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JIPMER 2017 Physics Question paper with answer key pdf conducted on June 4, 2017 is available for download. The exam was successfully organized by Jawaharlal Institute of Postgraduate Medical Education and Research (JIPMER). The question paper comprised a total of 60.0 questions.
JIPMER 2017 Physics Question Paper with Answer Key PDF in English
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JIPMER Questions
1. Out of soft iron and steel which has more coercivity, less retentivity.
Out of soft iron and steel which has more coercivity, less retentivity.
- iron
- steel
- both are equal
- can't say
2. When a light ray enters from oil to glass on oil glass interface. Velocity of light changes by a factor of: \(\left(\mu_{oil}=2,\,\mu_{glass}=\frac{3}{2}\right)\)
When a light ray enters from oil to glass on oil glass interface. Velocity of light changes by a factor of: \(\left(\mu_{oil}=2,\,\mu_{glass}=\frac{3}{2}\right)\)
- \(\frac{4}{3}\)
- \(\frac{1}{2}\)
- 3
- 1
3. Binomial nomenclature was first introduced by
Binomial nomenclature was first introduced by
- Carolus linnaeus
- Ernst Haeckel
- Gaspard Bauhin
- John Ray.
4. A convex lens $'A'$ of focal length $20\, cm$ and a concave lens $'B'$ of focal length $5\, cm$ are kept along the same axis with a distance $'d'$ between them. If a parallel beam of light falling on $'A'$ leaves $'B'$ as a parallel beam, then the distance $'d'$ in cm will be :
A convex lens $'A'$ of focal length $20\, cm$ and a concave lens $'B'$ of focal length $5\, cm$ are kept along the same axis with a distance $'d'$ between them. If a parallel beam of light falling on $'A'$ leaves $'B'$ as a parallel beam, then the distance $'d'$ in cm will be :
- 25
- 15
- 50
- 30
5. Two putty balls of equal mass moving with equal velocity in mutually perpendicular directions, stick together after collision. If the balls were initially moving with a velocity of $45\sqrt{2}$ m/sec each, the velocity of their combined mass after collision is (in m/sec).
Two putty balls of equal mass moving with equal velocity in mutually perpendicular directions, stick together after collision. If the balls were initially moving with a velocity of $45\sqrt{2}$ m/sec each, the velocity of their combined mass after collision is (in m/sec).
- \(45\sqrt{2}\)
- 45
- 90
- $22.5\sqrt{2}$
6. If a ball of mass 0.1 kg hits the ground from the height of 20m and bounce back to the same height then find out the force exerted on the ball if the time of impact is 0.04 sec.
(g = 10 m/s)
If a ball of mass 0.1 kg hits the ground from the height of 20m and bounce back to the same height then find out the force exerted on the ball if the time of impact is 0.04 sec.
(g = 10 m/s)
- -100N
- -10N
- -1N
- None of these
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