Consider the expansion of 60.0 moles of a monatomic ideal gas along processes 1 and 2 in Figure 18-31 . In process 1 the gas is heated at constant volume from an initial pressure of 106 kPa to a final pressure of 212 kPa. In process 2 the gas expands at constant pressure from an initial volume of 1.00 m 3 to a final volume of 3.00 m 3 . (a) How much heat is added to the gas during these two processes? (b) How much work does the gas do during this expansion? (c) What is the change in the internal energy of the gas?
Consider the expansion of 60.0 moles of a monatomic ideal gas along processes 1 and 2 in Figure 18-31 . In process 1 the gas is heated at constant volume from an initial pressure of 106 kPa to a final pressure of 212 kPa. In process 2 the gas expands at constant pressure from an initial volume of 1.00 m 3 to a final volume of 3.00 m 3 . (a) How much heat is added to the gas during these two processes? (b) How much work does the gas do during this expansion? (c) What is the change in the internal energy of the gas?
Consider the expansion of 60.0 moles of a monatomic ideal gas along processes 1 and 2 in Figure 18-31. In process 1 the gas is heated at constant volume from an initial pressure of 106 kPa to a final pressure of 212 kPa. In process 2 the gas expands at constant pressure from an initial volume of 1.00 m3 to a final volume of 3.00 m3. (a) How much heat is added to the gas during these two processes? (b) How much work does the gas do during this expansion? (c) What is the change in the internal energy of the gas?
A rod 12.0 cm long is uniformly charged and has a total charge of -20.0 μc. Determine the magnitude and direction of the electric field along the axis of the rod at a point
32.0 cm from its center.
361000
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magnitude
What is the general expression for the electric field along the axis of a uniform rod? N/C
direction toward the rod
A certain brand of freezer is advertised to use 730 kW h of energy per year.
Part A
Assuming the freezer operates for 5 hours each day, how much power does it require while operating?
Express your answer in watts.
ΜΕ ΑΣΦ
?
P
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Part B
W
If the freezer keeps its interior at a temperature of -6.0° C in a 20.0° C room, what is its theoretical maximum
performance coefficient?
Enter your answer numerically.
K =
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Part C
What is the theoretical maximum amount of ice this freezer could make in an hour, starting with water at 20.0°C?
Express your answer in kilograms.
m =
Ο ΑΣΦ
kg
Describe the development of rational choice theory in sociology.
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