| Your Results | Global Average | |
|---|---|---|
| Questions | 5 | 5 |
| Correct | 0 | 3.00 |
| Score | 0% | 60% |
Friction between two or more solid objects that are not moving relative to each other is called:
dynamic friction |
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gravitational friction |
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static friction |
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kinetic friction |
Static friction is friction between two or more solid objects that are not moving relative to each other. An example is the friction that prevents a box on a sloped surface from sliding farther down the surface.
| 34.38 lbs. | |
| 5 lbs. | |
| 9.6 lbs. | |
| 6.6 lbs. |
The mechanical advantage of a wheel and axle is the input radius divided by the output radius:
MA = \( \frac{r_i}{r_o} \)
In this case, the input radius (where the effort force is being applied) is 8 and the output radius (where the resistance is being applied) is 5 for a mechanical advantage of \( \frac{8}{5} \) = 1.6
MA = \( \frac{load}{effort} \) so effort = \( \frac{load}{MA} \) = \( \frac{55 lbs.}{1.6} \) = 34.38 lbs.
Which of these will have the most impact on the kinetic energy of an object?
its direction |
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its mass |
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its speed |
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its weight |
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.
What type of load varies with time or affects a structure that experiences a high degree of movement?
dynamic load |
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concentrated load |
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static load |
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impact load |
A concentrated load acts on a relatively small area of a structure, a static uniformly distributed load doesn't create specific stress points or vary with time, a dynamic load varies with time or affects a structure that experiences a high degree of movement, an impact load is sudden and for a relatively short duration and a non-uniformly distributed load creates different stresses at different locations on a structure.
| 8 ft⋅lb | |
| 3 ft⋅lb | |
| 7700 ft⋅lb | |
| 4 ft⋅lb |