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Page 1 BITSAT - Paper 2024 Solved Paper Physics 1. You measure two quantities as A = 1.0 m ± 0.2 m, B = 2.0 m ± 0.2 m. We should report correct value for vAB as A. 1.4 m ± 0.4 m B. 1.41 m ± 0.15 m C. 1.4 m ± 0.3 m D. 1.4 m ± 0.2 Ans. D Solution: 2. The dimensional formula of latent heat is: A. [M 0 LT -2 ] B. [MLT -2 ] C. [M 0 L 2 T -2 ] D. [ML 2 T -2 ] Page 2 BITSAT - Paper 2024 Solved Paper Physics 1. You measure two quantities as A = 1.0 m ± 0.2 m, B = 2.0 m ± 0.2 m. We should report correct value for vAB as A. 1.4 m ± 0.4 m B. 1.41 m ± 0.15 m C. 1.4 m ± 0.3 m D. 1.4 m ± 0.2 Ans. D Solution: 2. The dimensional formula of latent heat is: A. [M 0 LT -2 ] B. [MLT -2 ] C. [M 0 L 2 T -2 ] D. [ML 2 T -2 ] Ans. C 3. The dimensions of coefficient of self inductance are A. [ML 2 T -2 A -2 ] B. [ML 2 T -2 A -1 ] C. [MLT -2 A -2 ] D. [MLT -2 A -1 ] Ans. A 4. A particle is moving in a straight line. The variation of position ' x ' as a function of time ' t ' is given as x = (t 3 - 6t 2 + 20t + 15)m. The velocity of the body when its acceleration becomes zero is: A. 6 m/s B. 10 m/s C. 8 m/s D. 4 m/s Ans. C Solution: Page 3 BITSAT - Paper 2024 Solved Paper Physics 1. You measure two quantities as A = 1.0 m ± 0.2 m, B = 2.0 m ± 0.2 m. We should report correct value for vAB as A. 1.4 m ± 0.4 m B. 1.41 m ± 0.15 m C. 1.4 m ± 0.3 m D. 1.4 m ± 0.2 Ans. D Solution: 2. The dimensional formula of latent heat is: A. [M 0 LT -2 ] B. [MLT -2 ] C. [M 0 L 2 T -2 ] D. [ML 2 T -2 ] Ans. C 3. The dimensions of coefficient of self inductance are A. [ML 2 T -2 A -2 ] B. [ML 2 T -2 A -1 ] C. [MLT -2 A -2 ] D. [MLT -2 A -1 ] Ans. A 4. A particle is moving in a straight line. The variation of position ' x ' as a function of time ' t ' is given as x = (t 3 - 6t 2 + 20t + 15)m. The velocity of the body when its acceleration becomes zero is: A. 6 m/s B. 10 m/s C. 8 m/s D. 4 m/s Ans. C Solution: 5. The distance travelled by a particle starting from rest and moving with an acceleration 4/3 ms -2 , in the third second is: A. 6 m B. 4 m C. 10/3 m D. 19/3 m Ans. C Solution: Distance travelled in the nth second is given by 6. A projectile is projected with velocity of 40 m/s at an angle ? with the horizontal. If R be the horizontal range covered by the projectile and after t seconds, its inclination with horizontal becomes zero, then the value of cot ? is [Take, g = 10 m/s 2 ] A. R/20t 2 B. R/10t 2 C. 5R/t 2 Page 4 BITSAT - Paper 2024 Solved Paper Physics 1. You measure two quantities as A = 1.0 m ± 0.2 m, B = 2.0 m ± 0.2 m. We should report correct value for vAB as A. 1.4 m ± 0.4 m B. 1.41 m ± 0.15 m C. 1.4 m ± 0.3 m D. 1.4 m ± 0.2 Ans. D Solution: 2. The dimensional formula of latent heat is: A. [M 0 LT -2 ] B. [MLT -2 ] C. [M 0 L 2 T -2 ] D. [ML 2 T -2 ] Ans. C 3. The dimensions of coefficient of self inductance are A. [ML 2 T -2 A -2 ] B. [ML 2 T -2 A -1 ] C. [MLT -2 A -2 ] D. [MLT -2 A -1 ] Ans. A 4. A particle is moving in a straight line. The variation of position ' x ' as a function of time ' t ' is given as x = (t 3 - 6t 2 + 20t + 15)m. The velocity of the body when its acceleration becomes zero is: A. 6 m/s B. 10 m/s C. 8 m/s D. 4 m/s Ans. C Solution: 5. The distance travelled by a particle starting from rest and moving with an acceleration 4/3 ms -2 , in the third second is: A. 6 m B. 4 m C. 10/3 m D. 19/3 m Ans. C Solution: Distance travelled in the nth second is given by 6. A projectile is projected with velocity of 40 m/s at an angle ? with the horizontal. If R be the horizontal range covered by the projectile and after t seconds, its inclination with horizontal becomes zero, then the value of cot ? is [Take, g = 10 m/s 2 ] A. R/20t 2 B. R/10t 2 C. 5R/t 2 D. R/t 2 Ans. A Solution: At maximum height, inclination with horizontal becomes zero. Time (taken by) projectile to reach maximum height, 7. A rigid body rotates about a fixed axis with variable angular velocity equal to a - ßt, at the time t, where a,ß are constants. The angle through which it rotates before it stops is A. B. C. D. Ans. A Solution: Page 5 BITSAT - Paper 2024 Solved Paper Physics 1. You measure two quantities as A = 1.0 m ± 0.2 m, B = 2.0 m ± 0.2 m. We should report correct value for vAB as A. 1.4 m ± 0.4 m B. 1.41 m ± 0.15 m C. 1.4 m ± 0.3 m D. 1.4 m ± 0.2 Ans. D Solution: 2. The dimensional formula of latent heat is: A. [M 0 LT -2 ] B. [MLT -2 ] C. [M 0 L 2 T -2 ] D. [ML 2 T -2 ] Ans. C 3. The dimensions of coefficient of self inductance are A. [ML 2 T -2 A -2 ] B. [ML 2 T -2 A -1 ] C. [MLT -2 A -2 ] D. [MLT -2 A -1 ] Ans. A 4. A particle is moving in a straight line. The variation of position ' x ' as a function of time ' t ' is given as x = (t 3 - 6t 2 + 20t + 15)m. The velocity of the body when its acceleration becomes zero is: A. 6 m/s B. 10 m/s C. 8 m/s D. 4 m/s Ans. C Solution: 5. The distance travelled by a particle starting from rest and moving with an acceleration 4/3 ms -2 , in the third second is: A. 6 m B. 4 m C. 10/3 m D. 19/3 m Ans. C Solution: Distance travelled in the nth second is given by 6. A projectile is projected with velocity of 40 m/s at an angle ? with the horizontal. If R be the horizontal range covered by the projectile and after t seconds, its inclination with horizontal becomes zero, then the value of cot ? is [Take, g = 10 m/s 2 ] A. R/20t 2 B. R/10t 2 C. 5R/t 2 D. R/t 2 Ans. A Solution: At maximum height, inclination with horizontal becomes zero. Time (taken by) projectile to reach maximum height, 7. A rigid body rotates about a fixed axis with variable angular velocity equal to a - ßt, at the time t, where a,ß are constants. The angle through which it rotates before it stops is A. B. C. D. Ans. A Solution: 8. The range of the projectile projected at an angle of 15 ° with horizontal is 50 m. If the projectile is projected with same velocity at an angle of 45 ° with horizontal, then its range will be: A. 50 m B. 50v2 m C. 100 m D. 100v2 m Ans. C Solution: Range of projectile 9. A particle of mass m is projected with a velocity ' u ' making an angle of 30 ° with the horizontal. The magnitude of angular momentum of the projectile about the point of projection when the particle is at its maximum height h is: A. B.Read More
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