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Problem 868 | Deflection by Three-Moment Equation

Problem 868
Determine the values of EIδ at midspan and at the ends of the beam loaded as shown in Figure P-868.
 

868-simple-overhanging-beam-triangular-load.gif

 

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Problem 867 | Deflection by Three-Moment Equation

Problem 867
For the beam in Figure P-867, compute the value of P that will cause a zero deflection under P.
 

867-simple-beam-varying-load-overhang.gif

 

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Problem 866 | Deflection by Three-Moment Equation

Problem 866
Determine the midspan value of EIδ for the beam shown in Fig. P-866.
 

866-simple-beam-moment-triangular.gif

 

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Problem 865 | Deflection by Three-Moment Equation

Problem 865
For the beam shown in Fig. P-865, compute the value of EIδ at x = 6 ft and at the end of the overhang.
 

865-simple-beam-overhang.gif

 

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Problem 454 - System of Booms and Pulleys

Problem 454
Determine the horizontal and vertical components of the hinge force at A for the structure shown in Figure P-454. Neglect the weights of the members and of the pulleys.
 

454-system-of-booms-with-pulleys.png

 

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Problem 453 - Analysis of A-frame with Weightless Cylinder

Problem 453
For the frame shown in Figure P-453, determine the resultant hinge forces at B, C, and E.
 

453-a-frame-with-cylinder.gif

 

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Problem 452 - Weight Supported by a Cable Which Runs Over a Frictionless Pulley

Problem 452
For the frame shown in Figure P-452, determine the horizontal and vertical components of the hinge force at B as it acts upon member AC.
 

452-frame-with-pulley.gif

 

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Problem 451 - Components of Hinge Forces of a Frame

Problem 451
The frame shown in Figure P-451 is hinged at E and roller supported at A. Determine the horizontal and vertical components of the hinge forces at B, C, and D. Neglect the weights of the members.
 

451-frame-structure.gif

 

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Problem 450 - Reactions at Hinge Support of the Frame Holding

Problem 450
The billboard BC weighing 1000 lb is subjected to a wind pressure of 300 lb/ft as shown in Figure P-450. Neglecting the weights of the support-members, determine the component of the hinge forces at A and F.
 

450-billboard.gif

 

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Problem 449 - Reactions at the Supports of a Bridge

Problem 449
The bridge shown in Figure P-449 consists of two end sections, each weighing 20 tons with center of gravity at G, hinged to a uniform center span weighing 12 tons. Compute the reactions at A, B, E, and F.
 

449-massive-bridge.gif

 

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