0.3 m 0.9 m 0.6 m 0.9 m B

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Two disks each have a mass of 5 kg and a radius 300 mm. They spin as shown at the rate of w1 = 1200 rpm about a rod AB of negligible mass that rotates about the horizontal z axis at the rate of w2 = 60 rpm. (a) Determine the dynamic reactions at points C and D. (b) Solve part (a) assuming that the direction of spin of disk A is reversed.

0.3 m
0.9 m
0.6 m
0.9 m
B
Transcribed Image Text:0.3 m 0.9 m 0.6 m 0.9 m B
Expert Solution
Step 1

Given:

Two disks each have a mass of 5 kg and a radius 300 mm. They spin as shown at the rate of w1 = 1200 rpm about a rod AB of negligible mass that rotates about the horizontal z axis at the rate of w2 = 60 rpm. 

Step 2

The diagram is shown below as,

Advanced Physics homework question answer, step 2, image 1

The angular velocity of the disc is determined as below,

Advanced Physics homework question answer, step 2, image 2

Where,

N denotes the speed of the pulley.

 

Step 3

The N value is substituted for 1200 rpm.

Advanced Physics homework question answer, step 3, image 1

On simplifying the values as,

Advanced Physics homework question answer, step 3, image 2

Hence, the value is 125.66 rad/s

Step 4

The angular momentum at the rate A being calculated as,

Advanced Physics homework question answer, step 4, image 1

On substituting the values as,

Advanced Physics homework question answer, step 4, image 2

Here,

HA determines the value of angular momentum at A

The moment of inertia that is determined along x,y and z directions are Ix, Iy and Iz.

The angular velocity determines in x, y and z directions are Wx,Wand Wz

The mass of the disk is m

The radius of the disk is r

Step 5

The angular acceleration at A is determined as below,

Advanced Physics homework question answer, step 5, image 1

Here,

The angular acceleration is HA

The initial acceleration at origin is (HA)o

On substituting the values of 

Advanced Physics homework question answer, step 5, image 2

The equation becomes,

Advanced Physics homework question answer, step 5, image 3

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