Maximum Jump Height of a 12-kg Dog: A Physics Problem

  • Thread starter Luhertz
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In summary, a 12-kg dog with a center of mass normally at 0.20 m above the ground can jump up to 1.15 m if it exerts a maximum force of 2.1 times the gravitational force Earth exerts on it.
  • #1
Luhertz
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Homework Statement


A 12-kg dog jumps up in the air to catch a ball. The dog's center of mass is normally 0.20 m above the ground, and he is 0.50 m long. The lowest he can get his center of mass is 0.10 m above the ground, and the highest he can get it before he can no longer push against the ground is 0.60m.

If the maximum force the dog can exert on the ground in pushing off is 2.1 times the gravitational force Earth exerts on him, how high can he jump?

Homework Equations


Change in gravitational potential energy = mgΔx
Work = Force * Force Displacement

The Attempt at a Solution


Dog pushes itself to 0.6 m, then from that point the change in position is given by:
0.5*(2.1mg - mg) = mgΔx
0.55 m = Δx

Δx + 0.6 m = 1.15 m

I'm not sure if 1.15 m is correct, but I do know that 1.05 m, 0.85 m, 1.5 m, and 0.74 m are incorrect.
 
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  • #2
Luhertz said:
how high can he jump?
Unfortunately, that's a bit vague. Does it mean
  1. how high can it get its centre of mass?
  2. how high can it reach?
  3. how high a bar can it clear?
Assuming it means (1), I agree with your answer. If it means (2) you can add something based on the given info, or if it means (3) subtract a different number.
 
  • #3
haruspex said:
Unfortunately, that's a bit vague. Does it mean
  1. how high can it get its centre of mass?
  2. how high can it reach?
  3. how high a bar can it clear?
Assuming it means (1), I agree with your answer. If it means (2) you can add something based on the given info, or if it means (3) subtract a different number.
1.15 m worked! Thanks for the assurance.
 

Related to Maximum Jump Height of a 12-kg Dog: A Physics Problem

What is the "Maxinum Height Question"?

The "Maxinum Height Question" refers to the maximum height a certain object can reach, usually in the context of physics or engineering.

Why is the "Maxinum Height Question" important?

Understanding the maximum height an object can reach is crucial for predicting and designing structures and machines, as well as for safety reasons.

How is the "Maxinum Height Question" calculated?

The maximum height can be calculated using various equations, depending on the specific situation and variables involved. For example, for a projectile launched at an angle, the maximum height can be calculated using the formula h = (v^2 * sin^2θ)/2g, where v is the initial velocity, θ is the launch angle, and g is the acceleration due to gravity.

What factors affect the "Maxinum Height Question"?

The maximum height an object can reach is influenced by various factors, including the initial velocity, launch angle, air resistance, and the force of gravity. Additionally, the mass and shape of the object can also impact its maximum height.

How is the "Maxinum Height Question" relevant in real life?

The "Maxinum Height Question" is relevant in many real-life scenarios, such as designing bridges, calculating the trajectory of a rocket launch, or determining how high a basketball player can jump. It is also important for understanding the capabilities and limitations of different machines and structures.

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