1
JEE Advanced 2014 Paper 2 Offline
MCQ (Single Correct Answer)
+3
-1
A tennis ball is dropped on a horizontal smooth surface. It bounces back to its original position after hitting the surface. The force on the ball during the collision is proportional to the length of compression of the ball. Which one of the following sketches describes the variation of its kinetic energy K with time t most appropriately? The figures are only illustrative and not to the scale.
A
JEE Advanced 2014 Paper 2 Offline Physics - Work Power & Energy Question 26 English Option 1
B
JEE Advanced 2014 Paper 2 Offline Physics - Work Power & Energy Question 26 English Option 2
C
JEE Advanced 2014 Paper 2 Offline Physics - Work Power & Energy Question 26 English Option 3
D
JEE Advanced 2014 Paper 2 Offline Physics - Work Power & Energy Question 26 English Option 4
2
JEE Advanced 2014 Paper 2 Offline
MCQ (Single Correct Answer)
+3
-1

If $$\lambda$$Cu is the wavelength of K$$\alpha$$ X-ray line of copper (atomic number 29) and $$\lambda$$Mo is the wavelength of the K$$\alpha$$ X-ray line of molybdenum (atomic number 42), then the ratio $$\lambda$$Cu/$$\lambda$$Mo is close to

A
1.99
B
2.14
C
0.50
D
0.48
3
JEE Advanced 2014 Paper 2 Offline
MCQ (Single Correct Answer)
+3
-1

A metal surface is illuminated by light of two different wavelengths 248 nm and 310 nm. The maximum speeds of the photoelectrons corresponding to these wavelengths are u1 and u2, respectively. If the ratio u1 : u2 = 2 : 1 and hc = 1240 eV nm, the work function of the metal is nearly

A
3.7 eV
B
3.2 eV
C
2.8 eV
D
2.5 eV
4
JEE Advanced 2014 Paper 2 Offline
MCQ (Single Correct Answer)
+3
-1

During an experiment with a metre bridge, the galvanometer shall a null point when the jockey is pressed at 40.0 cm using a standard resistance of 90$$\Omega$$, as shown in the figure. The least count of the scale used in the meter bridge is 1 mm. The unknown resistance is

JEE Advanced 2014 Paper 2 Offline Physics - Current Electricity Question 16 English

A
60 $$\pm$$ 0.15 $$\Omega$$
B
135 $$\pm$$ 0.56 $$\Omega$$
C
60 $$\pm$$ 0.25 $$\Omega$$
D
135 $$\pm$$ 0.23 $$\Omega$$
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