"To dislocate a shoulder you need alot and i mean alot of force"
Actually no. The amount of force required to dislocate a shoulder depends on the position the shoulder is and the direction force is applied. Ex: An arm stretched straight forward(90 degrees, straight) is the most difficult to dislocate if the force is applied to the front of the shoulder. If I remember correctly it takes a force of 84ish N(18.89 pounds of force) to the middle deltoid to dislocate a shoulder in that position(an average man can punch at between 60-90 foot lbs I think, I read it somewhere and can't find it again) Again it all depends on the position of the shoulder and the position of the force applied to the shoulder.
foody force#
The meaning of "to dislocate your sholder" is to misplace your sholder. Like, if you break your sholder. to dislocate your sholder. dislocate means to locate something another way.--------"You usually dislocate your shoulder by a combination of a sudden jerk and awkward arm position (see below) which causes the ball at the top of your humorous to slip out of the shoulder socket. It almost always slips over the bottom lip of the shoulder socket so that the ball submarines down toward the armpit while the shoulder blade gets pushed up a bit. The dislocation involves a fair amount of stretching, ripping, and detaching in the large quantity of soft tissue which surrounds the joint. The muscles which surround the joint will go into spasm immediately. It turns out they're pretty strong. The spasm causes much of the pain, and makes the relocation more difficult. Try to relax and not move. Any movement will re-tense things up which is no help. " http://sunburn.stanford.edu/~nick/miscdocs/shoulder_dislocation.html
The amount of force needed to break a collarbone can vary depending on factors such as the individual's age, health, and the specific circumstances of the injury. In general, a significant amount of force is typically required to break a collarbone, such as a direct impact or a fall onto the shoulder. It is important to seek medical attention if you suspect a collarbone injury.
its a calculation of how much force is required in relation to how much force is applied by the pads on the disc.
As much as 100 lbs
60060
The force required can be calculated using Newton's second law, F = m * a, where F is the force, m is the mass (2 kg), and a is the acceleration (3 m/s^2). Therefore, the force required is 6 N.
Party poppers are normally popped with a force applied by a finger. The force required is maybe 10 Newtons.
If the pulley is fixed (hanging from the ceiling), and the rope passes over it, then 100 lbs of force is required. If the rope is fixed to the ceiling and passes under the pulley (which is fixed to the load), then 50 lbs of force is required.
depends on the mass of the train
To calculate the force required to accelerate a 2kg mass at 3m/s², you would use the formula F = m*a, where F is the force, m is the mass, and a is the acceleration. Plugging in the values we get F = 2kg * 3m/s² = 6N. The force required to accelerate the mass is 6 Newtons.
The force required to move a 1kg object depends on the acceleration or friction involved. In general, to accelerate a 1kg object at 1 m/s^2, a force of 1 Newton is needed according to Newton's second law (F = ma). If there is friction, the force required will be greater to overcome the resistance.