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A 2.64 kg copper part, initially at 400 K, is plunged into a tank containing 4 kg of liquid water, initially at 300 K. The copper part and water can be modeled as incompressible with specific heats of 0.385 kJ/kg. K and 4.2 kJ/kg. K, respectively. For the copper part and water as the system, determine
(a) the final equilibrium temperature (K), and
(b) the amount of entropy produced within the tank, in kJ/K.
Ignore heat transfer between the system and its surroundings.
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The bracket plate is 25 mm thick. All rivets are to be of the same size. Load on the bracket, P = 50 kN ; rivet spacing, C = 100 mm; load arm, e = 400 mm. Permissible shear stress is 65 MPa and crushing stress is 120 MPa. Determine the size of the ri..
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