1
NEET 2016 Phase 1
MCQ (Single Correct Answer)
+4
-1
Change Language
A uniform rope of length L and mass m1 hangs vertically from a rigid support. A block of mass m2 is attached to the free end of the rope. A transverse pulse of wavelength $$\lambda $$1 is produced at the lower end of the rope. The wavelength of the pulse when it reaches the top of the rope is $$\lambda $$2. The ratio $$\lambda $$2/$$\lambda $$1 is
A
$$\sqrt {{{{m_2}} \over {{m_1}}}} $$
B
$$\sqrt {{{{m_1} + {m_2}} \over {{m_1}}}} $$
C
$$\sqrt {{{{m_1}} \over {{m_2}}}} $$
D
$$\sqrt {{{{m_1} + {m_2}} \over {{m_2}}}} $$
2
NEET 2016 Phase 1
MCQ (Single Correct Answer)
+4
-1
Change Language
If the velocity of a particle is v = At + Bt2, where A and B are constants, then the distance travelled by it between 1 s and 2 s is
A
$${3 \over 2}A + {7 \over 3}B$$
B
$${A \over 2} + {B \over 3}$$
C
$${3 \over 2}A + 4B$$
D
$$3A + 7B$$
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