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Which is not expecting acceleration?
A point on the outside of a spinning top whose rotational speed is constant.
A skydiver whose air resistance is equal to that of her weight.
A car on the freeway experiencing a net force of -120 N.
A submerged beach ball whose buoyant force is eight times the force of gravity on it.
Which is a valid internal frame of reference?

A frictionless spinning merry go round.

A falling rock.

A hot air balloon moving at 30 degrees east of north with no net force.

A space shuttle whose boosters just ignited for takeoff.

Two teams are playing tug of war. The team on the right is pulling with 4320 N. The team on the left is pulling with 4380 N. Which direction does the rope move and with what force?

60N to the right
120N to the left
60 N to the left
120 N to the right

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  • aristocles


    #1

    A point on the outside of a spinning top whose rotational speed is constant.

    Since the point at the top is at rest so it will not accelerate at all

    A skydiver whose air resistance is equal to that of her weight.

    Since weight is counter balanced by air resistance so net force on it is zero so acceleration will be zero

    A car on the freeway experiencing a net force of -120 N.

    Since net force is not zero so it will accelerate here

    A submerged beach ball whose buoyant force is eight times the force of gravity on it.

    Since buoyant force is more than the weight so it will not at rest and move upwards with some acceleration


    #2

    A frictionless spinning merry go round.

    Since spinning wheel accelerating due to centripetal force so it is non inertial frame

    A falling rock.

    Falling rock is accelerating due to gravity so it is again non inertial frame

    A hot air balloon moving at 30 degrees east of north with no net force.

    since hot air balloon is having no force on it so its acceleration is zero and its an inertial frame

    A space shuttle whose boosters just ignited for takeoff.

    Since space shuttle is accelerating due to boosters so it is non inertial frame

    #3

    Here net force on it is due to two given forces

    F_1 = 4320 N towards right

    F_2 = 4380 N towards left

    so here net force is given as

    F = F_2 - F_1

    F = 4380 - 4320 = 60 N

    since force towards left is more so the direction will be towards left

    so correct answer is 60 N towards left