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19.77ms^{-2}
199.10ms^{-2}
9.77ms^{-2}
100.7ms^{-2}
14.314ms^{-2}
24.134ms^{-2}
10.314ms^{-2}
4.34ms^{-2}
gR^2/(R+h)2(gR2)/(R+h)2
GR/(R+h)2
GR/(R+h^2)2
GR/(R^2+h)2
Galilio’s telescope
Ballistic pendulum
Newton’s balance
Cavendish balance
The passer-by is stationery relative to the passenger
Both observers are in motion relative to each other
The passenger is in motion relative to the passer-by
The passer-by is in motion relative to the passenger
Any reference frame moving at constant velocity with respect to an inerial refernce frame is also inertial
In non-inertial reference frames the motion of objects depend only on the interactions of constituent particles among themselves
If the coordinate axes of a reference frame attached to an object remain fixed in space then the object is at rest
Laws of physics are invariant in inertial reference frames
MLT−2
ML2T−3
ML2T−2
M2L2T−3
100 N at 110o
110 N at 50o
110 N at 100o
100 N at 50o
324
90
15
25
Answer option 1
Answer option 2
Answer option 3
Answer option 4
Horoscope
Stetoscope
Gyroscope
Spinoscope
3.03
2.25
3.06
2.02
1.35
1.50
2.04
3.02
Option 1
Option 2
Option 3
Option 4