1
IIT-JEE 2010 Paper 2 Offline
Numerical
+3
-0

Image of an object approaching a convex mirror of radius of curvature 20 m along its optical axis is observed to move from $${{25} \over 3}$$ m to $${{50} \over 7}$$ m in 30 s. What is the speed of the object in km per hour?

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2
IIT-JEE 2010 Paper 2 Offline
Numerical
+3
-0

To determine the half-life of a radioactive element, a student plots a graph of $$\ln \left| {{{dN(t)} \over {dt}}} \right|$$ versus t. Here, $${{dN(t)} \over {dt}}$$ is the rate of radioactive decay at time t. If the number of radioactive nuclei of this element decreases by a factor of p after 4.16 years, the value of p is __________.

IIT-JEE 2010 Paper 2 Offline Physics - Atoms and Nuclei Question 18 English

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3
IIT-JEE 2010 Paper 2 Offline
Numerical
+3
-0

At time t = 0, a battery of 10 V is connected across points A and B in the given circuit. If the capacitors have no charge initially, at what time (in seconds) does the voltage across them becomes 4 V? (Take ln5 = 1.6, ln3 = 1.1)

IIT-JEE 2010 Paper 2 Offline Physics - Electromagnetic Induction Question 5 English

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4
IIT-JEE 2010 Paper 2 Offline
MCQ (Single Correct Answer)
+3
-1

The key feature of Bohr's theory of spectrum of hydrogen atom is the quantization of angular momentum when an electron is revolving around a proton. We will extend this to a general rotational motion to find quantized rotational energy of a diatomic molecule assuming it to be rigid. The rule to be applied is Bohr's quantization condition.

A diatomic molecule has moment of inertia I. By Bohr's quantization condition, its rotational energy in the nth level (n = 0 is not allowed) is

A
$${1 \over {{n^2}}}\left( {{{{h^2}} \over {8{\pi ^2}I}}} \right)$$
B
$${1 \over n}\left( {{{{h^2}} \over {8{\pi ^2}I}}} \right)$$
C
$$n\left( {{{{h^2}} \over {8{\pi ^2}I}}} \right)$$
D
$${n^2}\left( {{{{h^2}} \over {8{\pi ^2}I}}} \right)$$
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