At constant temperature, how can you express the rate of change of the pressure in an ideal gas law, while lumping the product of the number of moles and universal gas-law constant R to k? dP kdT А. dt Vdt P dV V dt PdV dP С. dt Vdt dP kdT dP D. dt dt Vdt B.

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Chapter8: Properties Of Gases
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3. At constant temperature, how can you express the rate of change of the pressure in an ideal gas law, while
lumping the product of the number of moles and universal gas-law constant R to k?
dP
А.
dt
kdT PdV
dP
С.
dt
P dV
Vdt Vdt
V dt
kdT
dP
В.
dt
dP
D.
= 0
Vdt
dt
Transcribed Image Text:3. At constant temperature, how can you express the rate of change of the pressure in an ideal gas law, while lumping the product of the number of moles and universal gas-law constant R to k? dP А. dt kdT PdV dP С. dt P dV Vdt Vdt V dt kdT dP В. dt dP D. = 0 Vdt dt
4. A conical cistern of height 5 ft. and 7 ft. across the top is being filled at a rate of 5 ft/s while it was leaking
by 1% of the rate it is being filled. At what rate (in/s) is the radius changing when the height is 3.6 ft?
A. 2.1600
B. 2.0844
C. -0.2481
D. 0.1107
E. None of these.
Transcribed Image Text:4. A conical cistern of height 5 ft. and 7 ft. across the top is being filled at a rate of 5 ft/s while it was leaking by 1% of the rate it is being filled. At what rate (in/s) is the radius changing when the height is 3.6 ft? A. 2.1600 B. 2.0844 C. -0.2481 D. 0.1107 E. None of these.
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