Questão 1
Questão
A whirling ball constantly accelerates.
Questão 2
Questão
The string connected to the ball pulls it towards the centre.
Questão 3
Questão
In the case of a whirling [blank_start]ball[blank_end], a [blank_start]larger[blank_end] force is needed if
(i) the [blank_start]speed[blank_end] v of the ball is [blank_start]increased[blank_end]
(ii) the [blank_start]radius[blank_end] r of the circle is [blank_start]decreased[blank_end]
(iii) the [blank_start]mass[blank_end] m of the ball is [blank_start]increased[blank_end]
Responda
-
speed
-
increased
-
radius
-
decreased
-
mass
-
increased
-
ball
-
larger
Questão 4
Questão
In the case of a whirling ball, [blank_start]F = mv^2/r[blank_end], when m is [blank_start]mass[blank_end], v is [blank_start]speed[blank_end], and r is the [blank_start]radius[blank_end].
Responda
-
F = mv^2/r
-
mass
-
speed
-
radius
Questão 5
Questão
The [blank_start]force[blank_end] which acts towards the [blank_start]centre[blank_end] and keeps a body moving in a [blank_start]circular[blank_end] path is called the [blank_start]centripetal force[blank_end].
Responda
-
force
-
centre
-
circular
-
centripetal force
Questão 6
Questão
In the case of a whirling ball, if the force is [blank_start]greater[blank_end] than the string can bear, the string [blank_start]breaks[blank_end] and the ball [blank_start]flies[blank_end] off with [blank_start]steady[blank_end] speed in a [blank_start]straight[blank_end] line along the [blank_start]tangent[blank_end].
Responda
-
greater
-
breaks
-
flies
-
steady
-
straight
-
tangent
Questão 7
Questão
When dealing with [blank_start]centripetal[blank_end] force, [blank_start]friction[blank_end] can act as an [blank_start]accelerating[blank_end] force.
Responda
-
centripetal
-
friction
-
accelerating
Questão 8
Questão
In the case of a [blank_start]banked[blank_end] road, the [blank_start]horizontal[blank_end] effect of the [blank_start]contact[blank_end] force N is the [blank_start]centripetal[blank_end] force.
Responda
-
banked
-
horizontal
-
contact
-
centripetal
Questão 9
Questão
In the case of a [blank_start]satellite[blank_end] orbiting the [blank_start]earth[blank_end], the [blank_start]centripetal[blank_end] force is provided by [blank_start]gravity[blank_end].
Responda
-
satellite
-
earth
-
centripetal
-
gravity
Questão 10
Questão
For a circular orbit, the orbital period [blank_start]T = 2πr/v[blank_end].
Questão 11
Questão
Satellites in high orbits have longer periods than those in low orbits.
Questão 12
Questão
The moon has an orbital period of 28 days.
Questão 13
Questão
Geostationary satellites don't have an orbit high above the equator.
Questão 14
Questão
The orbital period for geostationary satellites is 24 hours.
Questão 15
Questão
Geostationary satellites travel with the same speed as the Earth rotates.
Questão 16
Questão
Monitoring satellites circle the Earth rapidly in low polar orbits.
Questão 17
Questão
The orbital period for monitoring satellites is 90 minutes.
Questão 18
Questão
Monitoring satellites are widely used in weather forecasting.