A car tire has a gauge pressure of 216,020 Pa, volume of 8 L, and temperature of 6°C. After several hours of driving, the temperature of the air increases by 16C° and 11% of the gas leaks out due to a nail stuck in the tread. Calculate the gauge pressure of the tire in psi at this time if the ambient atmospheric pressure is 1.00 x 105 Pa. Neglect any volume change of the tire. (1000 L = 1 m³; 1 psi = 6895 Pa) (Be careful with units!)
A car tire has a gauge pressure of 216,020 Pa, volume of 8 L, and temperature of 6°C. After several hours of driving, the temperature of the air increases by 16C° and 11% of the gas leaks out due to a nail stuck in the tread. Calculate the gauge pressure of the tire in psi at this time if the ambient atmospheric pressure is 1.00 x 105 Pa. Neglect any volume change of the tire. (1000 L = 1 m³; 1 psi = 6895 Pa) (Be careful with units!)
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A car tire has a gauge pressure of 216,020 Pa, volume of 8 L, and temperature of 6°C.
After several hours of driving, the temperature of the air increases by 16℃° and 11%
of the gas leaks out due to a nail stuck in the tread. Calculate the gauge pressure of
the tire in psi at this time if the ambient atmospheric pressure is 1.00 x 105 Pa.
Neglect any volume change of the tire. (1000 L = 1 m³; 1 psi = 6895 Pa) (Be careful
with units!)
Pgauge
32.97
psi
28.6276 margin of error +/- 1%"
Transcribed Image Text:You Answered
Correct Answer
A car tire has a gauge pressure of 216,020 Pa, volume of 8 L, and temperature of 6°C.
After several hours of driving, the temperature of the air increases by 16℃° and 11%
of the gas leaks out due to a nail stuck in the tread. Calculate the gauge pressure of
the tire in psi at this time if the ambient atmospheric pressure is 1.00 x 105 Pa.
Neglect any volume change of the tire. (1000 L = 1 m³; 1 psi = 6895 Pa) (Be careful
with units!)
Pgauge
32.97
psi
28.6276 margin of error +/- 1%
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