Impulse can be determined using the formula ( J = F \Delta t ), where ( J ) is impulse, ( F ) is the average force applied, and ( \Delta t ) is the time duration over which the force is applied. Additionally, impulse can also be calculated as the change in momentum of an object, expressed as ( J = \Delta p = m \Delta v ), where ( m ) is mass and ( \Delta v ) is the change in velocity. Both methods yield the same result, illustrating the relationship between force, time, and momentum.
To determine velocity from impulse, you can use the formula: Impulse Force x Time Change in Momentum. By knowing the impulse and the mass of the object, you can calculate the change in momentum. Then, by dividing the change in momentum by the mass of the object, you can determine the velocity.
To determine the impulse of an object, you can use the formula: Impulse Force x Time. This formula calculates the change in momentum of an object by multiplying the force applied to it by the time the force is applied.
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To determine the impulse from a force-time graph, you can find the area under the curve of the graph. Impulse is equal to the change in momentum, which is calculated by multiplying the force applied by the time over which it is applied. The area under the force-time graph represents the impulse exerted on an object.
To calculate impulse using mass and velocity, you can use the formula: Impulse mass x change in velocity. This means that you multiply the mass of an object by the change in its velocity to determine the impulse. Impulse is a measure of the change in momentum of an object.
To find impulse with velocity and mass, you can use the formula: Impulse mass x change in velocity. This means that the impulse is equal to the mass of an object multiplied by the change in its velocity. By calculating the product of the mass and the change in velocity, you can determine the impulse experienced by the object.
To find velocity using impulse and mass, you can use the formula: velocity impulse / mass. Impulse is the change in momentum, which is calculated by multiplying the force applied to an object by the time it is applied. By dividing the impulse by the mass of the object, you can determine the velocity at which the object is moving.
The direction of the impulse vector is determined by the direction in which the force is applied to an object. It is always along the line of action of the force. The impulse vector points in the same direction as the force on the object and causes a change in the object's momentum in that direction.
the change in momentum. Impulse is the product of force and time, and it represents the change in momentum of an object. This change can help determine how an object's motion is altered.
The speed of an impulse traveling through a medium is determined by the medium's properties. If the speed of the impulse is known, we can calculate the time it takes to travel a certain distance using the formula time = distance / speed. However, without knowing the speed of the impulse, we cannot accurately determine the time it will take to travel 10 meters.
impulse is impulse
Impulse = mv Impulse = Fmv