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The momentum of one ball will be exactly the opposite of the momentum of the other ball. The total momentum in this case will be zero.

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What is the total momentum between two identical balls traveling toward each other at the same speed from opposite directions?

They have identical momentum before the collision . The total momentum will the the same before and after the collision. When the balls collide they will bounce apart both with same force and so the same momentum as originally - but in opposite directions. This assumes no energy loss in an ideal elastic collision.


Does a car traveling along a curved path at constant speed have a constant momentum?

Yes, a car traveling along a curved path at constant speed does not have constant velocity since velocity is a vector quantity that includes direction. However, the magnitude of the car's momentum (which is the product of mass and velocity) can remain constant if there are no external forces acting on it.


Is the momentum of a car traveling south different from that of the same car when it travels north at the same speed?

No, since it's a vector quantity and has direction. The two automobiles will have the same absolute value, but will be the negation of one another, for example 50 and -50.


When traveling downhill it takes longer to stop and more to change direction?

When traveling downhill, gravity is pulling you in the direction of the slope, making it harder to stop and change direction. The force of gravity can increase your speed and momentum, which requires more effort to counteract when braking or turning. It is important to anticipate these challenges and adjust your speed and technique accordingly when traveling downhill.


Why does momentum have a direction?

Momentum is a vector quantity, meaning it has both magnitude and direction. The direction of momentum is the same as the direction of the velocity of an object. This is because momentum is defined as the product of an object's mass and velocity, and velocity has a direction.

Related Questions

What is the total momentum between two identical balls traveling toward each other at the same speed from opposite directions?

They have identical momentum before the collision . The total momentum will the the same before and after the collision. When the balls collide they will bounce apart both with same force and so the same momentum as originally - but in opposite directions. This assumes no energy loss in an ideal elastic collision.


If two identical cars are traveling at different velocities which car has the greater momentum?

Momentum is equal to the product of mass and velocity, so if the mass is equal, the one with greater velocity has greater momentum.


What is the momentum of an 800kg car traveling at 20 m s?

The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the 800kg car traveling at 20 m/s would be 16,000 kg m/s. Momentum is a vector quantity, meaning it has both magnitude and direction, which in this case would be in the direction of the car's motion.


Does a car traveling along a curved path at constant speed have a constant momentum?

Yes, a car traveling along a curved path at constant speed does not have constant velocity since velocity is a vector quantity that includes direction. However, the magnitude of the car's momentum (which is the product of mass and velocity) can remain constant if there are no external forces acting on it.


Is the momentum of a car traveling south different from that of the same car when it travels north at the same speed?

No, since it's a vector quantity and has direction. The two automobiles will have the same absolute value, but will be the negation of one another, for example 50 and -50.


Does momentum have a direction?

Momentum is mass x velocity; velocity has a direction, therefore momentum has a direction.Momentum is mass x velocity; velocity has a direction, therefore momentum has a direction.Momentum is mass x velocity; velocity has a direction, therefore momentum has a direction.Momentum is mass x velocity; velocity has a direction, therefore momentum has a direction.


What is the momentum of a 5 kg object traveling at 4 meters a second?

Momentum = (mass ) x (velocity) = (5) x (4) = 20 kg-meters/sec in the direction of the velocity.


When traveling downhill it takes longer to stop and more to change direction?

When traveling downhill, gravity is pulling you in the direction of the slope, making it harder to stop and change direction. The force of gravity can increase your speed and momentum, which requires more effort to counteract when braking or turning. It is important to anticipate these challenges and adjust your speed and technique accordingly when traveling downhill.


Why does momentum have a direction?

Momentum is a vector quantity, meaning it has both magnitude and direction. The direction of momentum is the same as the direction of the velocity of an object. This is because momentum is defined as the product of an object's mass and velocity, and velocity has a direction.


Can momentum have a negative velocity?

No, momentum can not have a negative velocity. Velocity is the rate of motion of a body from one position to another position in a particular direction. Bodies traveling in opposite directions may appear to have a negative velocity in relationship to each other but any amount of velocity is positive.


How can an object have negative momentum?

An object can have negative momentum if it is moving in the opposite direction to a chosen positive direction. Momentum is a vector quantity that considers both the mass and velocity of an object, so moving in the opposite direction as chosen positive direction can result in negative momentum.


When moving freight car collides with an identical one that is at rest. If momentum is conserved what happens to the second car after the collision?

If momentum is conserved, the second car will start moving in the opposite direction with the same speed and momentum as the first car after the collision. This is due to the principle of conservation of momentum, which states that the total momentum of an isolated system remains constant before and after a collision.

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