tchange = 6,80 11. The element radon is at the opposite end of the range, with the lowest specific heat of all naturally occurring elements. At 25°C, radon's specific heat is 0.094 J/g. C. If the temperature of a 35 g sample of radon is to be lowered by 10°C, how much energy will have to be removed from the radon?

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter5: Thermochemistry
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tehange = 680
11. The element radon is at the opposite end of the range, with the lowest specific heat of all naturally
occurring elements. At 25°C, radon's specific heat is 0.094 J/g. C. If the
temperature of a 35 g sample of radon is to be lowered by 10°C, how
much energy will have to be removed from the radon?
Transcribed Image Text:tehange = 680 11. The element radon is at the opposite end of the range, with the lowest specific heat of all naturally occurring elements. At 25°C, radon's specific heat is 0.094 J/g. C. If the temperature of a 35 g sample of radon is to be lowered by 10°C, how much energy will have to be removed from the radon?
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