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The first law of thermodynamics states that the difference between the heat flow into a system and the work done by the system is equal to the change in A. heat energy B. kinetic energy C. Internal energy D. mechanical energy
The first law of thermodynamics states that the difference between the heat flow into a system and the work done by the system is equal to the change in Internal energy.
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timmy2icy
Asked 6/28/2016 7:52:37 AM
Updated 6/28/2016 8:09:42 AM
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The first law of thermodynamics states that the difference between the heat flow into a system and the work done by the system is equal to the change in A. heat energy B. kinetic energy C. Internal energy D. mechanical energy
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jeifunk
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The first law of thermodynamics states that the difference between the heat flow into a system and the work done by the system is equal to the change in Internal energy.
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Added 6/28/2016 8:09:42 AM
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Questions asked by timmy2icy
Which term describes a thermal process in which the temperature remains constant?
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Updated 3/12/2019 5:23:12 PM
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emdjay23
Isothermal process describes a thermal process in which the temperature remains constant.
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Which statement accurately describes a conductor?
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In a conductor, electric current can flow freely, describes a conductor.
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Question|Asked by
timmy2icy
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Asked 6/28/2016 9:26:13 AM
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Another way to define entropy is that it is the availability of energy in a
Weegy:
Another way to define entropy is that it is the availability of energy in a ENTROPY.
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Question|Asked by
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Asked 6/29/2016 8:12:10 AM
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What is the best definition of the term entropy?
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Updated 6/29/2016 10:43:56 AM
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jeifunk
M
Entropy is a thermodynamic quantity representing the unavailability of a system's thermal energy for conversion into mechanical work, often interpreted as the degree of disorder or randomness in the system.
Added 6/29/2016 10:43:56 AM
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Which kind of wave requires a medium for propagation? A. radio B. seismic C. gamma ray D. visible light
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Seismic wave requires a medium for propagation.
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Question|Asked by
timmy2icy
Updated 6/28/2016 10:13:39 AM
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