A 4−ton air conditioner removes 5.60 × 10 7 J (48,000 British thermal units) from a cold environment in 1.00 h. (a) What energy input in joules is necessary to do this if the air conditioner has an energy efficiency rating (EER) of 12.0? (b) What is the cost of doing this if the work costs 10.0 cents per 3.60 × 10 6 J (one kilowatt—hour)? (c) Discuss whether this cost seems realistic. Note that the energy efficiency rating (EER) of an air conditioner or refrigerator is defined to be the number of British thermal units of heat transfer from a cold environment per hour divided by the watts of power input.
A 4−ton air conditioner removes 5.60 × 10 7 J (48,000 British thermal units) from a cold environment in 1.00 h. (a) What energy input in joules is necessary to do this if the air conditioner has an energy efficiency rating (EER) of 12.0? (b) What is the cost of doing this if the work costs 10.0 cents per 3.60 × 10 6 J (one kilowatt—hour)? (c) Discuss whether this cost seems realistic. Note that the energy efficiency rating (EER) of an air conditioner or refrigerator is defined to be the number of British thermal units of heat transfer from a cold environment per hour divided by the watts of power input.
A 4−ton air conditioner removes
5.60
×
10
7
J
(48,000 British thermal units) from a cold environment in 1.00 h. (a) What energy input in joules is necessary to do this if the air conditioner has an energy efficiency rating (EER) of 12.0? (b) What is the cost of doing this if the work costs 10.0 cents per
3.60
×
10
6
J
(one kilowatt—hour)? (c) Discuss whether this cost seems realistic. Note that the energy efficiency rating (EER) of an air conditioner or refrigerator is defined to be the number of British thermal units of heat transfer from a cold environment per hour divided by the watts of power input.
In a certain bimetallic strip, the brass strip is 0.100% longer than the steel strip at a temperature of 283°C. At what temperature do the two strips have the same length? Coefficients of linear expansion for steel α = 12.0 × 10−6 K−1 and for brass α = 19.0 × 10−6 K−1 (see Table 13.2).
Review Conceptual Example 2 before attempting this problem. Two slits are 0.158 mm apart. A
mixture of red light (wavelength = 693 nm) and yellow-green light (wavelength = 567 nm) falls on the
slits. A flat observation screen is located 2.42 m away. What is the distance on the screen between
the third-order red fringe and the third-order yellow-green fringe?
m = 3
m = 3
m = 0
m = 3
m = 3
Fringes on observation screen
A film of oil lies on wet pavement. The refractive index of the oil exceeds that of the water. The film
has the minimum nonzero thickness such that it appears dark due to destructive interference when
viewed in visible light with wavelength 643 nm in vacuum. Assuming that the visible spectrum
extends from 380 to 750 nm, what is the longest visible wavelength (in vacuum) for which the film
will appear bright due to constructive interference?
Number
Units
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