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the boat is to be pulled onto shore using two ropes. If the resultant force is to be 1000 N, directed along the keel aa as shown , determine the magnitude of forces T, P acting in each rope at the angle teta of P so that the magnitude of P is minimum. T act at 25 degree from the keel.
Get information about a car engine .drive the ideal performance using the appropriate cycle and compare to the actual performance.
Use calculus to obtain a closed-form solution for the case where the parachutist jumper is initially at rest (v=0 at t=0) to solve F(upward)= -cv^2, where c = a second-order drag coefficient (kg/m).
the motion of a particle is defined by the position vector r=a(cos t + t sin t)i + A(sin t-t cos t)j, where t is expressed in seconds. Determine the values of t for which the position vector and acceleration are.
No heat interactions with the environment are allowed. You do not need to describe the details of the process that produces the maximum work, but you do need to describe the final state of the blocks fully.
What is the difference between mixed and unmixed flow in heat exchangers?
how can this goal be achieved? are there alternative solutions which might also be effective?
Describe the kutta condition.
Applied Loads, Young's modulus, Poisson's ratio, The Young's modulus and the Poisson's ratio for copper are 124.8 GPa and 0.36 respectively. When a tensile load is applie to a 1.5cm diameter copper rod
A steel tape is used to measure a distance of 20 m at a 10 0C. Assuming that the tape will measure the true distance when the temperature is 20 0C. What would be the indicated distance at 10 0C? What would be the indicated distance at 400C?
260-pound weight is supported by two ropes, one forming a 40 degree angle with the ceiling and the other a 50 degree. Find the tension in each rope.
what is the use of dimentionsless numbers, and why the temperature is max on gas turbine blade tip.
Kinetics of Particles : Newton's Second Law, Determine the maximum theoretical speed that may be achieved over a distance of 50 m by a car starting from rest
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