Mass of the boom boom: Mass of the hinge mhinge- Mass of the load mload: Weight of the boom F₁ = mboom g: Weight of the load F₂ = Mload 9: Wire force F3: Normal force of the hinge F₁: Horizontal force of the hinge Fs: Weight of the hinge F6 = mhinge 9: position of the COM of the boom along the boom 1₁: x-position of the COM of the boom x₁ : position of the load action point along the boom 1₂: x-position of the load X₂ : position of the wire action point along the boom 13: x-position of the wire action point X3 : y-position of the wire action point y3: angle of the boom with the horizontal a: angle of the wire with the horizontal (sign !): Net x-force Fnetx: Net y-force Fnetx: Data Table Net torque Thet: Relative uncertainty F3: For the following list all terms in the sum ! Relative uncertainty F4: 0.3367 kg 0.0437 kg 0.2052 kg 6.9 N 3.0 N 6.5 N 0.758 m / 2 (half of length) 0.620 m 0.554 m 18° +22° Relative uncertainty Fs:

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter31: Gas Heat
Section: Chapter Questions
Problem 5RQ: The specific gravity of natural gas is A. 0.08. B. 1.00. C. 0.42. D. 0.60.
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Static Equilibrium of a rigid body. The left picture of the rigid body is the initial, the right picture is the final. Complete the calculations of all the quantities in the data table. Check to see if each of the equations of equilibrium is satisified. Use the blue filled out information to help you get the data for the other parts. 

1₂
X 3
1₁ F
COM
F₁
+
X₁
123
a
5
B)
Уз
F4
Fo
F₂
X2
+
X 3
F3
COM
F₁
B
X₁
a
F5
У з
F₁
F₁
Transcribed Image Text:1₂ X 3 1₁ F COM F₁ + X₁ 123 a 5 B) Уз F4 Fo F₂ X2 + X 3 F3 COM F₁ B X₁ a F5 У з F₁ F₁
Mass of the boom mboom:
Mass of the hinge mhinge
Mass of the load mload:
Weight of the boom F₁ = mboom 9:
Weight of the load F₂ = mload 9:
Wire force F3:
Normal force of the hinge F4 :
Horizontal force of the hinge F₁:
Weight of the hinge F₁ = mhinge 9:
position of the COM of the boom along the boom 1₁:
x-position of the COM of the boom x₁ :
position of the load action point along the boom 1₂:
x-position of the load X2 :
position of the wire action point along the boom 13:
x-position of the wire action point X3:
y-position of the wire action point y3 :
angle of the boom with the horizontal a:
angle of the wire with the horizontal (sign !):
Net x-force Fnet.x:
Net y-force Fnet.x:
Data Table
Net torque Tnet:
Relative
uncertainty
F3:
For the following list all terms in the sum !
Relative
uncertainty
F4:
0.3367 kg
0.0437 kg
0.2052 kg
6.9 N
3.0 N
6.5 N
0.758 m/2 (half of length)
0.620 m
0.554 m
18°
+22°
Relative
uncertainty
F₁:
Transcribed Image Text:Mass of the boom mboom: Mass of the hinge mhinge Mass of the load mload: Weight of the boom F₁ = mboom 9: Weight of the load F₂ = mload 9: Wire force F3: Normal force of the hinge F4 : Horizontal force of the hinge F₁: Weight of the hinge F₁ = mhinge 9: position of the COM of the boom along the boom 1₁: x-position of the COM of the boom x₁ : position of the load action point along the boom 1₂: x-position of the load X2 : position of the wire action point along the boom 13: x-position of the wire action point X3: y-position of the wire action point y3 : angle of the boom with the horizontal a: angle of the wire with the horizontal (sign !): Net x-force Fnet.x: Net y-force Fnet.x: Data Table Net torque Tnet: Relative uncertainty F3: For the following list all terms in the sum ! Relative uncertainty F4: 0.3367 kg 0.0437 kg 0.2052 kg 6.9 N 3.0 N 6.5 N 0.758 m/2 (half of length) 0.620 m 0.554 m 18° +22° Relative uncertainty F₁:
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