The inertia-force diagram for the slender bar AB is shown in Figure 2. A force F = 84.1 kN is acting 0.500 m above end B. At this instant, the acceleration of the centroid of the bar aĠ in terms of its angular acceleration αAB is given as ag 1 = aGx 200 Î+ αAB Ĵ. Figure 2 Ay A MABAGY IABαAB G MABaGx B A Ax G 2.40 m W F 0.500 m B 6) [10%] 7) [10%] Determine the angular acceleration of the bar, αAB Determine the horizontal reaction force at A. 8) [10%] Determine the vertical reaction force at A.
The inertia-force diagram for the slender bar AB is shown in Figure 2. A force F = 84.1 kN is acting 0.500 m above end B. At this instant, the acceleration of the centroid of the bar aĠ in terms of its angular acceleration αAB is given as ag 1 = aGx 200 Î+ αAB Ĵ. Figure 2 Ay A MABAGY IABαAB G MABaGx B A Ax G 2.40 m W F 0.500 m B 6) [10%] 7) [10%] Determine the angular acceleration of the bar, αAB Determine the horizontal reaction force at A. 8) [10%] Determine the vertical reaction force at A.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![The inertia-force diagram for the slender bar AB is shown in Figure 2. A force F = 84.1 kN is
acting 0.500 m above end B. At this instant, the acceleration of the centroid of the bar aĠ in terms
of its angular acceleration αAB is given as ag
1
= aGx
200
Î+ αAB Ĵ.
Figure 2
Ay
A
MABAGY
IABαAB
G
MABaGx
B
A
Ax
G
2.40 m
W
F
0.500 m
B
6) [10%]
7) [10%]
Determine the angular acceleration of the bar, αAB
Determine the horizontal reaction force at A.
8) [10%]
Determine the vertical reaction force at A.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F23067924-0c25-4da4-bd00-385725079ded%2Ffab4a957-612d-409d-824f-a5ad8ca93fa7%2Fip1bjcl_processed.png&w=3840&q=75)
Transcribed Image Text:The inertia-force diagram for the slender bar AB is shown in Figure 2. A force F = 84.1 kN is
acting 0.500 m above end B. At this instant, the acceleration of the centroid of the bar aĠ in terms
of its angular acceleration αAB is given as ag
1
= aGx
200
Î+ αAB Ĵ.
Figure 2
Ay
A
MABAGY
IABαAB
G
MABaGx
B
A
Ax
G
2.40 m
W
F
0.500 m
B
6) [10%]
7) [10%]
Determine the angular acceleration of the bar, αAB
Determine the horizontal reaction force at A.
8) [10%]
Determine the vertical reaction force at A.
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