Find the final temperature in the canister
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An ideal gas Carnot cycle with air in a piston cylinder has a high temperature of 1200 K and a heat rejection at 400 K. During the heat addition the volume triples. Find the two specific heat transfers (q) in the cycle and the overall cycle effic
A pipe of length 0.80m is opened at both ends. If the fundamental frequency of this pipe is 340 Hz. What would be its fundamental frequency if it is closed at one end? Assume the pipe to have the same speed on both cases. Show Work Please.
Write a computer program that plots the contour lines of (sigma(1), sigma(2)) on a 2d rectangular beam. Sigma represents the shear stress.
Two air flows are combined to a single flow. Flow one is 1 m3/s at 293 K and the other is 2 m3/s at 473K both at 1 bar. They mix without any heat transfer to produce an exit flow same as the flow one.
An initially empty canister of volume 0.2 m3 is filled with CO2 from a line at 800 kPa, 400 K. Assume the process runs until it stops by itself and it is adiabatic. Use constant heat capacity to find the final temperature in the canister.
A hollow, conducting sphere inner radius ra= 18cm and outer radius rb=24cm has a charge of -3.7n C is placed on the conducter. At the center of the sphere and insulated from the sphere is a point charge Q= +6.3nC A) Determine the electric Field v
The wall system is 6m wide by 2.8m high. What is the rate of heat transfer through the wall and temperature drops accross each layer, and surface-ambient air?
A garden hoses with an inside diameter of 5/8 inch is supplying water at a rate of 3 gallons per minute (1 ft3 = 7.481 gal). What is the Reynolds number of the flow? This is all the information given.
Would each process require the same amount of work? If not, which would require more work and why? Would each process require the same amount of force?
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