... The larger predators tend to be more ordered than large numbers of prey. They organize a bunch of little things into one ordered body. As the universe must descend towards disorder, there would typically be more (disorganized) prey than (organized) predators.


What is statistical thermodynamics?

Statistical thermodynamics uses probability and probability distributions for large collections of particles to reproduce the same properties of macroscopic systems already established by classical thermodynamics. In so doing it can give insights into the why's of thermodynamics. Statistical thermodynamics can utilize the equations of quantum mechanics for interatomic and intermolecular forces to further explain the thermodynamic properties of macroscopic systems of real matter based on what is happening down at the atomic level.


What is thermodynamics explain many poor people in the developing countries lives most on vagetarians life?

it is because poor people does not have money hence they are unemployed meaning that they dont have money to afford meat as it is expencive


How does one explain the nature of living things if the secound law of thermodynamics is correct?

An oversimplification of the second law of thermodynamics would state, "Everything cools down." Then the nature of living things would be the need to add energy to counter this cooling down. Humans add this energy by eating food and combining it with oxygen. Thus, the food and oxygen produces energy that can be lost to entropy.


What are the first and second laws of thermodynamics explain how energy flows through the rainforest?

The First Law of Thermodynamics: (Conservation) Energy can be changed from one form to another, but it cannot be created or destroyed. The total amount of energy and matter in the Universe remains constant, merely changing from one form to another. The second law of Thermodynamics: In all energy exchanges, if no energy enters or leaves the system, the potential energy of the state will always be less than that of the initial state. This is also commonly referred to as entropy. I would imagine that energy flows through a rain forest - as it does in any other location!

Related questions

Using the second law of thermodynamics how would you explain why predators are generally less abundant than their prey?

In some environments, the vast majority of the biomass of an ecosystem is in upper level predators! (Coral reefs come to mind)Right, um... The larger predators tend to be more ordered than large numbers of prey. They organize a bunch of little things into one ordered body. As the universe must descend towards disorder, there would typically be more (disorganized) prey than (organized) predators.


How does a battery opperate in terms of the law of thermodynamics?

The first law of thermodynamics can be used to explain the operation of a battery. The law states that energy can neither be created nor destroyed. This can be used to explain how the energy of a battery is converted from chemical to electrical energy.


Does the concept of temperature apply to a single molecule?

Concept of temperature in single molecules could be explain through statistical thermodynamics and measure the temperature in term of kinetic energy of the molecules. Forclassical thermodynamics, the temperature is macroscopic properties andcan't be explain or describe in the classical scope.


What is statistical thermodynamics?

Statistical thermodynamics uses probability and probability distributions for large collections of particles to reproduce the same properties of macroscopic systems already established by classical thermodynamics. In so doing it can give insights into the why's of thermodynamics. Statistical thermodynamics can utilize the equations of quantum mechanics for interatomic and intermolecular forces to further explain the thermodynamic properties of macroscopic systems of real matter based on what is happening down at the atomic level.


What branch of physics explains why tile floor fell cold to the barefoot while carpet feels warm?

Thermodynamics. The basics of Thermodynamics will explain why materials with two different Coefficients of Conductivity will "FEEL" different to the human touch.


Explain how energy is transferred and transformed in lining systems?

just because Conduction radiation Physics thermodynamics's heat transfer.


State and explain first law of thermodynamics?

The first law of thermodynamics is also called the law of conservation of energy.it may be stated as: 1st Statement: in this universe energy can neither be created nor destroyed though it may change from one form to another.


How you explain the word fear?

Generally one would "define," and not "explain"a word such as fear.


Is it possible to file a lawsuit if the police raid a apartment?

There may be grounds for a lawsuit but generally, no. You should consult with an attorney who can review the details and explain your rights and options.There may be grounds for a lawsuit but generally, no. You should consult with an attorney who can review the details and explain your rights and options.There may be grounds for a lawsuit but generally, no. You should consult with an attorney who can review the details and explain your rights and options.There may be grounds for a lawsuit but generally, no. You should consult with an attorney who can review the details and explain your rights and options.


What is the theory used to explain changes in state?

The answer is Kinetic Theory or Kinetic Moleculer Theory


Which are the most complete books to learn about thermodynamics?

Engineering Thermodynamics: An Introductory Textbook by Sandeep Agrawal: This comprehensive textbook provides a comprehensive introduction to thermodynamics, covering topics such as energy conversion, entropy, ideal gases, heat transfer, and more. The book features numerous worked examples and problems, and contains a wealth of illustrations to help explain the key concepts. Fundamentals of Engineering Thermodynamics by Michael J. Moran, Howard N. Shapiro, and Daisie D. Boettner: This widely-used textbook provides an in-depth look at thermodynamics and its applications. It includes chapters on the properties of pure substances, the first and second laws of thermodynamics, entropy, and more. The book also includes numerous examples and problems with detailed solutions. Thermodynamics: An Engineering Approach by Yunus A. Cengel and Michael A. Boles: This popular textbook is written in a style that is easy to understand, and provides an introduction to thermodynamics, along with real-world applications. The book features detailed explanations of topics such as energy, entropy, and the ideal gas law. It also contains a wide range of problems and solutions. Thermodynamics and an Introduction to Thermostatistics by Herbert B. Callen: This book provides a comprehensive and rigorous introduction to thermodynamics. It covers topics such as thermodynamic potentials, the first and second laws of thermodynamics, entropy, and more. The book also contains numerous worked examples and problems with detailed solutions.


Why do spiders live on farms?

Spiders live pretty much everywhere not just on farms, they have a better habitat in farms then in cities which may explain why they are more abundant there.