| Your Results | Global Average | |
|---|---|---|
| Questions | 5 | 5 |
| Correct | 0 | 3.31 |
| Score | 0% | 66% |
Which of these is the formula for kinetic energy?
\(KE = {1 \over 2}mv^2\) |
|
\(KE = {1 \over 2}mh^2\) |
|
\(KE = {m \over v^2 }\) |
|
\(KE = mgh\) |
Kinetic energy is the energy of movement and is a function of the mass of an object and its speed: \(KE = {1 \over 2}mv^2\) where m is mass in kilograms, v is speed in meters per second, and KE is in joules. The most impactful quantity to kinetic energy is velocity as an increase in mass increases KE linearly while an increase in speed increases KE exponentially.
Which of these is the formula for force?
F = ma |
|
F = m/a |
|
F = a/m |
|
F = am2 |
Newton's Second Law of Motion states that "The acceleration of an object as produced by a net force is directly proportional to the magnitude of the net force, in the same direction as the net force, and inversely proportional to the mass of the object." This Law describes the linear relationship between mass and acceleration when it comes to force and leads to the formula F = ma or force equals mass multiplied by rate of acceleration.
Connected gears of different numbers of teeth are used together to change which of the following charasteristics of the input force?
rotational direction |
|
energy |
|
force |
|
torque |
Connected gears of different numbers of teeth are used together to change the rotational speed and torque of the input force. If the smaller gear drives the larger gear, the speed of rotation will be reduced and the torque will increase. If the larger gear drives the smaller gear, the speed of rotation will increase and the torque will be reduced.
| 1.5 ft. | |
| 1 ft. | |
| 6 ft. | |
| 15 ft. |
To balance this lever the torques on each side of the fulcrum must be equal. Torque is weight x distance from the fulcrum so the equation for equilibrium is:
Rada = Rbdb
where a represents the left side of the fulcrum and b the right, R is resistance (weight) and d is the distance from the fulcrum.Solving for da, our missing value, and plugging in our variables yields:
da = \( \frac{R_bd_b}{R_a} \) = \( \frac{10 lbs. \times 3 ft.}{5 lbs.} \) = \( \frac{30 ft⋅lb}{5 lbs.} \) = 6 ft.
What is work?
Force per unit distance |
|
Force per unit time |
|
The potential for exertion |
|
The movement of an object by a force |
Work is accomplished when force is applied to an object: W = Fd where F is force in newtons (N) and d is distance in meters (m). Thus, the more force that must be applied to move an object, the more work is done and the farther an object is moved by exerting force, the more work is done. By definition, work is the displacement of an object resulting from applied force.