Impulse is increased when either the force applied to an object or the time duration for which the force is applied is increased. Mathematically, impulse is defined as the product of force and the time interval during which the force acts (Impulse = Force × Time). Therefore, increasing either factor will result in a greater impulse, which in turn changes the momentum of the object.
The impulse on an object will be reduced by half when both the force and the time of contact are halved. Impulse is the product of force and time, so decreasing both will result in a proportional decrease in the impulse.
Impulse is denoted as a change in momentum. Momentum has the units of kilogram meter per second. Which is mass times velocity. So you can decrease the time and increase the velocity to increase the impulse.
an impulse item is something attractive that you buy without much thought :)
By myelin sheath.
An impulse of 15 units is equal to the change in momentum of an object. Impulse is calculated as the product of force and the time duration over which the force acts. Therefore, if an impulse of 15 units is applied, it means that the object's momentum has increased or decreased by 15 units as a result of that force over the specified time.
Due to inadequate thrust, my probe initially failed, but with increased impulse, the re-entry was successful.
If a constant force is applied for double the amount of time, the impulse applied will also double. Impulse is equal to force multiplied by time, so if either the force or the time doubles, the impulse will also double.
impulse is impulse
Impulse = mv Impulse = Fmv
If the mass of an object is doubled, its impulse will also double if the change in velocity remains the same. Impulse is equal to the change in momentum, so if both mass and velocity double, the impulse will quadruple.
To find the magnitude of impulse in a given scenario, you can multiply the force applied to an object by the time period over which the force is applied. This will give you the change in momentum of the object, which is equal to the impulse. The magnitude of impulse is a measure of how much the object's momentum changes due to the force applied to it.
Impulse transmission on an unmyelinated nerve fiber is much slower than the impulse transmission on a myelinated nerve fiber.