This section includes 7 InterviewSolutions, each offering curated multiple-choice questions to sharpen your Current Affairs knowledge and support exam preparation. Choose a topic below to get started.
| 1. |
What is thermal coefficient of resistance or resistivity |
| Answer» What is thermal coefficient of resistance or resistivity | |
| 2. |
A wedge of mass M has one face making an angle α with horizontal and is resting on a smooth rigid floor. A particle of mass ′m′ hits the inclined face of the wedge with horizontal velocity v0. It is observed that the particle rebounds in vertical direction after impact. Calculate the speed of particle after impact. [Neglect friction between particle and the wedge and take M=2m,v0=10 m/s,tanα=2,g=10 m/s2.] |
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Answer» A wedge of mass M has one face making an angle α with horizontal and is resting on a smooth rigid floor. A particle of mass ′m′ hits the inclined face of the wedge with horizontal velocity v0. It is observed that the particle rebounds in vertical direction after impact. Calculate the speed of particle after impact. |
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| 3. |
A manometer connected to a closed tap reads 3.5×105 N/m2. When the valve is opened, the reading of the manometer falls to 3.0×105 N/m2. Then, the velocity of flow of water is:- |
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Answer» A manometer connected to a closed tap reads 3.5×105 N/m2. When the valve is opened, the reading of the manometer falls to 3.0×105 N/m2. Then, the velocity of flow of water is:- |
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| 4. |
What is meant by specific heat capacity? How will you prove experimentally that different substances have different specific heat capacities? |
| Answer» What is meant by specific heat capacity? How will you prove experimentally that different substances have different specific heat capacities? | |
| 5. |
The ratio of terminal velocities of two water drops while falling toward the earth surface is 4:9 . Determine the ratio of their radii. |
| Answer» The ratio of terminal velocities of two water drops while falling toward the earth surface is 4:9 . Determine the ratio of their radii. | |
| 6. |
A constant force 10 N acts on a ball of mass 2 kg for 2 s . Then another force 18 N acts on the same ball for 109 second. If ball is initially at rest, then find the total work done. |
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Answer» A constant force 10 N acts on a ball of mass 2 kg for 2 s . Then another force 18 N acts on the same ball for 109 second. If ball is initially at rest, then find the total work done. |
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| 7. |
If the momentum of a body increases by 0.01%, its kinetic energy will increase by |
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Answer» If the momentum of a body increases by 0.01%, its kinetic energy will increase by |
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| 8. |
A short circuited coil is placed in a time varying magnetic field.Electrical power is dissipated due to the current induced in the coil.If the number of turns were to be quadrupled and wire radius halved,the electrical power dissipated would be 1=halved 2=same 3=doubled 4=quadrupled |
| Answer» A short circuited coil is placed in a time varying magnetic field.Electrical power is dissipated due to the current induced in the coil.If the number of turns were to be quadrupled and wire radius halved,the electrical power dissipated would be 1=halved 2=same 3=doubled 4=quadrupled | |
| 9. |
A string of length L vibrates with a frequency of 7.5 Hz to form a standing wave with three antinodes as shown below. What is the oscillating frequency of this string, if it produces the standing wave pattern shown below? |
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Answer» A string of length L vibrates with a frequency of 7.5 Hz to form a standing wave with three antinodes as shown below. |
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| 10. |
In order to raise a mass of 100 kg, a man of mass 60 kg fastens a rope to it and passes the rope over a smooth pulley. He climbs the rope with acceleration 5 g4 relative to the rope. The tension in the rope is (take g = 10 ms−2) |
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Answer» In order to raise a mass of 100 kg, a man of mass 60 kg fastens a rope to it and passes the rope over a smooth pulley. He climbs the rope with acceleration 5 g4 relative to the rope. The tension in the rope is (take g = 10 ms−2) |
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| 11. |
Which of the following expression is true for surface tension? |
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Answer» Which of the following expression is true for surface tension? |
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| 12. |
A gas occupies 150 cm3 at 57.find temperature of gas if volume triples at constant pressure |
| Answer» A gas occupies 150 cm3 at 57.find temperature of gas if volume triples at constant pressure | |
| 13. |
202 If the period of oscillation of particle performing SHM is 8s. Then the frequency of its kinetic energy will be 1. 0.5 /s 2. 0.25 /s 3. 1 /s 4. 2 /s |
| Answer» 202 If the period of oscillation of particle performing SHM is 8s. Then the frequency of its kinetic energy will be 1. 0.5 /s 2. 0.25 /s 3. 1 /s 4. 2 /s | |
| 14. |
nta coil having uniform magnetic moment 15 Am2 placed in auniform magnetic field of 2T in the horizontal direction exists such that initially the axis of the coil is in the direction of the field .if the coil is rotated by45 and the moment of inertia of the coil is 0.5 kgm2 then the angular speed aquired by the coil isn |
| Answer» nta coil having uniform magnetic moment 15 Am2 placed in auniform magnetic field of 2T in the horizontal direction exists such that initially the axis of the coil is in the direction of the field .if the coil is rotated by45 and the moment of inertia of the coil is 0.5 kgm2 then the angular speed aquired by the coil isn | |
| 15. |
What is the maximum number of emission lines obtained when excited electrons of a hydrogen atom jumps from n = 5 drop to ground state?A. 10B. 5C. 12D. 15 |
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Answer» What is the maximum number of emission lines obtained when excited electrons of a hydrogen atom jumps from n = 5 drop to ground state? A. 10 B. 5 C. 12 D. 15 |
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| 16. |
Three charges 4μC each are kept at the vertices of an equilateral triangle of side 9 cm. The magnitude of force on one of the charges is |
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Answer» Three charges 4μC each are kept at the vertices of an equilateral triangle of side 9 cm. The magnitude of force on one of the charges is |
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| 17. |
19. Find the unit digit of the expression 216 raised to the power 1000 x 625 raised to the power2000 x 514 raised to the power3000c |
| Answer» 19. Find the unit digit of the expression 216 raised to the power 1000 x 625 raised to the power2000 x 514 raised to the power3000c | |
| 18. |
In a given R-L A.C circuit, if peak voltage of the source is 10 V, and peak voltage across resistance is 6 V, then what is the voltage across inductor when voltage the across resistance is 3V? (√(3)=1.732) |
Answer» In a given R-L A.C circuit, if peak voltage of the source is 10 V, and peak voltage across resistance is 6 V, then what is the voltage across inductor when voltage the across resistance is 3V? (√(3)=1.732)![]() |
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| 19. |
In figure, the block moves downwards with velocity u1, the wedge moves rightwards with velocity u2. The correct relation between u1 and u2 is |
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Answer» In figure, the block moves downwards with velocity u1, the wedge moves rightwards with velocity u2. The correct relation between u1 and u2 is |
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| 20. |
Two spherical balls A and B are connected by the massless rod. The masses of ball A and B are 2 kg and 5 kg. Find the moment of inertia of the system about the axis passing perpendicular to the length of rod as shown in figure bellow. |
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Answer» Two spherical balls A and B are connected by the massless rod. The masses of ball A and B are 2 kg and 5 kg. Find the moment of inertia of the system about the axis passing perpendicular to the length of rod as shown in figure bellow. |
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| 21. |
The equivalent resistance between points A and B is: |
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Answer» The equivalent resistance between points A and B is: |
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| 22. |
If magnetic field strength at the center of a hydrogen atom caused by an electron moving along the first Bohr orbit is x2 T. The value of x nearly is (integer only) |
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Answer» If magnetic field strength at the center of a hydrogen atom caused by an electron moving along the first Bohr orbit is x2 T. The value of x nearly is |
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| 23. |
A projectile is projected at an angle theta with the horizontal. Find the time when the velocity becomes perpendicular to the initial velocity. |
| Answer» A projectile is projected at an angle theta with the horizontal. Find the time when the velocity becomes perpendicular to the initial velocity. | |
| 24. |
A projectile is thrown at an angle theta with the vertical it reaches the maximum height D. The time of flight of projectile |
| Answer» A projectile is thrown at an angle theta with the vertical it reaches the maximum height D. The time of flight of projectile | |
| 25. |
An ideal liquid flowing through a pipe A of cross-section 0.2 m2 with velocity 10 m/s enters a T - junction. One side of the T -junction B has cross-section area 0.1 m2 and the other side C has cross-section area 0.05 m2. If the velocity of water in C is 15 m/s, then in B the velocity is |
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Answer» An ideal liquid flowing through a pipe A of cross-section 0.2 m2 with velocity 10 m/s enters a T - junction. One side of the T -junction B has cross-section area 0.1 m2 and the other side C has cross-section area 0.05 m2. If the velocity of water in C is 15 m/s, then in B the velocity is |
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| 26. |
An explosion blows a rock into three parts. Two parts go off at right angles to each other. These two are, first part of mass 1 kg moving with a velocity of 12 ms−1 and 2 kg second part moving with a velocity of 8 ms−1. If the third part moves with 4 ms−1, its mass would be |
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Answer» An explosion blows a rock into three parts. Two parts go off at right angles to each other. These two are, first part of mass 1 kg moving with a velocity of 12 ms−1 and 2 kg second part moving with a velocity of 8 ms−1. If the third part moves with 4 ms−1, its mass would be |
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| 27. |
A point dipole →p=−p0^x kept at the origin. The potential and electric field due to this dipole on the y−axis at a distance d are, respectively :(Take V=0 at infinity) |
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Answer» A point dipole →p=−p0^x kept at the origin. The potential and electric field due to this dipole on the y−axis at a distance d are, respectively : |
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| 28. |
A monochromatic light of λ=6000 ˚A is incident on the slits. The interference pattern is observed on a screen and central maxima is formed at point O. A thin glass plate of thickness 0.4 μm and refractive index 1.5 is placed in front of one of the slits. If the intensity at point O is I0 initially, what will be the intensity at O after placing the glass plate? |
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Answer» A monochromatic light of λ=6000 ˚A is incident on the slits. The interference pattern is observed on a screen and central maxima is formed at point O. A thin glass plate of thickness 0.4 μm and refractive index 1.5 is placed in front of one of the slits. If the intensity at point O is I0 initially, what will be the intensity at O after placing the glass plate? |
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| 29. |
Two identical trusses support a load of 100 N as shown in the figure. The length of each truss is 1.0 m, cross - sectional area is 200 mm^2; Young's modulus E = 200 GPa. The force in the truss AB (in N) is |
Answer» Two identical trusses support a load of 100 N as shown in the figure. The length of each truss is 1.0 m, cross - sectional area is 200 mm^2; Young's modulus E = 200 GPa. The force in the truss AB (in N) is![]() |
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| 30. |
A thermodynamic system undergoes a cyclic process as shown in the figure. The cycle consists of two closed loops. Over one complete cycle, the system performs |
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Answer» A thermodynamic system undergoes a cyclic process as shown in the figure. The cycle consists of two closed loops. Over one complete cycle, the system performs
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| 31. |
A body of mass m moving with a velocity v in the x-direction collides with a body of mass M moving with a velocity V in the y-direction. They stick together during the collision. Choose the correct statement/statements. |
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Answer» A body of mass m moving with a velocity v in the x-direction collides with a body of mass M moving with a velocity V in the y-direction. They stick together during the collision. Choose the correct statement/statements. |
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| 32. |
A body is traveling in a straight line. It moves AB that is 5 m towards the east, BC that is 4 m towards north-east while making 30o with north and CD that is 7 m in the west direction. Calculate the resultant displacement. [2 MARKS] |
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Answer» A body is traveling in a straight line. It moves AB that is 5 m towards the east, BC that is 4 m towards north-east while making 30o with north and CD that is 7 m in the west direction. Calculate the resultant displacement. [2 MARKS] |
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| 33. |
A bar magnet of magnetic dipole moment 10 Am^2 is in stable equilibrium the work done to rotate the magnet through 60 degree is l? The magnetic field is 0.2T |
| Answer» A bar magnet of magnetic dipole moment 10 Am^2 is in stable equilibrium the work done to rotate the magnet through 60 degree is l? The magnetic field is 0.2T | |
| 34. |
Find →A×→B, if →A=^i+2^j−4^k and →B=2^i−^j+2^k. |
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Answer» Find →A×→B, if →A=^i+2^j−4^k and →B=2^i−^j+2^k. |
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| 35. |
13. How to find Kc if degree of dissociation is not given? |
| Answer» 13. How to find Kc if degree of dissociation is not given? | |
| 36. |
47. A block of mass m is attached to a lower end of spring which is fixed with spring constant k and released find maximum extension in string |
| Answer» 47. A block of mass m is attached to a lower end of spring which is fixed with spring constant k and released find maximum extension in string | |
| 37. |
how-the-nucleus-provides-centripetal-force? |
| Answer» how-the-nucleus-provides-centripetal-force? | |
| 38. |
During the mean life of a radioactive element, the fraction that disintegrates is- |
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Answer» During the mean life of a radioactive element, the fraction that disintegrates is- |
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| 39. |
A charged particle moves in a uniform magnetic field perpendicular to it, with a radius of curvature 4 cm. On passing through a metallic sheet, it loses half of its kinetic energy. Then, the radius of curvature of the particle is |
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Answer» A charged particle moves in a uniform magnetic field perpendicular to it, with a radius of curvature 4 cm. On passing through a metallic sheet, it loses half of its kinetic energy. Then, the radius of curvature of the particle is |
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| 40. |
An aluminium rod has a breaking strain of 0.2% the minimum cross sectionall area of the rod in square meter in order to support a load of 10power4N is if youngs modulls is 7×10power9 N/square metres |
| Answer» An aluminium rod has a breaking strain of 0.2% the minimum cross sectionall area of the rod in square meter in order to support a load of 10power4N is if youngs modulls is 7×10power9 N/square metres | |
| 41. |
An electron moves along the line PQ which lies in the same plane as a circular loop of conducting wire, as shown in Fig. 25.5. What will be the direction of the induced current, if any, in the loop ? |
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Answer» An electron moves along the line PQ which lies in the same plane as a circular loop of conducting wire, as shown in Fig. 25.5. What will be the direction of the induced current, if any, in the loop ? |
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| 42. |
Which set of quantum numbers is possible for the last electron of Mg+ ion? |
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Answer» Which set of quantum numbers is possible for the last electron of Mg+ ion? |
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| 43. |
If the kinetic energy of a proton gets doubled, then the de broglie wavelengths associated with it change by a factor |
| Answer» If the kinetic energy of a proton gets doubled, then the de broglie wavelengths associated with it change by a factor | |
| 44. |
On the x−axis at a distance x from the origin, the gravitational field due to a mass distribution is given by Ax(x2+a2)3/2 in the x−direction. The magnitude of gravitational potential on the x− axis at a distance x, taking its value to be zero at infinity, is |
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Answer» On the x−axis at a distance x from the origin, the gravitational field due to a mass distribution is given by Ax(x2+a2)3/2 in the x−direction. The magnitude of gravitational potential on the x− axis at a distance x, taking its value to be zero at infinity, is |
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| 45. |
Two rods of same mass and same length l0 but having different coefficient of expansions α and 3α are joined at P(see figure). System is placed on frictionless surface. If temperature of whole system is changed by ΔT, the displacement of junction point is |
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Answer» Two rods of same mass and same length l0 but having different coefficient of expansions α and 3α are joined at P(see figure). System is placed on frictionless surface. If temperature of whole system is changed by ΔT, the displacement of junction point is |
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| 46. |
In identical mercury droplets charged to the same potential V coalesce to form a single bigger drop. The potential of new drop will be |
| Answer» In identical mercury droplets charged to the same potential V coalesce to form a single bigger drop. The potential of new drop will be | |
| 47. |
9. How can an object have variable velocity with constant speed when exhibiting non uniform acceleration |
| Answer» 9. How can an object have variable velocity with constant speed when exhibiting non uniform acceleration | |
| 48. |
does the shield that is developed by the inner electrons except the valence electrons cover the nucleus in a 3 dimensional plane? |
| Answer» does the shield that is developed by the inner electrons except the valence electrons cover the nucleus in a 3 dimensional plane? | |
| 49. |
Calculate the volume of O2 are present in 1L air conditioning 80% volume of O2 at STP? |
| Answer» Calculate the volume of O2 are present in 1L air conditioning 80% volume of O2 at STP? | |
| 50. |
When a metal is irradiated by monochromatic light, the maximum kinetic energy of the photo-electrons is 1.2eV. If frequency of the light is increased 50% then maximum kinetic energy of photo-electron is 36eV Evaluate the workfunction of the metal. |
| Answer» When a metal is irradiated by monochromatic light, the maximum kinetic energy of the photo-electrons is 1.2eV. If frequency of the light is increased 50% then maximum kinetic energy of photo-electron is 36eV Evaluate the workfunction of the metal. | |