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NTA Abhyas
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Physics
List of top Physics Questions asked in NTA Abhyas
A particle of mass
$m$
and charge
$q$
is thrown from a point in space where uniform gravitational field & electric field are present. The particle (1) may follow a straight line (2) may follow a circular path (3) may follow a parabolic path
NTA Abhyas - 2020
NTA Abhyas
Physics
electrostatic potential and capacitance
When two bodies collide elastically. The force of interaction between them is
NTA Abhyas - 2020
NTA Abhyas
Physics
Elastic and inelastic collisions
The dimensional formula for entropy is
NTA Abhyas - 2020
NTA Abhyas
Physics
Dimensional Analysis
The dimensional formula for permittivity of free space
$\left(\left(\epsilon \right)_{0}\right)$
in the equation
$F=\frac{1}{4 \pi \epsilon _{0}}\frac{q_{1} q_{2}}{r^{2}}$
, where symbols have their usual meaning, is
NTA Abhyas - 2020
NTA Abhyas
Physics
Dimensional Analysis
A ball is dropped from height
$H$
on to a horizontal surface. If the coefficient of restitution is
$e$
then the total time after which it comes to rest is
NTA Abhyas - 2020
NTA Abhyas
Physics
Newtons Laws of Motion
Moment of inertia of a disc about diameter is
$I$
. Find the moment of inertia of disc about an axis perpendicular to its plane and passing through its rim.
NTA Abhyas - 2020
NTA Abhyas
Physics
Moment Of Inertia
In the figure shown, all surfaces are smooth. Acceleration of mass
$'4m'$
, when the system Is released from rest will be
NTA Abhyas - 2020
NTA Abhyas
Physics
laws of motion
If the temperature is raised by
$1K$
from
$300K$
, the percentage change in the speed of sound in the gaseous mixture is [
$R=8.314Jmol^{- 1}K^{- 1}$
]
NTA Abhyas - 2020
NTA Abhyas
Physics
Waves
For a particle of a purely rotating body,
$v=r\omega $
, so correct relation will be
NTA Abhyas - 2020
NTA Abhyas
Physics
System of Particles & Rotational Motion
For a particle moving in a straight line, the displacement of the particle at time
$t$
is given by
$S=t^{3}-6t^{2}+3t+7$
. The velocity of the particle when its acceleration zero is
NTA Abhyas - 2020
NTA Abhyas
Physics
Motion in a straight line
Digital circuits can be made with the repetitive use of
NTA Abhyas - 2020
NTA Abhyas
Physics
Semiconductor electronics: materials, devices and simple circuits