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. |
a container with square base of side a is filled upto a height H with a liquid.a hole is made at a height h from frees surface of water.with what acceleration container must be accelerated so that water doesnt come out? 1.g 2.g/2 3.2gH/2 4.2gh/a |
| Answer» a container with square base of side a is filled upto a height H with a liquid.a hole is made at a height h from frees surface of water.with what acceleration container must be accelerated so that water doesnt come out? 1.g 2.g/2 3.2gH/2 4.2gh/a | |
| 2. |
Three components of sinusoidal progressive waves travelling in the same direction along the same path having the same period, but with amplitudes are A, A/2 and A/3. The phase of the variation at any position x on their path at time t=0 are 0,−π/2 and π respectively. Find the amplitude and phase of the resultant wave |
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Answer» Three components of sinusoidal progressive waves travelling in the same direction along the same path having the same period, but with amplitudes are A, A/2 and A/3. The phase of the variation at any position x on their path at time t=0 are 0,−π/2 and π respectively. Find the amplitude and phase of the resultant wave |
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| 3. |
A deviation of 2∘ is produced in the yellow ray when prism of crown and flint glass are achromatically combined. Taking dispersive powers of crown and flint glass as 0.02 and 0.03 respectively and refractive index for yellow light for these glasses are 1.5 and 1.6 respectively. The refracting angles for crown glass prism will be ∘(in degree).(Round off to the Nearest Integer) |
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Answer» A deviation of 2∘ is produced in the yellow ray when prism of crown and flint glass are achromatically combined. Taking dispersive powers of crown and flint glass as 0.02 and 0.03 respectively and refractive index for yellow light for these glasses are 1.5 and 1.6 respectively. The refracting angles for crown glass prism will be (Round off to the Nearest Integer) |
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| 4. |
Let →a=12^i+n^j and |→a|=13, then the value of n is |
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Answer» Let →a=12^i+n^j and |→a|=13, then the value of n is |
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| 5. |
A rod of length 5 cm lies along the principal axis of the concave mirror of focal length 15cm in such a way that the end of the closer to the pole is 30cm away from it .then the length of the image i |
| Answer» A rod of length 5 cm lies along the principal axis of the concave mirror of focal length 15cm in such a way that the end of the closer to the pole is 30cm away from it .then the length of the image i | |
| 6. |
a boy whose weight is 60 kg on the surface of earth.at which height above the earth his weight becomes 30 kg |
| Answer» a boy whose weight is 60 kg on the surface of earth.at which height above the earth his weight becomes 30 kg | |
| 7. |
The earth’ssurface has a negative surface charge density of 10−9C m−2. The potential difference of 400 kV betweenthe top of the atmosphere and the surface results (due to the lowconductivity of the lower atmosphere) in a current of only 1800 Aover the entire globe. If there were no mechanism of sustainingatmospheric electric field, how much time (roughly) would be requiredto neutralise the earth’s surface? (This never happens inpractice because there is a mechanism to replenish electric charges,namely the continual thunderstorms and lightning in different partsof the globe). (Radius of earth = 6.37 × 106m.) |
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Answer» The earth’s |
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| 8. |
55. A small dipole is initially placed perpendicular to a constant electric field E and then released. If it is allowed to rotate it's centre find its angular velocity in term of its angular displacement moment of inertia of dipole about it's centre is I |
| Answer» 55. A small dipole is initially placed perpendicular to a constant electric field E and then released. If it is allowed to rotate it's centre find its angular velocity in term of its angular displacement moment of inertia of dipole about it's centre is I | |
| 9. |
A force is acting on a body of mass 3 kg kept on a rough horizontal surface. If a friction force of 40 N is required to keep the body at rest under the action of this external force. Then find the contact force acting on the body. (g=10 m/s2) |
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Answer» A force is acting on a body of mass 3 kg kept on a rough horizontal surface. If a friction force of 40 N is required to keep the body at rest under the action of this external force. Then find the contact force acting on the body. (g=10 m/s2) |
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| 10. |
A metal frame PQRS having resistance 2 Ω, where PQ=QR=RS=15 cm and resistance 2 Ω is moved with a speed of 5 cm s−1 in a uniform magnetic field B=2 T which is perpendicular to the plane of the frame as shown in figure. The frame is connected to a network of resistance as shown. Find the current induced in the frame. |
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Answer» A metal frame PQRS having resistance 2 Ω, where PQ=QR=RS=15 cm and resistance 2 Ω is moved with a speed of 5 cm s−1 in a uniform magnetic field B=2 T which is perpendicular to the plane of the frame as shown in figure. The frame is connected to a network of resistance as shown. Find the current induced in the frame. |
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| 11. |
A gun fires a shell and recoils horizontally. if the shell travels along the barrel with speed v, the ratio of speeds with which the gun recoils, if the barrel is (i) horizontal (ii) inclined at an angle of 30∘ with horizontal, is |
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Answer» A gun fires a shell and recoils horizontally. if the shell travels along the barrel with speed v, the ratio of speeds with which the gun recoils, if the barrel is (i) horizontal (ii) inclined at an angle of 30∘ with horizontal, is |
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| 12. |
A time dependent force F=6t acts on a particle of mass 1kg. If the particle starts from rest, the work done by the force during the first 1 sec will be |
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Answer» A time dependent force F=6t acts on a particle of mass 1kg. If the particle starts from rest, the work done by the force during the first 1 sec will be |
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| 13. |
An object is tossed vertically into the air with an initial velocity of 8 m/s. Using the sign convertion upwards as positive, how does the vertical component of the acceleration ay of the object (after leaving the hand) vary during the flight of the object? |
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Answer» An object is tossed vertically into the air with an initial velocity of 8 m/s. Using the sign convertion upwards as positive, how does the vertical component of the acceleration ay of the object (after leaving the hand) vary during the flight of the object? |
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| 14. |
The potential energy for a force field ¯F is given by ∪(x,y) = cos(x+y). The force acting on a particle at position given by coordinates (0, π/4) is |
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Answer» The potential energy for a force field ¯F is given by ∪(x,y) = cos(x+y). The force acting on a particle at position given by coordinates (0, π/4) is |
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| 15. |
11.All capacitors have 1micro farad capacitance each Calculate capacitance between X and Y |
| Answer» 11.All capacitors have 1micro farad capacitance each Calculate capacitance between X and Y | |
| 16. |
In a fission process, nucleus A divides into two nuclei B and C, their binding energies being Ea, Eb and Ec respectively. Then |
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Answer» In a fission process, nucleus A divides into two nuclei B and C, their binding energies being Ea, Eb and Ec respectively. Then |
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| 17. |
A rigid body of mass m and radius R rolls without slipping on a rough surface. A force F is acting on it at x distance from the center, as shown in the figure. Find the value of x so that the static friction is zero.a is linear acceleration, α is angular acceleration and Icom is the rotational inertia of the body about its COM. |
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Answer» A rigid body of mass m and radius R rolls without slipping on a rough surface. A force F is acting on it at x distance from the center, as shown in the figure. Find the value of x so that the static friction is zero. |
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| 18. |
A 60 kg body is pushed with just enough force to start it moving across a floor and the same force continues to act afterwards. The coefficients of static friction and sliding friction are 0.5 and 0.4 respectively. The acceleration of the body is (Take g=10 m/s2) |
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Answer» A 60 kg body is pushed with just enough force to start it moving across a floor and the same force continues to act afterwards. The coefficients of static friction and sliding friction are 0.5 and 0.4 respectively. The acceleration of the body is |
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| 19. |
Consider the circuit shown belowThe output pulse of 220 μs is produced by the monostable circuit, then the value of C is ____ nF. 20 |
Answer» Consider the circuit shown below![]() The output pulse of 220 μs is produced by the monostable circuit, then the value of C is ____ nF.
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| 20. |
The difference in angular momentum associated with the electron in two successive orbits of hydrogen atom is: |
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Answer» The difference in angular momentum associated with the electron in two successive orbits of hydrogen atom is: |
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| 21. |
Match the following:1. WAB I. 0 2. WBC II. −1500J3. WCA III. 1000J |
Answer» ![]() Match the following: 1. WAB I. 0 2. WBC II. −1500J 3. WCA III. 1000J |
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| 22. |
The equation for two waves obtained by two light sources are as given below: y1=A1sin3ωt, y2=A2cos (3ωt+π6). The value of phase difference at the time t is nπ, the value of n is_____ |
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Answer» The equation for two waves obtained by two light sources are as given below: y1=A1sin3ωt, y2=A2cos (3ωt+π6). The value of phase difference at the time t is nπ, the value of n is_____ |
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| 23. |
A current, i=3.36(1+2t)10−2 A increases at a steady rate in a long straight wire. A small circular loop of radius 10−3 m has its plane parallel to the wire and is placed at a distance of 1 m from the wire. The resistance of the loop is 8.4×10−4 Ω. Find the magnitude of induced current in the loop. |
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Answer» A current, i=3.36(1+2t)10−2 A increases at a steady rate in a long straight wire. A small circular loop of radius 10−3 m has its plane parallel to the wire and is placed at a distance of 1 m from the wire. The resistance of the loop is 8.4×10−4 Ω. Find the magnitude of induced current in the loop. |
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| 24. |
A particle moves from rest along a straight line under the action of constant force and travel a distance x in 1st 5 seconds then the distance travelled by it in next five seconds will be |
| Answer» A particle moves from rest along a straight line under the action of constant force and travel a distance x in 1st 5 seconds then the distance travelled by it in next five seconds will be | |
| 25. |
The equation of state of a gas is given by (P+aT2V)Vc=(RT+b), where a, b, c and R are constants. The isotherms can be represented by P=AVm−BVm , where A and B depend only on temperature then |
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Answer» The equation of state of a gas is given by (P+aT2V)Vc=(RT+b), where a, b, c and R are constants. The isotherms can be represented by P=AVm−BVm , where A and B depend only on temperature then |
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| 26. |
Explain the meaning of the statement 'electric charge of a body is quantized'. Why can one ignore qunatization of electric charge when dealing with macroscopic, i.e., large scale charges? |
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Answer» Explain the meaning of the statement 'electric charge of a body is quantized'. Why can one ignore qunatization of electric charge when dealing with macroscopic, i.e., large scale charges? |
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| 27. |
what is the difference between an ion and an atom? |
| Answer» what is the difference between an ion and an atom? | |
| 28. |
Two vertical plane mirrors are inclined at an angle of with each other.A ray of light travelling horizontally is reflected first from one mirror and thenfrom the other. The resultant deviation is |
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Answer» Two vertical plane mirrors are inclined at an angle of A ray of light travelling horizontally is reflected first from one mirror and then from the other. The resultant deviation is |
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| 29. |
The change in vapourisation of liquid at 500k and 1 atm. what will be the change in internal energy of 3 moles of liquid at same temperature? |
| Answer» The change in vapourisation of liquid at 500k and 1 atm. what will be the change in internal energy of 3 moles of liquid at same temperature? | |
| 30. |
A hollow wooden cylinder of height h, inner radius R and outer radius 2R is placed in a cylindrical container of radius 3R. When water is poured into the container, the minimum height H of the container for which cylinder can float inside freely is |
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Answer» A hollow wooden cylinder of height h, inner radius R and outer radius 2R is placed in a cylindrical container of radius 3R. When water is poured into the container, the minimum height H of the container for which cylinder can float inside freely is |
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| 31. |
The internal resistance of a cell of emf 2V is 0.1Ω. It’s connected to a resistance of 3.9Ω. The voltage across the cell will be |
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Answer» The internal resistance of a cell of emf 2V is 0.1Ω. It’s connected to a resistance of 3.9Ω. The voltage across the cell will be |
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| 32. |
what is an orer |
| Answer» what is an orer | |
| 33. |
Find the nature of the graph of the following quadratic equation in terms of which side it will open.I. y = x2 − 8xa. open upwardII. y = −2x2 + 3b. open downward III. y = x2 − 6x + 4c. open right d. open left |
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Answer» Find the nature of the graph of the following quadratic equation in terms of which side it will open.
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| 34. |
In a steam power plant, the steam enters the turbine at 2 MPa and 400∘C[h=3251kJ/kg,s=7.127kJ/kgK]. The condenser pressure is 10 kPa. The mean temperature of heat addition will be AtTsat=45.8∘hf=191.8kJ/kghg=2584.6kJ/kgsf=0.6491kJ/kgKsg=8.151kJ/kgK199.25 |
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Answer» In a steam power plant, the steam enters the turbine at 2 MPa and 400∘C[h=3251kJ/kg,s=7.127kJ/kgK]. The condenser pressure is 10 kPa. The mean temperature of heat addition will be AtTsat=45.8∘ hf=191.8kJ/kghg=2584.6kJ/kg sf=0.6491kJ/kgKsg=8.151kJ/kgK
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| 35. |
In the circuit shown in the figure, the input signal is vi(t)=5+3cosωtThe steady state output is expressed as v0(t)=P+Qcos(ωt−ϕ). If ωCR=2, the values of P and Q are |
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Answer» In the circuit shown in the figure, the input signal is vi(t)=5+3cosωt |
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| 36. |
The value of the integral ∫dx3sinx+4cosx(where C is integration constant) |
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Answer» The value of the integral ∫dx3sinx+4cosx |
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| 37. |
Why is chromium electroplated on various objects? |
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Answer» Why is chromium electroplated on various objects? |
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| 38. |
Which state of triply ionized Beryllium (Be+++) has the same orbital radius as that of the ground state of hydrogen? |
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Answer» Which state of triply ionized Beryllium (Be+++) has the same orbital radius as that of the ground state of hydrogen? |
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| 39. |
The current i in a coil varies with time t according to the graph shown below. Which of the following graphs, shows the induced emf (E) in the coil with time? [0.77 Mark] |
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Answer» The current i in a coil varies with time t according to the graph shown below. Which of the following graphs, shows the induced emf (E) in the coil with time? |
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| 40. |
Write the truth tablefor a NAND gate connected as given in Fig. 14.45.Hence identify theexact logic operation carried out by this circuit. |
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Answer» Write the truth table
Hence identify the |
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| 41. |
According to professor Einstein Light shows both particles and wave like behaviour but we know in vacuum sounds can't travel as their is no particles then what behaviour does light shows in vacuum? |
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Answer» According to professor Einstein Light shows both particles and wave like behaviour but we know in vacuum sounds can't travel as their is no particles then what behaviour does light shows in vacuum? |
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| 42. |
explain refraction through spherical len |
| Answer» explain refraction through spherical len | |
| 43. |
The coefficient of self inductance of a solenoid is 0.18 mH. If a rod of soft iron, of relative permeability 900, is inserted in it, the coefficient of self inductance will become - |
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Answer» The coefficient of self inductance of a solenoid is 0.18 mH. If a rod of soft iron, of relative permeability 900, is inserted in it, the coefficient of self inductance will become - |
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| 44. |
Given a number of capacitors labelled as 8 uF, 250 V. Find the minimum number of capacitors needed to get an arrangement equivalent to 16 uF, 1000 V. 4 16 32 64 |
| Answer» Given a number of capacitors labelled as 8 uF, 250 V. Find the minimum number of capacitors needed to get an arrangement equivalent to 16 uF, 1000 V. 4 16 32 64 | |
| 45. |
The PN junction diode is used as |
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Answer» The PN junction diode is used as |
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| 46. |
A solid sphere of mass 5 kg and radius 1 m is kept on a rough surface. A force F=30 N is acting at the top most point. Friction required for pure rolling is |
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Answer» A solid sphere of mass 5 kg and radius 1 m is kept on a rough surface. A force F=30 N is acting at the top most point. Friction required for pure rolling is |
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| 47. |
Let →v be a vector in the plane such that |→v−→i|=|→v−2→i|=|→v−→j|. Then |→v| lies in the interval |
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Answer» Let →v be a vector in the plane such that |→v−→i|=|→v−2→i|=|→v−→j|. Then |→v| lies in the interval |
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| 48. |
46.In uniform electric field E=10N/C as shown in figure find a)Va-Vb b), Vb-Vc |
| Answer» 46.In uniform electric field E=10N/C as shown in figure find a)Va-Vb b), Vb-Vc | |
| 49. |
According to the Snell's Law of Refraction: |
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Answer» According to the Snell's Law of Refraction: |
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| 50. |
Mr. X works in a store which sells tyres. One cold evening when Mr. X was working alone, he accidentally got locked in the basement where all the tyres were stored. Since no one could help him till the next morning, he wanted to somehow warm the basement. To do so he decided that he will burst the tyres which (filled with air), causing explosions, which he thought will release hot air, and keep him warm. Will Mr.X's idea work? |
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Answer» Mr. X works in a store which sells tyres. One cold evening when Mr. X was working alone, he accidentally got locked in the basement where all the tyres were stored. Since no one could help him till the next morning, he wanted to somehow warm the basement. To do so he decided that he will burst the tyres which (filled with air), causing explosions, which he thought will release hot air, and keep him warm. Will Mr.X's idea work? |
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