em 2 Consider the crane system in (Figure 1). It can be operated so that the steel beam rotates around the orange axle. The crane is supported by a steel cable attached to it 6.0 m from the upper and making a 30" angle. The steel beam is 32 m in length and weighs 25,000 N. The beam's unique design causes the center of gravity to be at a point 12m along the beam from the ground. Figure 6.0m <1 of 1 Part A I=71" and the metal crate hanging on a 4.5 m massless cord weighs 17,000 N, determine the tension in the steel cable supporting the crane. Express your answer with the appropriate units. T= CHWA Value Submit Part B Request Answer P.- Value 4 O Units Determine the horizontal component of the force experienced by the steel beam at the axel base. Express your answer with the appropriate units. Enter positive value if the direction of the force is to the right and negative value if the direction of the force is to the left. Submit Request Answer ? Units BI ? < 2 of 4 Review Constants >

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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e
6.0 m
< 1 of 1
Submit
Part C
Request Answar
Determine the vertical component of the force experienced by the steel beam at the axel base.
Express your answer with the appropriate units. Enter positive value if the force is upward and negative value if the force is downward.
F₁ = Value
Submit
4
Request Answer
→
Units
?
Transcribed Image Text:e 6.0 m < 1 of 1 Submit Part C Request Answar Determine the vertical component of the force experienced by the steel beam at the axel base. Express your answer with the appropriate units. Enter positive value if the force is upward and negative value if the force is downward. F₁ = Value Submit 4 Request Answer → Units ?
Item 2
Consider the crane system in (Figure 1). It can be operated so that the steel beam
ratates around the orange axle. The crane is supported by a steel cable attached to
it 6.0 mm from the upper and making a 30 angle. The steel beam is 32 1n in length
and weighs 25,000 N. The beam's unique design causes the center at gravity to be
at a point 12 m along the beam from the ground.
Figure
6.0 m
300
<
1 of 1 >
Y Part A
If 0 = 71" and the metal crate hanging on a 4.5 m massless cord weighs 17,000 N, determine the tension in the steel cable supporting the crane.
Express your answer with the appropriate units.
T =
Submit
▾ Part B.
TA
Value
Submit
Request Answer
F₁ - Value
O E
Request Answer
Units
Determine the horizontal component of the force experienced by the steel beam at the axel base..
Express your answer with the appropriate units. Enter positive value if the direction of the force is to the right and negative value if the direction of the force is to the left.
?
C
Units
?
<
2 of 4 >
Review | Constants
Transcribed Image Text:Item 2 Consider the crane system in (Figure 1). It can be operated so that the steel beam ratates around the orange axle. The crane is supported by a steel cable attached to it 6.0 mm from the upper and making a 30 angle. The steel beam is 32 1n in length and weighs 25,000 N. The beam's unique design causes the center at gravity to be at a point 12 m along the beam from the ground. Figure 6.0 m 300 < 1 of 1 > Y Part A If 0 = 71" and the metal crate hanging on a 4.5 m massless cord weighs 17,000 N, determine the tension in the steel cable supporting the crane. Express your answer with the appropriate units. T = Submit ▾ Part B. TA Value Submit Request Answer F₁ - Value O E Request Answer Units Determine the horizontal component of the force experienced by the steel beam at the axel base.. Express your answer with the appropriate units. Enter positive value if the direction of the force is to the right and negative value if the direction of the force is to the left. ? C Units ? < 2 of 4 > Review | Constants
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