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In particle physics, a particle with mass, m, is always in a motion state within a predefined dimension, a. This means that the particle is always in a motion state even if it is in a kinetically static condition. The state 1 (minimum) energy level can be described as:
E1 = (Π2h-2)/2ma2,
where h- is the plank coefficient.
(a) Calculate the first order of magnitude of the energy levels in atoms and in nuclei using this concept. Use 10-10 m for the dimension of the atom and 10-15 m for the dimension of the nucleus.
(b) Compared to a free particle, what is the relationship in their energy transfer mechanism?
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Hydraulic Lift II The piston of a hydraulic automobile lift is 0.30 m in diameter. What gauge pressure, in Pascal's, is required to lift a car with a mass of 1200 kg? Also express this pressure in atmospheres.
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A vertical load P is applied at end B of rod BC. The constant of the spring is k, and the spring is unstretched when θ = 90o. (a) Neglecting the weight of the rod, express the angle θ corresponding to equilibrium in terms of P, k, and l.
The jet engine in Fig admits air at 20°C and 1 atm at (1), where A1 = 0.5 m2 and V1 = 250 m/s. The fuel-air ratio is 1:30. The air leaves section (2) at 1 atm, V2 = 900 m/s, and A2 = 0.4 m2. Compute the test stand support reaction Rx needed.
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Your diagrams have to be detailed and well explained. The case study is open ended, so you will have to make assumptions and consistently use them throughout the entire paper.
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