The momentum of the car can be calculated using the formula: momentum = mass x velocity. Plugging in the values, we get momentum = 920 kg x 25 m/s = 23,000 kg m/s.
The real car has more mass than the toy car, which contributes to its higher momentum despite moving at the same speed. Momentum is defined as the product of an object's mass and its velocity, so the real car's greater mass results in greater momentum.
An example of visible momentum is a moving car accelerating on a highway. As the car gains speed and covers more distance in a short amount of time, you can visually see the momentum it possesses. The increase in speed and movement of the car are clear indicators of its visible momentum.
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.
A fast-moving car has more momentum than a slow-moving car because momentum is directly proportional to an object's velocity. The momentum of an object is the product of its mass and velocity, so the faster the object is moving, the greater its momentum.
A moving train typically has more momentum than a moving car, due to its greater mass and often higher speed. Momentum is determined by both an object's velocity and mass, so the larger mass of a train contributes to its greater momentum compared to a car.
The magnitude of momentum is directly proportional to speed. A car moving at 100 km per hr has 5 times as much momentum as a car with equal mass moving at 20 km per hr has.
The real car has more mass than the toy car, which contributes to its higher momentum despite moving at the same speed. Momentum is defined as the product of an object's mass and its velocity, so the real car's greater mass results in greater momentum.
Momentum is calculated as the product of mass and velocity. Since a car typically has a much greater mass than a bike, even when both are moving at the same speed, the car will have greater momentum. Therefore, the car has greater momentum.
An example of visible momentum is a moving car accelerating on a highway. As the car gains speed and covers more distance in a short amount of time, you can visually see the momentum it possesses. The increase in speed and movement of the car are clear indicators of its visible momentum.
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.
A fast-moving car has more momentum than a slow-moving car because momentum is directly proportional to an object's velocity. The momentum of an object is the product of its mass and velocity, so the faster the object is moving, the greater its momentum.
A moving train typically has more momentum than a moving car, due to its greater mass and often higher speed. Momentum is determined by both an object's velocity and mass, so the larger mass of a train contributes to its greater momentum compared to a car.
A car has higher momentum when traveling faster because momentum is the product of an object's mass and velocity. When a car is moving at a faster speed, it has a higher velocity, resulting in a greater momentum due to the increased product of mass and velocity.
The momentum of the car can be calculated using the formula: momentum = mass x velocity. Plugging in the values, momentum = 920 kg x 2.5 m/s, which gives a momentum of 2300 kg m/s.
The velocity of the car is staying constant speed the whole time. It is not rising or diminishing at all.
The oil ship would have more momentum than the car because momentum is calculated as mass multiplied by velocity. Even though the car is moving faster, the oil ship's larger mass would result in greater momentum.
moving truck