A stiff, square, thick rubber plate (m = 502 g) sits on the round mouth of a jar, completely covering the opening. The sides of the rubber plate are each 11.0 cm long and the mouth of the jar has a radius of 4.00 cm. The pressure outside the jar is 1.00 atm while the pressure inside the jar is 0.300 atm (1.000 atm 1.013 × 105 Pa). Draw a diagram of this scenario. = If the jar is held in place, what force F must you exert on the rubber plate to pull it straight off of the jar?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A stiff, square, thick rubber plate (m = 502 g) sits on the round mouth of a jar, completely
covering the opening. The sides of the rubber plate are each 11.0 cm long and the mouth of the
jar has a radius of 4.00 cm. The pressure outside the jar is 1.00 atm while the pressure inside
the jar is 0.300 atm (1.000 atm 1.013 × 105 Pa).
Draw a diagram of this scenario.
=
If the jar is held in place, what force F must you exert on the rubber plate to pull it
straight off of the jar?
Transcribed Image Text:A stiff, square, thick rubber plate (m = 502 g) sits on the round mouth of a jar, completely covering the opening. The sides of the rubber plate are each 11.0 cm long and the mouth of the jar has a radius of 4.00 cm. The pressure outside the jar is 1.00 atm while the pressure inside the jar is 0.300 atm (1.000 atm 1.013 × 105 Pa). Draw a diagram of this scenario. = If the jar is held in place, what force F must you exert on the rubber plate to pull it straight off of the jar?
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