How to determine spring tension

    • [DOC File]Widener University

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      Determine, using energy methods: a) the height h from which it was dropped. b) the kinetic energy K upon striking the ground. c) the speed v with which it strikes the ground. Exercise #2 . A spring which is compressed by 7.5 cm from its relaxed position stores 25 J of elastic potential energy. Calculate the spring constant k of this spring.

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    • [DOC File]Set #1 - CCSF

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      Knowing that the constant of the spring is 800 N/m, determine. a) the value of W, b) the unstretched length of the spring. Answer: W=62.8N. Lo = 758 mm 3. A 280-kg crate is supported by several rope-and-pulley arrangements as shown. Determine for each arrangement the tension in the rope.

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    • [DOC File]FORCES

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      Everyone must wear goggles anytime you are in the vicinity of stretched springs. Two group members will grasp the loops at the ends of the tightly coiled spring using the wooden rods to get a firm grip. Use the force scales to determine how the tension depends on the length of the spring. Do not. stretch the tightly coiled spring past 10 meters.

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    • [DOC File]Wright State University ME 499, Spring 1997

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      For β = 30º, determine the tension in the cable and the reactions at A and B. Assume that the bearing at B does not exert any axial thrust. (d) The bent rod ABDE is supported by ball-and-socket joints at A and E and by the cable DF. If a 60-lb load is applied at C as shown, determine the tension in the cable.

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    • [DOC File]MECHANICS OF MATERIALS REVIEW - Missouri S&T

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      PAB = F1 (Tension) PBC = F1 – F2 (Tension) PCD = F1 – F2 + F3 (Tension) Deformation. δAD = δAB + δBC + δCD = + + Since the P’s were assumed in tension, negative values will indicate compression and contraction for the deformation rather than elongation. Thermal Deformation

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    • [DOC File]PROBLEMS

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      Suppose that F = 68.0 N, m1 = 12.0 kg, m2 = 18.0 kg, and the coefficient of kinetic friction between each block and the surface is 0.100. (a) Draw a free-body diagram for each block. (b) Determine the tension T and the magnitude of the acceleration of the system. Figure P5.45. 46.

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    • [DOC File]Quick Guidelines for Determining Belt Tension on …

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      Determine the required value of the static strand tension per belt, Ts (lbf) by one of the three methods shown on pages 2, 3 or 4. If desired, an Excel spreadsheet has been created so that estimated values of belt tension can be obtained for the page 2 and 4 methods.

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    • [DOC File]Loudoun County Public Schools

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      b. The spring compression is a maximum when the blocks have the same velocity. Briefly explain why this is so. c. Determine the maximum compression of the spring during the collision. d. Determine the velocity of block II after the collision when block I has again separated from the spring. 1991M1.

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    • [DOC File]CE- 217 SPRING 1999

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      Determine the greatest uniform load w that can be applied to the beam without causing AB and CB to buckle. For a circular cross-section of radius R, . Problem 3. The state of stress at a point is shown on the element. (a) Draw Mohr’s circle. (b) USING Mohr’s circle determine the principal stresses and specify the orientation of the element.

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    • [DOC File]Honors/CP Physics

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      When this spring-and-blocks system is in equilibrium, the length of the spring is 0.25 m and the 4.0 kg block is 0.70 m above the floor. a. Draw free-body diagrams showing and labeling the forces on each block when the system is in equilibrium. 8 kg 4 kg b. Calculate the tension in the string.

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