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Graph showing the change in entropy over time for water, air, and the universe's surroundings

Ask AI: discuss : the graph illustrating the change in entropy of different surroundings,water,air ,universe at different time

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Question: discuss : the graph illustrating the change in entropy of different surroundings,water,air ,universe at different time

Asked by mahlatsi

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A graph illustrating the change in entropy of different surroundings - such as water, air, and the universe - over time can serve as a visual representation of how these environments change in terms of order and disorder. 1. Water: For a graph of water, you would want to consider its different states (solid, liquid, gas) and how entropy changes in each. Generally, as water goes from a solid (ice) to a liquid (water) to a gas (steam), its entropy, or disorder, increases. This is because the molecules become increasingly disorganized with each state change. 2. Air: For air, entropy can often be graphed based on changes in temperature and volume. For example, as air is heated and expands, its entropy also increases because the particles are becoming more spread out and disorganized. 3. Universe: The entropy of the universe is constantly increasing over time based on the Second Law of Thermodynamics. This could be represented on a graph as a continually ascending line, signifying more disorder and a continual distribution of energy. Note that entropy, being a measure of disorder, is often represented along the Y-axis of these graphs, while time (or changes in conditions like temperature and volume) would be along the X-axis. Remember that these representations are intended to provide a generalized overview. The exact graph would depend on various factors including specific conditions and units of measurement.

Answered by gpt-4

Sept. 7, 2023, 10:23 a.m.

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This article was generated in part by one of OpenAI’s large-scale language-generation model, answering user mahlatsi's question. Images were generated with OpenAI's AI model, DALL·E 2. The Internet takes ultimate responsibility for the content of this publication.
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Published: Thursday, September 7, 2023

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