Engineering, 16.10.2019 05:30, brittinyvenegas
Q-3: n vehicles occupy squares (1, 1) through (n, 1) (i. e., the bottom row) of an n x n grid. the vehicles must be moved to the top row but in reverse order; so the vehicle i that starts in (i, 1) must end up in (n – i + 1, n). on each time step, every one of the n vehicles can move one square up, down, left, or right, or stay put; but if a vehicle stays put. one other adjacent vehicle (but not more than one) can hop over it. two vehicles cannot occupy the same square. calculate the size of state space as function of n.
Answers: 3
Engineering, 04.07.2019 18:20, aly95
An engine runs on the ideal diesel cycle. the cycle has a compression ratio of 20 and a cutoff ratio of 2. the highest temperature in the cycle is 1200 k. if the heat into the system is 300 kj/kg of working fluid and using variable specific heats determine the work produced per mass of working fluid
Answers: 3
Engineering, 04.07.2019 18:20, Doogsterr
For each of the following process: a) sketch the p-v diagram, b)sketch t-s diagram, c) sketch t-v diagram, d) sketch the boundary work on one of the diagrams (a, b or c) and e) sketch the reversible heat transfer on one of the diagrams (a, b or c): 1- isobaric process from compressed liquid to superheated vapor 2- isothermal process from compressed liquid to superheated vapor 3- isentropic process from compressed liquid to superheated vapor
Answers: 3
Engineering, 04.07.2019 18:20, sanchez626
Aheavily insulated piston-cylinder device contains 0.02 m3 of steam at 300 kpa and 200 °c. 1.2 mpa. d this process. team is now compressed in a reversible manner to a pressure of etermine the entropy change and the work done on the steam during this process
Answers: 1
Q-3: n vehicles occupy squares (1, 1) through (n, 1) (i. e., the bottom row) of an n x n grid. the...
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