Bring together a hot block of metal and a cold block of metal, both within an insulating container. Heat energy transfer occurs between the two blocks, but no heat transfer occurs in or out of the insulating container. Heat energy transfer occurs from the hot block, -q, into the cold block, +q. Which best describes the entropy changes in the two blocks? bring together 33 You will not need this equation to do any calculations, but you may find this useful: AS-q/T O AS for the hot block is negative, and AS for the cold block is positive AS for the hot block is positive, and AS for the cold block is negative

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Bring together a hot block of metal and a cold block of metal, both within an insulating container.
Heat energy transfer occurs between the two blocks, but no heat transfer occurs in or out of the
insulating container.
Heat energy transfer occurs from the hot block, -q, into the cold block, +q. Which best describes
the entropy changes in the two blocks?
bring
together
33
You will not need this equation to do any calculations, but you may find this useful: AS = q / T
AS for the hot block is negative, and AS for the cold block is positive
O AS for the hot block is positive, and AS for the cold block is negative
Transcribed Image Text:Bring together a hot block of metal and a cold block of metal, both within an insulating container. Heat energy transfer occurs between the two blocks, but no heat transfer occurs in or out of the insulating container. Heat energy transfer occurs from the hot block, -q, into the cold block, +q. Which best describes the entropy changes in the two blocks? bring together 33 You will not need this equation to do any calculations, but you may find this useful: AS = q / T AS for the hot block is negative, and AS for the cold block is positive O AS for the hot block is positive, and AS for the cold block is negative
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