Refer to the figure and statement of Prob. 2/29. When pin P is in the position...
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Refer to the figure and statement of Prob. 2/29. When pin P is in the position 0 = 20°, determine the n- and t-components of the force F which the spring of modulus k = 1.4 kN/m exerts on the pin. The dis- %3D tance r = 400 mm. The unstretched length of the spring is r. When pin Pis in an arbitrary position 0, determine the x- and y-components of the force which the spring exerts on the pin. Evaluate your general expressions for r = 400 mm, k = 1.4 kN/m, and 0 = 40°. (Note: The force in a spring is given by F = kô, where 8 is the extension from the unstretched length.) A L--x 2r Problem 2/29 Refer to the figure and statement of Prob. 2/29. When pin P is in the position 0 = 20°, determine the n- and t-components of the force F which the spring of modulus k = 1.4 kN/m exerts on the pin. The dis- %3D tance r = 400 mm. The unstretched length of the spring is r. When pin Pis in an arbitrary position 0, determine the x- and y-components of the force which the spring exerts on the pin. Evaluate your general expressions for r = 400 mm, k = 1.4 kN/m, and 0 = 40°. (Note: The force in a spring is given by F = kô, where 8 is the extension from the unstretched length.) A L--x 2r Problem 2/29
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University Physics With Modern Physics
ISBN: 978-0073513881
2nd edition
Authors: Wolfgang Bauer, Gary Westfall
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