Momentum, in classical terms, is defined as mass x velocity. So, theoretically, an elephant could have the same momentum as a Golf ball if the golf ball (small mass) is moving very, very fast, and the elephant (large mass) is moving very, very slowly. If the product of the mass x velocity is the same, then the momentum can be the same.
momentum=velocity x mass say a golf ball weighs 1 pound and the bowling ball weighs 5 pounds the golf ball would have to be moving 5 times faster than the bowling ball to have the same momentum
The bowling ball would have more momentum because it has more mass than the golf ball. Momentum is calculated as the product of an object's mass and velocity, so a heavier object moving at the same velocity will have more momentum.
The green ball would have greater mass than the orange ball. Momentum depends on both mass and velocity, so if they have the same velocity but different momentum, it means their masses must be different.
No, a bird and a bowling ball cannot have the same momentum because momentum depends on both an object's mass and its velocity. Since a bowling ball has much more mass than a bird, even if they were moving at the same speed, their momenta would still be different.
When you catch a softball, your hand and the glove move in the same direction that the ball is moving to cushion the impact and reduce the force on your hand. This action conserves momentum, as the momentum of the ball is transferred to your hand and glove system upon contact, leading to a decrease in the ball's momentum and an increase in the momentum of your hand and glove system.
this question has the theoritical answer but it is not yet practically done. according to the theortical answer """"""""yes! elephant have the same momentum as a Golf ball<<<<<<<<< Actually, elephants can have the same momentum as a golf ball. the equation for momentum is m x v2. m is mass, v is speed, and the two represents "speed squared". If the golf ball has a huge speed, then yes, it can have the same momentum as the elephant.
yes
this question has the theoritical answer but it is not yet practically done. according to the theortical answer """"""""yes! elephant have the same momentum as a golf ball<<<<<<<<< Actually, elephants can have the same momentum as a golf ball. the equation for momentum is m x v2. m is mass, v is speed, and the two represents "speed squared". If the golf ball has a huge speed, then yes, it can have the same momentum as the elephant.
Momentum is the product of the mass and velocity of an object. Since a golf ball has a much lower mass than an elephant, it would have to have a much higher velocity to achieve the same momentum as an elephant. But it is definitely possible.
Well, that depends on how fast the golf-ball is going, if it's going 30 mph, yes is can, If faster no.
momentum=velocity x mass say a golf ball weighs 1 pound and the bowling ball weighs 5 pounds the golf ball would have to be moving 5 times faster than the bowling ball to have the same momentum
The bowling ball would have more momentum because it has more mass than the golf ball. Momentum is calculated as the product of an object's mass and velocity, so a heavier object moving at the same velocity will have more momentum.
It works the same way it does on Earth. The momentum of the club is transferred to the golf ball and it travels. And it isn't slowed down by the friction of air.
A bowling ball has more momentum. You cannot throw it as fast, but a tenpin ball weighs 16 pounds and a baseball only 1/3 pound. Momentum is mass times velocity and if you throw the bowling ball at 10 mph but the baseball at 90 mph the bowling ball still has much more momentum.
No, they are the same ball.
The momentum of the baseball and the vase after the collision is the same as it was before the collision, as long as there are no external forces acting on them. This is because momentum is conserved in the absence of external forces.
Momentum is a constant. The momentum before and after an interaction is the same. E,g. a pool ball with momentum P=mV, the momentum after hitting a second ball is the same mv11 +m2v21 = m1v12 + m2v22 . If v21 is zero the momentum balance is still the same on both sides of the equality., teh momentum is constant..