The Internal energy of condensation of 1 mole of water should be calculated. Concept Introduction: The Internal energy is a total energy of a system. Which is consists of kinetic, potential energies. The internal energy change is accompanies the heat flow or as work done on or by a system. Formula: ΔE=q ± w (1) q is a heat W is a work Work done by the system means heat and work will be +q and -w Work done on the system means heat and work will be -q and +w The work is considered as a pressure and volume for the gases expansion and compressions in thermodynamic process. Formula: w =-P×ΔV (2) W is work P is a constant external pressure ΔV is a volume change
The Internal energy of condensation of 1 mole of water should be calculated. Concept Introduction: The Internal energy is a total energy of a system. Which is consists of kinetic, potential energies. The internal energy change is accompanies the heat flow or as work done on or by a system. Formula: ΔE=q ± w (1) q is a heat W is a work Work done by the system means heat and work will be +q and -w Work done on the system means heat and work will be -q and +w The work is considered as a pressure and volume for the gases expansion and compressions in thermodynamic process. Formula: w =-P×ΔV (2) W is work P is a constant external pressure ΔV is a volume change
Solution Summary: The author explains that the internal energy of condensation of 1 mole of water should be calculated.
Study of body parts and their functions. In this combined field of study, anatomy refers to studying the body structure of organisms, whereas physiology refers to their function.
Chapter 7, Problem 40E
Interpretation Introduction
Interpretation: The Internal energy of condensation of 1 mole of water should be calculated.
Concept Introduction:
The Internal energy is a total energy of a system. Which is consists of kinetic, potential energies. The internal energy change is accompanies the heat flow or as work done on or by a system.
Formula:
ΔE=q±w (1)
q is a heat
W is a work
Work done by the system means heat and work will be
+q and -w
Work done on the system means heat and work will be
-q and +w
The work is considered as a pressure and volume for the gases expansion and compressions in thermodynamic process.
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