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Q: What are the first and second laws of thermodynamics explain them in biological systems?
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How does energy systems relate to other systems?

The second law of thermodynamics states that


Which law of thermodynamics is the reason that you need a constant input of energy to drive biological systems?

The Second Law of Thermodynamics states that a system with no energy input and no losses will tend towards a zero energy state. This is essentially the entropy of any energy exchange. Thus, you require a constant input of energy to maintain any system.


What is law of the 2nd?

the second law of thermodynamics states that systems tend to change in a way that increases the disorder.


What is the 2nd Law of Theromdynamics?

the second law of thermodynamics states that systems tend to change in a way that increases the disorder.


Why do biological organisms violate the laws of thermodynamics?

Biological organisms do not violate the laws of thermodynamics. Instead, they operate within and are subject to these laws. Living systems utilize energy from their environment, taking in nutrients and converting them into useful forms of energy. While biological processes are able to maintain and increase order locally, the overall entropy of the universe continues to increase in accordance with the second law of thermodynamics.


Why predators are generally less abundant than their prey use the second law of thermodynamics to explain why?

Because the smoke weed lol


Which law of thermodynamics states that the heat engine cannot be completely efficient?

True


Why the first and second law of thermodynamics may be states you can not get ahead and you can not break even?

According to the second law of Thermodynamics, the amount of usable energy will continuously decrease.According to the second law of Thermodynamics, the amount of usable energy will continuously decrease.According to the second law of Thermodynamics, the amount of usable energy will continuously decrease.According to the second law of Thermodynamics, the amount of usable energy will continuously decrease.


The fact that usable energy is always lost in an energy transfer is due to what 1 Newton's first law of motion 2 the second law of thermodynamics 3 Newton's second law of motion 4 the first l?

The second law of thermodynamics.


What law of thermodynamics is unavailable for doing work?

"Unavailable for doing work" is related to the Second Law of Thermodynamics.


What the second law of thermodynamics?

The second law of thermodynamics states that mechanical work can be derived from a body only when that body interacts with another at a lower temperature.---------------------------------------------Answer The laws of thermodynamics have been found to have broader application than the field of thermodynamics. The second law can be stated as: The entropy of an isolated system not in equilibrium will tend to increase over time, approaching a maximum value at equilibrium.- Where entropy can be regarded as randomness or 'chaos'. This application of the second law applies to closed systems, and therefore does not apply to systems that exchange information or energy outside the system. It does not apply to living organisms, as they are not closed systems. The second law applies to macroscopic systems, and therefore does not always apply to microscopic particles. In the field of thermodynamics, it can be stated from the above that the entropy of a thermally isolated macroscopic system never decreases.---------------------------------------------The second law of thermodynamics is:No process is possible whose sole result is the transfer of heat from a body of lower temperature to a body of higher temperature.==========From the pre-merge Expert answer by Hilmar Zonneveld... Confidence votes 60.8K There are many different ways the Second Law can be expressed, all of them equivalent. Here are some:* Useful energy can be converted to unusable energy - not the other way round.* In a closed system, a property called "entropy" can only increase over time - it can never decrease.* The efficiency of a heat engine can never be greater than that of the theoretical Carnot engine.


Is entropy closely related to the 1st law of thermodynamics?

It is related to the 2nd law of thermodynamics