of 1 m and incline at 45° to vertically positioned piston C. B 1 m 0.2 m 45 C Figure 2: Slider crank mechanism Draw the displacement diagram of the mechanism shown in Figure 2 to s Use a vector diagram to determine the velocity of the piston C and conne rod BC. Iculato the accoloration of piston C and the angular accoloratic

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 3:
[24]
Crack AB of a slider crack mechanism shown in Figure 2 rotate at a constant
speed of 300 rpm in clockwise direction. The connecting rod BC has a length
of 1 m and incline at 45° to vertically positioned piston C.
B
1 m
|0.2 m
45
Figure 2: Slider crank mechanism
3.1.
Draw the displacement diagram of the mechanism shown in Figure 2 to scale.
(4)
3.2.
Use a vector diagram to determine the velocity of the piston C and connecting
(8)
rod BC.
3.3.
Calculate the acceleration of piston C and the angular acceleration of (12)
connecting rod BC.
Transcribed Image Text:Question 3: [24] Crack AB of a slider crack mechanism shown in Figure 2 rotate at a constant speed of 300 rpm in clockwise direction. The connecting rod BC has a length of 1 m and incline at 45° to vertically positioned piston C. B 1 m |0.2 m 45 Figure 2: Slider crank mechanism 3.1. Draw the displacement diagram of the mechanism shown in Figure 2 to scale. (4) 3.2. Use a vector diagram to determine the velocity of the piston C and connecting (8) rod BC. 3.3. Calculate the acceleration of piston C and the angular acceleration of (12) connecting rod BC.
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