it means powerful
coulombs law
The effort force is applied at the handle of the shovel. The fulcrum is where your other hand goes, lower down the shaft, and the fulcrum resistance would be where the load goes on the shovel, I.E the flat bit that you hit people with!
FORCE it may be reffered to as resistance if it's direction is opposite to the motion direction
means thereshould be no killing
The resistance force multiplied by the resistance distance.
To calculate mechanical advantage, you need to know the effort force applied to the machine and the resistance force it is able to overcome. By dividing the resistance force by the effort force, you can determine the mechanical advantage of the machine.
Resistance force is a force that opposes the motion or movement of an object. It can come from factors such as air resistance, friction, or other external forces. In physics, resistance force acts in the opposite direction of the applied force, slowing down or hindering the object's motion.
You can calculate the input force applied to bike pedals using the formula: Input force = (Rider's weight + Bike weight) x Grade resistance. This formula takes into account the combined weight of the rider and the bike, as well as the resistance due to the grade of the slope being ridden on.
If the effort force is missing from a problem, you can calculate it using the formula: Mechanical Advantage = Resistance Force / Effort Force. Rearrange the formula to solve for Effort Force: Effort Force = Resistance Force / Mechanical Advantage. Plug in the known values for resistance force and mechanical advantage to find the effort force.
To calculate the maximum resistance force, we first need to find the mechanical advantage of the screwdriver. The mechanical advantage is calculated as the handle diameter divided by the pitch of the screw, which gives us 36.0 mm / 0.200 cm = 180. Next, we use the formula for mechanical advantage: MA = Resistance force / Effort force. Plugging in the values, we get 180 = Resistance force / 29.0 N. Solving for the resistance force gives us 180 * 29.0 N = 5220 N as the maximum resistance force.
Drag force on an airplane is often referred to as a resistance force. It is the force that opposes the forward motion of the airplane and is caused by air resistance.
Effort force is the force applied to overcome resistance force in order to move an object, while resistance force is the force that opposes the motion of an object. Effort force acts in the direction of motion, whereas resistance force acts in the opposite direction. The ratio of effort force to resistance force is a measure of mechanical advantage in simple machines.
Yes resistance would be a push force.
The net force acting on the ball would be the gravitational force (9.8 N downward) minus the air resistance force (2 N upward), resulting in a net force of 7.8 N downward.
The mechanical advantage is given by the ratio of resistance force to effort force. It represents the factor by which a simple machine multiplies the force applied to it. Mathematically, it can be calculated as mechanical advantage = resistance force / effort force.
If the effort force is missing, you cannot directly calculate it without additional information such as the resistance force and mechanical advantage. The effort force can be determined using the equation for mechanical advantage, which is the ratio of resistance force to effort force. With this information, you can rearrange the formula to solve for the effort force.