Find max distance box on hingedbeam can be before rope snaps

In summary, The torque equation and the angle between the rope and the bar (30 °) were used to determine the torque of the rope. The maximum force in the y direction was calculated by multiplying the maximum force by the distance, resulting in a torque of 2.019 meters.
  • #1
isukatphysics69
453
8

Homework Statement


iamscrewed.PNG


Homework Equations


torque = force * distance

The Attempt at a Solution



Torque forces :
TForceTensionRopeY - TBOX - TBEAM = 0

Net forces Y:
∑FY = FTensionRopeY + FHingeY - WBEAM - WBOX = 0

Net forces X:
∑FX = FHingeX - FTensionRopeX = 0

This is my first torque problem so i want to make sure that i have all of my forces properly, i have been spinning wheels here for 30 minutes unable to solve. I will continue trying but want to see if i have all of the forces correctly
 

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  • #2
isukatphysics69 said:

Homework Statement


View attachment 225177

Homework Equations


torque = force * distance

The Attempt at a Solution



Torque forces :
TForceTensionRopeY - TBOX - TBEAM = 0

Net forces Y:
∑FY = FTensionRopeY + FHingeY - WBEAM - WBOX = 0

Net forces X:
∑FX = FHingeX - FTensionRopeX = 0

This is my first torque problem so i want to make sure that i have all of my forces properly, i have been spinning wheels here for 30 minutes unable to solve. I will continue trying but want to see if i have all of the forces correctly
You need the torque equation only. Write the torques with respect to the hinge. Take the tension equal to the maximum value.
 
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  • #3
ehild said:
You need the torque equation only. Write the torques with respect to the hinge. Take the tension equal to the maximum value.

I believe i need the y component only of the tension tho

525 = 1.325*182 +x*225
525 - 241.15 = x*225
283.85/225 = 1.26m = x was incorrect

That is why i had the other equations so that i can find that y component of the tension

i believe i can actually just find that y component easily 1 sec
 
  • #4
isukatphysics69 said:
I believe i need the y component only of the tension tho

525 = 1.325*182 +x*225
525 - 241.15 = x*225
283.85/225 = 1.26m = x was incorrect

That is why i had the other equations so that i can find that y component of the tension

i believe i can actually just find that y component easily 1 sec
How is the torque defined? What is the torque of the tension?
You have the angle between the rope and the bar (30 °).
 
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  • #5
ehild said:
How is the torque defined?
You have the angle between the rope and the bar (30 °).
I have defined the torque as negative downwards and positive upwards
torque is force*distance

So i see what youre saying here i think, 525sin(30)*2.65
this would be the maximum force in the y direction multiplied by the distance. This is the torque of the rope
 
  • #6
isukatphysics69 said:
I have defined the torque as negative downwards and positive upwards
torque is force*distance

So i see what youre saying here i think, 525sin(30)*2.65
this would be the maximum force in the y direction multiplied by the distance. This is the torque of the rope
Yes. So what did you get for x?
 
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  • #7
ehild said:
Yes. So what did you get for x?
2.019 meters thank you!
 
  • #8
isukatphysics69 said:
2.019 meters thank you!
You are welcome. :oldsmile:
 

Related to Find max distance box on hingedbeam can be before rope snaps

1. How is the max distance box on a hinged beam calculated?

The maximum distance a box can be placed on a hinged beam before the rope snaps is calculated using the principles of physics and engineering. The formula takes into account the weight of the box, the strength of the rope, and the length and angle of the beam.

2. What factors affect the maximum distance a box can be placed?

The maximum distance is affected by the weight of the box, the strength of the rope, and the length and angle of the beam. Other factors such as the type of material used for the rope and the condition of the beam can also play a role.

3. Can the maximum distance be increased by using a stronger rope?

Yes, using a stronger rope can increase the maximum distance a box can be placed on a hinged beam before the rope snaps. However, it is important to note that the strength of the beam must also be taken into consideration.

4. How can the maximum distance be determined experimentally?

The maximum distance can be determined experimentally by conducting tests using different weights, ropes, and beam lengths. By recording the results and analyzing the data, the maximum distance can be estimated.

5. What safety precautions should be taken when performing this experiment?

It is important to follow proper safety precautions when conducting this experiment. This includes wearing appropriate protective gear, ensuring the beam is securely attached and can support the weight, and keeping a safe distance from the experiment while it is in progress.

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