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hi i study in university in greece...i need your help until tomorrow for a mechanical draw.. <br/>I must draw the front view and right view and the down-view. <br/>The draw is below.. can you send me a draw how it will be like?i know count the cm etc.. i dont know how to do the views...how they must be like :/ <br/>If you could help i appreciate it Thanks..
The external heat transfer coefficient is h=10 W/m^2*K. What is the rate of heat loss to the ambient?
a particle of mass m is at rest at the origin of a coordinate system.nbsp at t 0 a force of the form f bt2e-lambdat
make a form tool for lathe for making a convex groove of 3 mm radius. tool material will be tungsten carbide. know the
A horizontal cantilever of length L supports a load W, uniformly distributed along its length. the cantilever is proped to the level of the fixed end at a distance 3/4 L from that end. Determine the load on the prop.
you are given a task of compressing a fixed quantity of gas from P1,T1 to P2,T1. you wish to do this using a polytropic process coupled with a constant pressure P2 heat-transfer process. determine the polytropic process that minimizes the entropy ..
A 0.4 W cylindrical electronic component with a diameter of 0.3 cm and length 1.8 cm is mounted horizontally on a circuit board. To cool the component air is flowing across the board at a velocity of 150 m/min. If the air temperature is T∞= 45°C, ..
find the transfer function for the following impulse responsefind the transfer function for the following impulse
carbon dioxide co2 modelled as an ideal gas flows through the compressor and heat exchangernbspshown in figure. the
Two slender rods of negligible weight are pin-connected at A and attached to the 18-lb block B and the 80-lb block C. The coefficient of static friction is 0.55 between all surfaces of contact. Determine the range of values of P for which equilibr..
Also find out a compression ratio and inlet pressure to give maximum imep. engineering fundamentals of internal combustion enignes - pulkrabek.
Assuming that the air is 80°F and 1 atm and blows across the wall as on a flat plate, estimate the average temperature the wall will attain for equilibrium conditions.
At the exit, the pressure is 113 kPa and the temperature is 69 degrees C. Determine the mass flow rate, the exit velocity and the area of the exit.
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