Two polymer bars are connected to a rigid plate at B, as shown. Bar (1) has a cross-sectional area of 1.78 in.2 and an elastic modulus of 2400 ksi. Bar (2) has a cross-sectional area of 0.861 in.2 and an elastic modulus of 4280 ksi. Assume L1=15 in., L2=38 in., Q=6 kips, P=2.3 kips, and R=10.6 kips. Determine the horizontal deflection of end C relative to end A. (1) (2) B P L1 L2 Answer: uC/A = in.
Two polymer bars are connected to a rigid plate at B, as shown. Bar (1) has a cross-sectional area of 1.78 in.2 and an elastic modulus of 2400 ksi. Bar (2) has a cross-sectional area of 0.861 in.2 and an elastic modulus of 4280 ksi. Assume L1=15 in., L2=38 in., Q=6 kips, P=2.3 kips, and R=10.6 kips. Determine the horizontal deflection of end C relative to end A. (1) (2) B P L1 L2 Answer: uC/A = in.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:Two polymer bars are connected to a rigid plate at B, as shown. Bar (1) has a cross-sectional area of 1.78 in.2 and an elastic modulus
of 2400 ksi. Bar (2) has a cross-sectional area of 0.861 in.? and an elastic modulus of 4280 ksi. ASsume L1=15 in., L2=38 in., Q=6 kips,
P=2.3 kips, and R=10.6 kips. Determine the horizontal deflection of end C relative to end A.
(1)
(2)
B
P
L2
Answer: uC/A =
in.
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