Remove the distributed load w= 10.0 kN/m and determine the deflection of the beam at B due to the concentrated load P.A positive deflection is up and a negative deflection is down. Answer: VB =(i mm/kN) P. %3D
Remove the distributed load w= 10.0 kN/m and determine the deflection of the beam at B due to the concentrated load P.A positive deflection is up and a negative deflection is down. Answer: VB =(i mm/kN) P. %3D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![For the beams and loadings shown below, assume that El = 4.0 x 104 kN-m2 is constant for the beam. Determine the
%3!
concentrated upward force Prequired to make the total beam deflection at Bequal to zero (i.e., v8 - 0).
Assume L= 10.0 m, w = 10.0 kN/m.
B
Remove the concentrated load P and determine the deflection of the beam at B due to the distributed load w- 10.0 kN/m using
the deflection equations in Appendix C. A positive deflection is up, a negative deflection is down.
Answer: Ve
mm.
eTextbook and Media](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d567cd7-bdf3-4304-b72d-785a829bb114%2F8f6c1596-b311-4603-aac2-7b8db95b163d%2Ff0umdp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the beams and loadings shown below, assume that El = 4.0 x 104 kN-m2 is constant for the beam. Determine the
%3!
concentrated upward force Prequired to make the total beam deflection at Bequal to zero (i.e., v8 - 0).
Assume L= 10.0 m, w = 10.0 kN/m.
B
Remove the concentrated load P and determine the deflection of the beam at B due to the distributed load w- 10.0 kN/m using
the deflection equations in Appendix C. A positive deflection is up, a negative deflection is down.
Answer: Ve
mm.
eTextbook and Media
![Remove the distributed load w = 10.0 kN/m and determine the deflection of the beam at B due to the concentrated load P.A
positive deflection is up and a negative deflection is down.
Answer: VB = (
mm/kN) P.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d567cd7-bdf3-4304-b72d-785a829bb114%2F8f6c1596-b311-4603-aac2-7b8db95b163d%2F7quo9y_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Remove the distributed load w = 10.0 kN/m and determine the deflection of the beam at B due to the concentrated load P.A
positive deflection is up and a negative deflection is down.
Answer: VB = (
mm/kN) P.
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