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It is 250 kgm/s in the direction of the skater's motion.

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8y ago

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What is the momentum of a 50 kg ice skater gliding across the ice at a speed of 5 ms?

It is 250 kgm/s in the direction of the skater's motion.


What is the momentum of a 50-kilogram ice skater gliding across the ice at a speed of 50?

250 kg * m/s


What is the momentum of a 50 kilogram ice skater gliding across the ice at a speed of 5 m's?

500 kg·m/s


What is the momentum of a 50-kg ice skater gliding across the ice at a speed of 5 ms?

It is 250 kgm/s in the direction of the skater's motion.


What is the momentum of a 50 kg ice skater gliding across the ice at a speed of 2ms?

The momentum of the ice skater can be calculated using the formula: momentum = mass x velocity. Plugging in the values (mass = 50 kg, velocity = 2 m/s), the momentum would be 100 kg*m/s.


What is the momentum of a 50-kilogram ice skater gliding across the ice at a speed of 5 ms?

It is 250 kgm/s in the direction of the skater's motion.


What is the momentum of a 50kg ice skater gliding across the ice at a speed of 5 ms?

Momentum is the product of measuring the mass and velocity of a moving object. How much something weighs by the rate of speed it was traveling. Can tell you alot about the damage that could be doneup on impact. As well as tell you how much force would be needed to stop the object in question.


A 75 kg speed skater moving forward at 16 m s?

The speed skater has a momentum of 1200 kg*m/s.


Is angular momentum conserved when a spinning ice skater pulls in their arms?

Yes, angular momentum is conserved when a spinning ice skater pulls in their arms. This is because the skater's rotational speed increases as they bring their arms closer to their body, balancing out the decrease in their moment of inertia.


What is the best example that demonstrates the conservation of angular momentum?

One of the best examples that demonstrates the conservation of angular momentum is the spinning ice skater. When a skater pulls in their arms while spinning, their rotational speed increases due to the conservation of angular momentum. This principle shows that the total angular momentum of a system remains constant unless acted upon by an external torque.


Why does a skater spin faster when she pulls her arms in her body?

A skater spins faster when she pulls her arms in due to the principle of conservation of angular momentum. When she reduces her moment of inertia by drawing her arms closer to her body, she compensates by increasing her rotational speed to keep the angular momentum constant. This is similar to a figure skater executing a spin; as they tuck in their limbs, they rotate more quickly.


Is Apolo Ohno a short-track speed skater or a speed-skater?

Apolo Anton Ohno is a 1000 meter short track speed-skater.