MCQ
Gravitational mass is proportional to gravitational
  • A
    Field
  • B
    Force
  • C
    Intensity
  • All of these

Answer

Correct option: D.
All of these
d
(d)

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

A wire of length $30\,cm$, stretched between rigid supports, has it's $n^{\text {th}}$ and $(n+1)^{\text {th}}$ harmonics at $400\,Hz$ and $450\; Hz$, respectively. If tension in the string is $2700\,N$, it's linear mass density is.........$kg/m$.
In the diagrams $(i)$ to $(iv)$ of variation of volume with changing pressure is shown. A gas is taken along the path $ABCD. $ The change in internal energy of the gas will be
A body projected along a frictionless inclined plane of angle of inclination $30^o$ covers a distance of $40\, m$ along the plane. If the body is projected with the same speed at angle of $30^o$ with the ground, it will have a range of : (Take $g = 10\, m/s^2$)
If the ratio of amplitude of wave is $2 : 1$, then the ratio of maximum and minimum intensity is
An automobile engine develops $100\ kW$ when rotating at a speed of $1800\ rev/min$.  What torque does it deliver .......... $N-m$
The distribution of relative intensity $I (\lambda)$ of blackbody radiation from a solid  object versus the wavelength $\lambda$ is shown in the figure. If the Wien displacement law  onstant is $2.9 × 10^{-3}\  mK$, what is the approximate temperature of the object ....... $K$
The fundamental frequency is n of both open end of argon pipe. Keep in vertical and dip in water half length of tubes. So it will full with half water the fundamental frequency of air column.
An object is located at $2\, km$ beneath the surface of the water. If the fractional compression $\frac{\Delta V }{ V }$ is $1.36\, \%,$ the ratio of hydraulic stress to the corresponding hydraulic strain will be ......... . [Given : density of water is $1000\, kg m ^{-3}$ and $\left. g =9.8 \,ms ^{-2} .\right]$
The magnitude of displacement of a particle moving in a circle of radius $a$ with constant angular speed $\omega$ varies with time $t$ as
Let kinetic energy of a satellite is $x$, then its time of revolution $T$ is proportional to ..............