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48. A
purpose is to extract heat from a cold reservoir. The same engine
running backward is called a heat pump if its purpose is to ex-
haust warm air into the hot reservoir. Heat pumps are widely used
for home heating. You can think of a heat pump as a refrigera-
tor that is cooling the already cold outdoors and, with its exhaust
heat QH, warming the indoors. Perhaps this seems a little silly, but
consider the following. Electricity can be directly used to heat a
home by passing an
is a direct, 100% conversion of work to heat. That is, 15 kW of
electric power (generated by doing work at the rate of 15 kJ/s at
the power plant) produces heat energy inside the home at a rate of
15 kJ/s. Suppose that the neighbor's home has a heat pump with
a coefficient of performance of 5.0, a realistic value. Note that
"what you get" with a heat pump is heat delivered, QH, so a heat
pump's coefficient of performance is defined as K = QH/ Win.
a. How much electric power (in kW) does the heat pump use to
deliver 15 kJ/s of heat energy to the house?
b. An average price for electricity is about 40 MJ per dollar. A
furnace or heat pump will run typically 250 hours per month
during the winter. What does one month's heating cost in the
home with a 15 kW electric heater and in the home of the
neighbor who uses a heat pump?
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Chapter 21 Solutions
Student Workbook for Physics for Scientists and Engineers: A Strategic Approach, Vol 1. (Chs 1-21)
- Help me make a visualize experimental setup using a word document. For the theory below.arrow_forwardHow to solve this, given answerarrow_forwardThree point-like charges are placed at the corners of a square as shown in the figure, 28.0 cm on each side. Find the minimum amount of work required by an external force to move the charge q1 to infinity. Let q1=-2.10 μC, q2=+2.40 μС, q3=+3.60 μC.arrow_forward
- A point charge of -4.00 nC is at the origin, and a second point charge of 6.00 nC is on the x axis at x= 0.820 mm . Find the magnitude and direction of the electric field at each of the following points on the x axis. x2 = 19.0 cmarrow_forwardFour point-like charges are placed as shown in the figure, three of them are at the corners and one at the center of a square, 36.0 cm on each side. What is the electric potential at the empty corner? Let q1=q3=+26.0 µС, q2=-28.0 μC, and q4=-48.0μc Varrow_forwardPLS HELparrow_forward
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