igher heat capacity of copper is represented by the equation Cp=a+bT where a and b constants. The change in enthalpy under one atmospheric pressure when the temperature increases to1500k O 1000a+1000000b O 1000a+20b O 20a+1000000b 100a+100b

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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at temperatures higher than 500k The specific
heat capacity of copper is represented by the
equation Cp=a+bT where a and b constants.
The change in enthalpy under one atmospheric
pressure when the temperature increases
to1500k
O 1000a+1000000b
O 1000a+20b
20a+1000000b
O 100a+100b
Transcribed Image Text:at temperatures higher than 500k The specific heat capacity of copper is represented by the equation Cp=a+bT where a and b constants. The change in enthalpy under one atmospheric pressure when the temperature increases to1500k O 1000a+1000000b O 1000a+20b 20a+1000000b O 100a+100b
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