A triangular distributed load of max intensity w =530 N/m acts on beam ✓. The beam is supported by a pin at A and member D, which is connected by pins at C and D respectively. Determine the reaction forces at A and C. Enter your answers in Cartesian components. Assume the masses of both beam ✓ and member ✓ are negligible. A BY NC SA 2016 Eric Davishahl C D -a- B Ур -b- W Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 7.2 m b 12.96 m C 4.68 m The reaction at A is A: = The reaction at C is C ĴN. i+ i+ ĴN.

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A triangular distributed load of max intensity w =530 N/m
acts on beam ✓. The beam is supported by a pin at A and
member D, which is connected by pins at C and D
respectively. Determine the reaction forces at A and C.
Enter your answers in Cartesian components. Assume the
masses of both beam ✓ and member ✓ are negligible.
A
BY NC SA
2016 Eric Davishahl
C
D
-a-
B
Ур
-b-
W
Values for dimensions on the figure are given in the following
table. Note the figure may not be to scale.
Variable Value
a
7.2 m
b
12.96 m
C
4.68 m
The reaction at A is A:
=
The reaction at C is C
ĴN.
i+
i+
ĴN.
Transcribed Image Text:A triangular distributed load of max intensity w =530 N/m acts on beam ✓. The beam is supported by a pin at A and member D, which is connected by pins at C and D respectively. Determine the reaction forces at A and C. Enter your answers in Cartesian components. Assume the masses of both beam ✓ and member ✓ are negligible. A BY NC SA 2016 Eric Davishahl C D -a- B Ур -b- W Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 7.2 m b 12.96 m C 4.68 m The reaction at A is A: = The reaction at C is C ĴN. i+ i+ ĴN.
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