H.W Two identical 10-kg spheres are attached to the light rigid rod, which rotates in the horizontal plane centered at pin O. If the spheres are subjected to tangential forces of P 10N, and the rod is subjected to a couple moment M (8r) N m, where t is in seconds, determine the speed of the spheres at the instant r 4 s. The system starts from rest. Neglect the size of the spheres. P= 10N -05m- 0.5 m- M = (80) N-m P- 10 N v - 10.4 m/s Ans.
H.W Two identical 10-kg spheres are attached to the light rigid rod, which rotates in the horizontal plane centered at pin O. If the spheres are subjected to tangential forces of P 10N, and the rod is subjected to a couple moment M (8r) N m, where t is in seconds, determine the speed of the spheres at the instant r 4 s. The system starts from rest. Neglect the size of the spheres. P= 10N -05m- 0.5 m- M = (80) N-m P- 10 N v - 10.4 m/s Ans.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![H.W
Two identical 10-kg spheres are attached to the
light rigid rod, which rotates in the horizontal plane
centered at pin O. If the spheres are subjected to tangential
forces of P 10N, and the rod is subjected to a couple
moment M (81) N m, where t is in seconds, determine
the speed of the spheres at the instant t = 4s. The system
starts from rest. Neglect the size of the spheres.
P = 10 N
05 m-
-0.5m-
M (80) N-m
P = 10 N
v = 10.4 m/s Ans.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F65fa1b61-2224-44aa-a335-ca3595553ef1%2F8b9cfd23-3190-4330-b1ed-c4f11c47bd0d%2Fi4j48yr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:H.W
Two identical 10-kg spheres are attached to the
light rigid rod, which rotates in the horizontal plane
centered at pin O. If the spheres are subjected to tangential
forces of P 10N, and the rod is subjected to a couple
moment M (81) N m, where t is in seconds, determine
the speed of the spheres at the instant t = 4s. The system
starts from rest. Neglect the size of the spheres.
P = 10 N
05 m-
-0.5m-
M (80) N-m
P = 10 N
v = 10.4 m/s Ans.
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