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Question
- weight
a. when all forces on an object are balanced.
- equilibrium
b. the force of gravity on an object.
- mass
c. the acceleration of gravity.
- heat
d. the a product of friction.
- g
e. the measure of the matter in an object.
- rolling friction
a. resistance of a fluid on an object.
- air friction
b. resistance of air pushing against an object.
- viscous friction
c. resistance of two objects pushing against each other.
- sliding friction
d. any force that resists motion.
- friction
e. resistance of a wheel or ball.
more, less, or the same as on the earth
when an astronaut lands on the moon:
the astronauts mass is:
the astronauts weight is:
the astronauts inertia is:
which of newtons three laws applies? law 1, 2, or 3?
pushing a cart down the hall, when you try to turn it it tries to go straight.
more acceleration takes more force.
when you push your knuckles into a table, it hurts your knuckles.
a ball thrown into the ground bounces back up.
using ( g = 10 m/s^{2} ), find the weight of a 4 kg object.
( fw=(4kg)(10m/s^{2} )
( 40kgm^{2} )
two boys push on a box with 3 n and 6 n to the right. the net force is 7 n. find the force of friction.
Step1: Calculate the weight
The formula for weight is \(w = mg\), where \(m = 4\space kg\) and \(g=10\space m/s^{2}\).
Step2: Calculate the force of friction
The total force applied by the boys is \(F_{applied}=3 + 6=9\space N\) to the right. Let the force of friction be \(F_{f}\).
The net force \(F_{net}=F_{applied}-F_{f}\) (since friction opposes the motion).
We know \(F_{net} = 7\space N\) and \(F_{applied}=9\space N\).
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The weight of the \(4\space kg\) object is \(40\space N\). The force of friction is \(2\space N\).