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Is positive entropy more disorder?

Olivia Turner | 2023-06-10 03:11:57 | page views:1626
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Ethan Moore

Works at the International Atomic Energy Agency, Lives in Vienna, Austria.
As a domain expert in thermodynamics and statistical physics, I can provide an in-depth explanation of the concept of entropy and its relation to disorder. Entropy, often denoted by the symbol \( S \), is a fundamental quantity in the second law of thermodynamics, which is a measure of the amount of disorder or randomness in a system. The second law states that the total entropy of an isolated system can never decrease over time, and is constant if and only if all processes are reversible. In other words, the entropy of an isolated system will either increase or remain constant; it will not decrease.
Positive entropy change, therefore, signifies an increase in the level of disorder within a system. This increase can occur due to a variety of processes, such as heat transfer, mixing of substances, or the expansion of gases. It's important to note that the concept of entropy is closely tied to the probability of a system's state. A higher entropy state corresponds to a higher number of possible microstates, which means there are more ways the system can be arranged while still appearing macroscopically the same.

Let's consider the example provided: the freezing of liquid water into ice. When water freezes, the molecules transition from a less ordered liquid state to a more ordered solid state. This process is accompanied by a negative change in entropy because the system becomes more ordered. However, if we consider the entire system including the environment, the total entropy increases. This is because the release of latent heat during freezing increases the entropy of the surroundings more than the decrease in entropy of the water itself.

It's also worth mentioning that entropy is not just about the physical arrangement of particles; it also involves the concept of information. A system with high entropy has a large amount of information that is not accessible to macroscopic observation. In a way, high entropy can be thought of as a loss of information about the detailed state of a system.

In conclusion, positive entropy does indeed represent more disorder in a system, but it's crucial to consider the broader context of the second law of thermodynamics and the total entropy of the system and its surroundings. The increase in entropy is a measure of the irreversibility of a process and is a fundamental concept in understanding the direction of spontaneous processes in nature.


2024-05-11 21:41:38

Ethan Davis

Works at the International Criminal Court, Lives in The Hague, Netherlands.
A negative change in entropy indicates that the disorder of an isolated system has decreased. For example, the reaction by which liquid water freezes into ice represents an isolated decrease in entropy because liquid particles are more disordered than solid particles.Apr 24, 2017
2023-06-20 03:11:57

Riley White

QuesHub.com delivers expert answers and knowledge to you.
A negative change in entropy indicates that the disorder of an isolated system has decreased. For example, the reaction by which liquid water freezes into ice represents an isolated decrease in entropy because liquid particles are more disordered than solid particles.Apr 24, 2017
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