A 3-degree fall over a distance of 4 meters refers to a slope that descends at an angle of 3 degrees across that horizontal distance. To calculate the vertical drop, you can use the formula: height = distance × sin(angle). In this case, the vertical drop would be approximately 0.21 meters (or 21 centimeters).
-4m + 3 = -8 -4m = -8 -3 -4m = -11 4m = 11 m = 2.75
4m
4 cubic meters.
4m - 37 = -28 ie 4m = -28 + 37 ie 4m = 9 so m = 2.25
The work done can be calculated using the formula: work = force x distance x cos(theta), where theta is the angle between the force and the direction of motion. In this case, if the force is applied in the direction of motion (theta = 0), the work done would be 2.5 N x 4m = 10 Joules. Work is a scalar quantity that represents the energy transferred to an object when a force acts on it over a distance.
Work = force x distance Work = 10N x 4m= 40 joules
4m
The work done is equal to the force applied multiplied by the distance moved in the direction of the force. In this case, if a force of N moves a block 4m, the work done would be N multiplied by 4m.
The area of 4m by 4m is 16 square meters.
4m = 13.12 feet
use safty gogle and gloves and keep distance 4m machine
In a fixed pulley system, the effort rope must move the same distance as the resistance (4m) in order to raise it by the same amount. This is because the fixed pulley changes the direction of the force applied, but does not provide any mechanical advantage in terms of distance.
-4m + 3 = -8 -4m = -8 -3 -4m = -11 4m = 11 m = 2.75
V = 64 m3
4m
2816-4m = 2812
4m-224 = -220