21-46. The assembly is supported by journal bearings at A and B, which develop only y and z force reactions on the shaft. Ifthe shaftis rotating in the direction shownato = {2i} rad/s, determine the reactions at the bearings when the assembly is in the position shown. Also, what is the shaft's angular acceleration? The mass per unit length of each rod is 5 kg/m. 1m 2 m
21-46. The assembly is supported by journal bearings at A and B, which develop only y and z force reactions on the shaft. Ifthe shaftis rotating in the direction shownato = {2i} rad/s, determine the reactions at the bearings when the assembly is in the position shown. Also, what is the shaft's angular acceleration? The mass per unit length of each rod is 5 kg/m. 1m 2 m
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![21-46. The assembly is supported by journal bearings at A
and B, which develop only y and z force reactions on the shaft.
Ifthe shaftis rotating in the direction shownato = {2i} rad/s,
determine the reactions at the bearings when the assembly is
in the position shown. Also, what is the shaft's angular
acceleration? The mass per unit length of each rod is 5 kg/m.
1m
2 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fce9f9be8-cced-4332-9910-f0342040b73f%2Fe97d71e9-d373-4a32-9114-73974cea9dad%2Frhaen7y.png&w=3840&q=75)
Transcribed Image Text:21-46. The assembly is supported by journal bearings at A
and B, which develop only y and z force reactions on the shaft.
Ifthe shaftis rotating in the direction shownato = {2i} rad/s,
determine the reactions at the bearings when the assembly is
in the position shown. Also, what is the shaft's angular
acceleration? The mass per unit length of each rod is 5 kg/m.
1m
2 m
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