(Force*Time2 )/m = distance
Make sure units correct
You would have a very tough time, because that isn't the formula to calculate work. (distance) divided by (time) is the formula to calculate speed. The formula to calculate work is: (force) multiplied by (distance).
The dimension of power is (energy / time)= (force x distance) / time= (mass x distance / time2) x distance / time= mass x distance2 / time3= ML2T-3
Power = (work) divided by (time) If you don't know the amount of work, you can calculate it. Work = (force) times (distance).
You can't because you need the time involved. Force x distance shifted in the direction of the force = energy. But power is energy per unit time (seconds etc)
F = a + bxWe're told that 'F' is force and 'x' is distance. So both of the terms 'a' and 'bx'are also force.Dimensionally:[ a ] = [ force ] = [ mass - length3 - time-2 ][ b ] = [ force/length ] = [ mass - length2 - time-2 ]
Time, velocity and mass do not provide enough information. If you are given a time interval, t, then you need the velocity at the start of the interval (= u) and at its end (v). Then F = m*(v - u)/t
You can calculate speed by dividing the force by the mass to get acceleration, and then multiplying the acceleration by time. Speed = acceleration x time.
(mass X distance)/(time X time), or mass times acceleration
To calculate force when given speed, you would need to know the mass of the object. The equation that relates force, speed, and mass is F = m*a, where F is the force, m is the mass, and a is the acceleration (change in speed over time). Without knowing the mass or acceleration, it is not possible to calculate the force.
Well, let's see . . .[ pressure ] x [ mass / time ] = [ force / area ] x [ mass / time ] = [ force ] x [ mass / area-time ][ Energy ] = [ force ] x [ distance ]There's no way that [ mass / area-time ] is equal to [ distance ],so the answer is pretty clearly 'no' .
You can calculate the force of a falling object using the formula: Force = mass x acceleration due to gravity. The acceleration due to gravity on Earth is approximately 9.81 m/s^2. Simply multiply the mass of the object by 9.81 to find the force of the object falling.
You would have a very tough time, because that isn't the formula to calculate work. (distance) divided by (time) is the formula to calculate speed. The formula to calculate work is: (force) multiplied by (distance).
Yes, power is determined by the formula Power = Force x Distance / Time. So if the force and time are given, you can calculate power if you also know the distance over which the force is applied.
There is no direct relationship between the two. However, you can take Newton's Second Law: F=ma (force = mass x acceleration), solving for a: a = F/m. If you assume the object is initially at rest, at a point you call "zero", you can calculate the acceleration, then use a formula for constant acceleration to calculate the object's position after a specified time.
Pressure is defined as the amount of force applied to a given amount of area. Therefore pressure is derived from force and distance. Force itself is derived from time, distance, and mass and area is derived from distance.
The dimension of power is (energy / time)= (force x distance) / time= (mass x distance / time2) x distance / time= mass x distance2 / time3= ML2T-3
Power = (work) divided by (time) If you don't know the amount of work, you can calculate it. Work = (force) times (distance).