1. From figure 1.1. Determine the distance 'a' as a fraction of the beam's length 'L' for locating the roller support at C so that the internal moment at B is zero.
1. From figure 1.1. Determine the distance 'a' as a fraction of the beam's length 'L' for locating the roller support at C so that the internal moment at B is zero.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![ЗР
L/6
1. From figure 1.1. Determine
10
the distance 'a' as a fraction
of the beam's length 'L' for
locating the roller support at
C so that the internal moment
at B is zero. *
2. A particle is subjected to
vector forces A = (2lb)i +
(-6lb)j + (10lb)k and B = (-6lb)i
%3D
+ (-2lb)j + (2lb)k. What will be
the resultant force? *](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F88037942-a1d6-4569-9a26-1b8d12e66193%2F0ce9a2c2-d19b-487d-9bc0-4e917d1c7dbe%2F837xim8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:ЗР
L/6
1. From figure 1.1. Determine
10
the distance 'a' as a fraction
of the beam's length 'L' for
locating the roller support at
C so that the internal moment
at B is zero. *
2. A particle is subjected to
vector forces A = (2lb)i +
(-6lb)j + (10lb)k and B = (-6lb)i
%3D
+ (-2lb)j + (2lb)k. What will be
the resultant force? *
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