The particle is moving from initial position A inside the tube in a vertical plane. Determine the velocity of the particle at positions B and C, and pressure force of the particle on the tube's wall at the position C. Ignore the friction force at curvilinear sections of the tube. In problems 5.3, 5.6, 5.7, 5.10, 5.13, 5.15, 5.17, 5.19, 5.25, 5.28 and 5.29 the particle travels ho distance before separates from the spring. Nomenclature m-mass of particle; VA-initial velocity of particle; t-time the particle travels on AB (problems 5.1, 5.2, 5.5, 5.8, 5.14, 5.18, 5.20, 5.21, 5.23, 5.24, 5.27, 5.30) or on BD (problems 5.3, 5.4, 5.6, 5.7, 5.9-5.13, 5.15-5.17, 5.19, 5.22, 5.25, 5.26.5.28. 5.29); f- friction coefficient; ho - initial deformation of the spring: h-maximum compression of the spring; C-spring coefficient; H- maximum height the particle can move; s- distance traveled by particle before it stops.
No. m VA τ R ho kg m/s s 11 f a B с Additional degrees degrees cm N/cm parameters to be determined
27 0.8 3 0.2 0.4 0.15 45 VD
A VA B a 2R a " D
The particle is moving from initial position A inside the tube in a vertical plane. Determine the velocity of the partic
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The particle is moving from initial position A inside the tube in a vertical plane. Determine the velocity of the partic
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