he beam is subjected to a point load and a distribution load as shown in Figure 2-1 below, and the right end is a build-in support. (1ft=12inch, ksi=kilo lb/in2) (a) Find the reaction in build-in support C. (b) Draw a Shear Force Diagram in the beam BC interval. (c) Draw a Moment Diagram in the beam BC interval. (d) Find the maximum shear stress mmax in the beam BC interval. (e) Find the maximum tensile flexural stress mmax, T and maximum compressive flexural stress mmax, C in the beam BC interval, respectively.
he beam is subjected to a point load and a distribution load as shown in Figure 2-1 below, and the right end is a build-in support. (1ft=12inch, ksi=kilo lb/in2) (a) Find the reaction in build-in support C. (b) Draw a Shear Force Diagram in the beam BC interval. (c) Draw a Moment Diagram in the beam BC interval. (d) Find the maximum shear stress mmax in the beam BC interval. (e) Find the maximum tensile flexural stress mmax, T and maximum compressive flexural stress mmax, C in the beam BC interval, respectively.
Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter1: Heat, Temperature, And Pressure
Section: Chapter Questions
Problem 17RQ: Convert 22C to Fahrenheit.
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The beam is subjected to a point load and a distribution load as shown in Figure 2-1 below, and the right end is a build-in support. (1ft=12inch, ksi=kilo lb/in2)
(a) Find the reaction in build-in support C.
(b) Draw a Shear Force Diagram in the beam BC interval.
(c) Draw a Moment Diagram in the beam BC interval.
(d) Find the maximum shear stress mmax in the beam BC interval.
(e) Find the maximum tensile flexural stress mmax, T and maximum compressive flexural stress mmax, C in the beam BC interval, respectively.
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