1
AIEEE 2002
MCQ (Single Correct Answer)
+4
-1
Change Language
When forces $${F_1},\,\,{F_2},\,\,{F_3}$$ are acting on a particle of mass $$m$$ such that $${F_2}$$ and $${F_3}$$ are mutually perpendicular, then the particle remains stationary. If the force $${F_1}$$ is now removed then the acceleration of the particle is
A
$${F_1}/m$$
B
$${F_2}{F_3}/m{F_1}$$
C
$$\left( {F{}_2 - {F_3}} \right)/m$$
D
$${F_2}/m$$
2
AIEEE 2002
MCQ (Single Correct Answer)
+4
-1
Change Language
Two forces are such that the sum of their magnitudes is $$18$$ $$N$$ and their resultant is $$12$$ $$N$$ which is perpendicular to the smaller force. Then the magnitudes of the forces are
A
$$12N,$$ $$6N$$
B
$$13N,$$ $$5N$$
C
$$10N,$$ $$8N$$
D
$$16N$$, $$2N.$$
3
AIEEE 2002
MCQ (Single Correct Answer)
+4
-1
Change Language
A light string passing over a smooth light pulley connects two blocks of masses $${m_1}$$ and $${m_2}$$ (vertically). If the acceleration of the system is $$g/8$$, then the ratio of the masses is
A
$$8:1$$
B
$$9:7$$
C
$$4:3$$
D
$$5:3$$
4
AIEEE 2002
MCQ (Single Correct Answer)
+4
-1
Change Language
Speeds of two identical cars are $$u $$ and $$4$$$$u $$ at the specific instant. The ratio of the respective distances in which the two cars are stopped from that instant is :
A
$$1:1$$
B
$$1:4$$
C
$$1:8$$
D
$$1:16$$
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