1
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
A particle is acted upon by a force of constant magnitude which is always perpendicular to the velocity of the particle, the motion of the particles takes place in a plane. It follows that
A
its kinetic energy is constant
B
is acceleration is constant
C
its velocity is constant
D
it moves in a straight line
2
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
A force $$\overrightarrow F = \left( {5\overrightarrow i + 3\overrightarrow j + 2\overrightarrow k } \right)N$$ is applied over a particle which displaces it from its origin to the point $$\overrightarrow r = \left( {2\overrightarrow i - \overrightarrow j } \right)m.$$ The work done on the particle in joules is
A
$$+10$$
B
$$+7$$
C
$$-7$$
D
$$+13$$
3
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
A satellite of mass $$m$$ revolves around the earth of radius $$R$$ at a height $$x$$ from its surface. If $$g$$ is the acceleration due to gravity on the surface of the earth, the orbital speed of the satellite is
A
$${{g{R^2}} \over {R + x}}$$
B
$${{gR} \over {R - x}}$$
C
$${gx}$$
D
$${\left( {{{g{R^2}} \over {R + x}}} \right)^{1/2}}$$
4
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
Spherical balls of radius $$R$$ are falling in a viscous fluid of viscosity $$\eta $$ with a velocity $$v.$$ The retarding viscous force acting on the spherical ball is
A
inversely proportional to both radius $$R$$ and velocity $$v$$
B
directly proportional to both radius $$R$$ and velocity $$v$$
C
directly proportional to $$R$$ but inversely proportional to $$v$$
D
inversely proportional to $$R,$$ but directly proportional to velocity $$v$$

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