Physics Questions

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A particle executing simple harmonic oscillation has an amplitude 14cm and time period 1 6sec Calculate the time taken by the particle to travel a distance 7 5cm away from the mean position Ans 0 161 sec
Physics
Simple harmonic motion
A particle executing simple harmonic oscillation has an amplitude 14cm and time period 1 6sec Calculate the time taken by the particle to travel a distance 7 5cm away from the mean position Ans 0 161 sec
combination is in column II are arranged parallel to each other as shown in column I and the number Column II Column I 1 1 LETJ B wwwwwwwm 30 2a 2x 30 p 2 q 3 r 4 s
Physics
Geometrical Optics
combination is in column II are arranged parallel to each other as shown in column I and the number Column II Column I 1 1 LETJ B wwwwwwwm 30 2a 2x 30 p 2 q 3 r 4 s
Two billiard balls of same size and mass are in contact on a table A third billiard ball of same size a mass strikes them symmetrically and come to rest after impact Coefficient of restitution betweent balls is 1 2 mc 2 3 3 4
Physics
Kinematics
Two billiard balls of same size and mass are in contact on a table A third billiard ball of same size a mass strikes them symmetrically and come to rest after impact Coefficient of restitution betweent balls is 1 2 mc 2 3 3 4
101 In the figure shown a small object is released from the position A on a smooth track When the object reaches at B then normal reaction on it by the track is 3h 1 mg 3 2mg and Cylindrical surface 2 4 2mg 3 mag h
Physics
Work, power & energy
101 In the figure shown a small object is released from the position A on a smooth track When the object reaches at B then normal reaction on it by the track is 3h 1 mg 3 2mg and Cylindrical surface 2 4 2mg 3 mag h
A uniform disc of radius 20 cm is performing 20 pure rolling on a moving surface if it s angular velocity is 5 rad s then find velocity of it s centre of mass 1 1 m s 3 3 m s V 2 m s 2 2 m s 4 None of these ER TEST SERIES JOINT PACKAGE COURSE 1 1 m s 3 3 m s 20 cm from the citea 35 rad saat 3 C V 2 m s 2 2 m s 4 0999DMD31032000
Physics
Rotation
A uniform disc of radius 20 cm is performing 20 pure rolling on a moving surface if it s angular velocity is 5 rad s then find velocity of it s centre of mass 1 1 m s 3 3 m s V 2 m s 2 2 m s 4 None of these ER TEST SERIES JOINT PACKAGE COURSE 1 1 m s 3 3 m s 20 cm from the citea 35 rad saat 3 C V 2 m s 2 2 m s 4 0999DMD31032000
1 3 3 1 2 A cylindrical space of radius R is filled with a uniform magnetic induction B parallel to the axes of the cylinder If B changes at a constant rate the graph showing the variation of induced electric field with distance r from the axis of cylinder is X Et n Et xx x t 20 4 Xx 2 E Et 58 A small circular loop of radius r is placed inside a circular loon of radius R Rad The 4 An anticlockwise induced curren the closed loop Figure below shows a square loop of resistance 10 2 The magnetic field H 8 1 0 T The work done in pulling the field slowly and uniformly in 2 s X x x X t x X x x x X X x x X X x x x TY 1 3 125 x 10 3 J 2 6 25 x 104 J 3 1 25 x 10 J 4 5 0 x 10 J 61 The wires P Q and P Q rails with the same speec towards left and P Q mov electric current in the 19 X H X PX P x x X X
Physics
Electromagnetic Induction
1 3 3 1 2 A cylindrical space of radius R is filled with a uniform magnetic induction B parallel to the axes of the cylinder If B changes at a constant rate the graph showing the variation of induced electric field with distance r from the axis of cylinder is X Et n Et xx x t 20 4 Xx 2 E Et 58 A small circular loop of radius r is placed inside a circular loon of radius R Rad The 4 An anticlockwise induced curren the closed loop Figure below shows a square loop of resistance 10 2 The magnetic field H 8 1 0 T The work done in pulling the field slowly and uniformly in 2 s X x x X t x X x x x X X x x X X x x x TY 1 3 125 x 10 3 J 2 6 25 x 104 J 3 1 25 x 10 J 4 5 0 x 10 J 61 The wires P Q and P Q rails with the same speec towards left and P Q mov electric current in the 19 X H X PX P x x X X
A horizontal overhead powerline is at a height of 4m from the ground and carries a current of 100A from east to west The magnetic field directly below it on the ground is Mo 4 x 10 7 TmA 1 5 x 10 6 T northward 2 5 x 10 6 T southward 3 2 5 x 10 7 T northward 0 25 x 10 7 T southward
Physics
Magnetic Field
A horizontal overhead powerline is at a height of 4m from the ground and carries a current of 100A from east to west The magnetic field directly below it on the ground is Mo 4 x 10 7 TmA 1 5 x 10 6 T northward 2 5 x 10 6 T southward 3 2 5 x 10 7 T northward 0 25 x 10 7 T southward
83 Magnetic field at the centre at nucleus of the hydrogen like atoms atomic number Z due to the motion of electron in nth orbit is proportional to 1 n Z5 2 n 4 Z 3 Z 3 n 4 Z 5 n
Physics
Atomic Structure
83 Magnetic field at the centre at nucleus of the hydrogen like atoms atomic number Z due to the motion of electron in nth orbit is proportional to 1 n Z5 2 n 4 Z 3 Z 3 n 4 Z 5 n
18 A sonometer wire is emitting a note of frequency n when stretched by 1 point a weight If the weight is completely immersed in water then the frequency of the wire a will be zero b will not change c will decrease d will increase
Physics
Waves
18 A sonometer wire is emitting a note of frequency n when stretched by 1 point a weight If the weight is completely immersed in water then the frequency of the wire a will be zero b will not change c will decrease d will increase
32 4 1 g 2 g 2 3 g 3 4 g 4 If acceleration of the system is 2 m sec then 32 value of T is T T Ikg lkg 1kg 3 3 N 1 IN 2 2 N The 4 4 N 1 g 3 g 3 4 g 4 af farv 2m sec T B BM 1kg 2 g 2 H T 1 IN 2 2N Ikg 3 3 N 1kg 4 4 N
Physics
Basic Physics
32 4 1 g 2 g 2 3 g 3 4 g 4 If acceleration of the system is 2 m sec then 32 value of T is T T Ikg lkg 1kg 3 3 N 1 IN 2 2 N The 4 4 N 1 g 3 g 3 4 g 4 af farv 2m sec T B BM 1kg 2 g 2 H T 1 IN 2 2N Ikg 3 3 N 1kg 4 4 N
17 A sonometer wire of length 1 metre Vibrates in 4 loops The distance between two consecutive nodes is O a 10 cm Ob 25 cm O c 50 cm O d 60 cm
Physics
Waves
17 A sonometer wire of length 1 metre Vibrates in 4 loops The distance between two consecutive nodes is O a 10 cm Ob 25 cm O c 50 cm O d 60 cm
3 E m To keep the mass from accelerating a spring is attached What is the minimum spring constant of the spring to keep th block from sliding if it extends x 0 12 m from its unstretched length N m Submit
Physics
Newton's law of motion
3 E m To keep the mass from accelerating a spring is attached What is the minimum spring constant of the spring to keep th block from sliding if it extends x 0 12 m from its unstretched length N m Submit
When a piece of non metal and a metal are dropped from the same height near the surface of the earth the non metallic piece will reach the ground first Induced current in metal will decrease the acceleration 7 electric fi R Direction variable aw A If the varies will
Physics
Basic Physics
When a piece of non metal and a metal are dropped from the same height near the surface of the earth the non metallic piece will reach the ground first Induced current in metal will decrease the acceleration 7 electric fi R Direction variable aw A If the varies will
A compound microscope has a magnification of 30 when final image is formed at 25 cm from the eye piece What is magnification produced by the objective if the focal length of eyepiece is 5 cm 5 0 O 7 2 10 0 2 5
Physics
Basic Physics
A compound microscope has a magnification of 30 when final image is formed at 25 cm from the eye piece What is magnification produced by the objective if the focal length of eyepiece is 5 cm 5 0 O 7 2 10 0 2 5
the work done by gravity when mass m is displaced slowly by a force F 0 60 from position A to position B 1 mgl 2 3 mal VG m B 0 F A 2 F mgl 2 3
Physics
Work, power & energy
the work done by gravity when mass m is displaced slowly by a force F 0 60 from position A to position B 1 mgl 2 3 mal VG m B 0 F A 2 F mgl 2 3
A material has normal density p and bulk modulus K The increase in the density of the material when it is subjected to an external pressure P from all sides is Question Type Single Correct Type 1 P PK 2 K PP 3 pP K ok D
Physics
Basic Physics
A material has normal density p and bulk modulus K The increase in the density of the material when it is subjected to an external pressure P from all sides is Question Type Single Correct Type 1 P PK 2 K PP 3 pP K ok D
the velocity of the sound wave Ans 120 96m sec The velocity of a particle executing simple harmonic oscillation is 1 4m sec and 0 8m sec when it is 22cm and 48cm away from the mean position Find its time period and amplitude Ans 2 331sec 56 44cm Calculate the fraction of kinetic energy and potential energy to the total energy when the tin
Physics
Simple harmonic motion
the velocity of the sound wave Ans 120 96m sec The velocity of a particle executing simple harmonic oscillation is 1 4m sec and 0 8m sec when it is 22cm and 48cm away from the mean position Find its time period and amplitude Ans 2 331sec 56 44cm Calculate the fraction of kinetic energy and potential energy to the total energy when the tin
19 1 25 m 2 45 m A stone is dropped from the top of a tower If it travels 34 3 m in the last second before it reaches the ground find the height of the tower g 9 8 m s 1 39 2 m 2 58 8 m 3 78 4 m 4 98 m ath second What is the fall of height in the next second
Physics
Kinematics
19 1 25 m 2 45 m A stone is dropped from the top of a tower If it travels 34 3 m in the last second before it reaches the ground find the height of the tower g 9 8 m s 1 39 2 m 2 58 8 m 3 78 4 m 4 98 m ath second What is the fall of height in the next second
30 Equations of two progressive waves at a certain point in a medium are given by y a sin wt 1 and y2 asin wt 2 If amplitude and time period of resultant wave formed by the superposition of these two waves is same as that of both the waves then 01 02 is T a c 3R6 b d 2 3 TC
Physics
Waves
30 Equations of two progressive waves at a certain point in a medium are given by y a sin wt 1 and y2 asin wt 2 If amplitude and time period of resultant wave formed by the superposition of these two waves is same as that of both the waves then 01 02 is T a c 3R6 b d 2 3 TC
Assertion The specific charge for positive rays is a characteristic constant Reason The specific charge depends on charge and mass of positive ions present in positive rays 1 If both the assertion and the reason are true and the reason is a correct explanation of the assertion 2 If both the assertion and reason are true but the reason is not a correct explanation of the assertion 3 If the assertion is true but the reason is false 4 If both the assertion and reason are false
Physics
Electromagnetic waves
Assertion The specific charge for positive rays is a characteristic constant Reason The specific charge depends on charge and mass of positive ions present in positive rays 1 If both the assertion and the reason are true and the reason is a correct explanation of the assertion 2 If both the assertion and reason are true but the reason is not a correct explanation of the assertion 3 If the assertion is true but the reason is false 4 If both the assertion and reason are false
In the given set up the parallel plate capacitor AB has vertical plates with plate separation 50 mm and capacitance C From the plate A a small conducting ball of mass m capacitance C hangs from a non conducting silk thread of length 100 mm The ball initially touches the plate A which is connected to a power supply of voltage V for a short time by closing the switch 5 and then opening it again The plate B is grounded The motion of conducting ball is now observed It is observed that due to the charge deposited on plates and ball the ball swings across touches the plate B returns touches A and finally swings out again such that it almost touches plate B Taking g 10 ms and based on the above facts answer the following questions B 7 The angle made by ball and string with the plate A when the ball is in its final position is A 30 C 60 8 The ball initially touches plate B it loses its charge to B swings back and touches A and then finally again swings out and almost touches plate B The new common potential V is given by B A 4 CV C C B 45 D 0 C V my Covo C C
Physics
Electric Field and Potential
In the given set up the parallel plate capacitor AB has vertical plates with plate separation 50 mm and capacitance C From the plate A a small conducting ball of mass m capacitance C hangs from a non conducting silk thread of length 100 mm The ball initially touches the plate A which is connected to a power supply of voltage V for a short time by closing the switch 5 and then opening it again The plate B is grounded The motion of conducting ball is now observed It is observed that due to the charge deposited on plates and ball the ball swings across touches the plate B returns touches A and finally swings out again such that it almost touches plate B Taking g 10 ms and based on the above facts answer the following questions B 7 The angle made by ball and string with the plate A when the ball is in its final position is A 30 C 60 8 The ball initially touches plate B it loses its charge to B swings back and touches A and then finally again swings out and almost touches plate B The new common potential V is given by B A 4 CV C C B 45 D 0 C V my Covo C C
5 Blocks A and B are initially in equilibrium The springs and strings are ideal The accelerations of the blocks A and B just after the spring 2 is cut are respectively 1 g 0 al Answor 3 2 g g 2 Spring 1 2m B eeeeee Spring 2 Am 3 g g 4 0 g
Physics
Kinematics
5 Blocks A and B are initially in equilibrium The springs and strings are ideal The accelerations of the blocks A and B just after the spring 2 is cut are respectively 1 g 0 al Answor 3 2 g g 2 Spring 1 2m B eeeeee Spring 2 Am 3 g g 4 0 g
16 Tension in the lower string is 20 N If natural length of spring is 10 cm then the length of the spring which is connected between 2 kg and 4 kg block as shown in figure is 201 1 9 cm Sol Answer 3 2 10 cm m 2 kg K 60 N cm m 4 kg T 20 N 3 11 cm 4 12 cm
Physics
Basic Physics
16 Tension in the lower string is 20 N If natural length of spring is 10 cm then the length of the spring which is connected between 2 kg and 4 kg block as shown in figure is 201 1 9 cm Sol Answer 3 2 10 cm m 2 kg K 60 N cm m 4 kg T 20 N 3 11 cm 4 12 cm
A source of frequency f gives 5 beats sec when sounded with a source of frequency 200 Hz The second harmonic of source of frequency f gives 10 beats sec when sounded with a source of frequency 420 Hz The value of fis 195 Hz 410 Hz 205 Hz 390 Hz
Physics
Sound Waves
A source of frequency f gives 5 beats sec when sounded with a source of frequency 200 Hz The second harmonic of source of frequency f gives 10 beats sec when sounded with a source of frequency 420 Hz The value of fis 195 Hz 410 Hz 205 Hz 390 Hz
A non conducting ring having a uniformly distributed negative charge is placed in the plane of smooth paper A uniformly decreasing inward magnetic field is passing through the ring Then 1 Ring will start rotating anticlockwise 2 Ring will start rotating clockwise 3 Ring will jump and becomes floating above the paper 4 No change will be observed in the position of the ring
Physics
Electromagnetic Induction
A non conducting ring having a uniformly distributed negative charge is placed in the plane of smooth paper A uniformly decreasing inward magnetic field is passing through the ring Then 1 Ring will start rotating anticlockwise 2 Ring will start rotating clockwise 3 Ring will jump and becomes floating above the paper 4 No change will be observed in the position of the ring
3 Resistances A and B are connected respectively in the left gap and right 1 point gap of a metre bridge If the balance point is located at 55 cm from the right the ratio A B is a 4 5 b 5 4 c 9 11 d 11 9
Physics
Electricity measuring equipments
3 Resistances A and B are connected respectively in the left gap and right 1 point gap of a metre bridge If the balance point is located at 55 cm from the right the ratio A B is a 4 5 b 5 4 c 9 11 d 11 9
28 particle moves along x axis in positive direction Its acceleration a given as a cx d where x denotes the x coordinate of particle c and d are positive constants For velocity position graph of particle to be of type as shown in figure the value of speed of particle at x 0 should be 1 4d C 2 C 3 2d C P 8d C
Physics
Kinematics
28 particle moves along x axis in positive direction Its acceleration a given as a cx d where x denotes the x coordinate of particle c and d are positive constants For velocity position graph of particle to be of type as shown in figure the value of speed of particle at x 0 should be 1 4d C 2 C 3 2d C P 8d C
The refractive indices of a thin prism for red violet and yellow lights are 1 52 1 62 and 1 59 respectively If mean deviation is 4 what is angular dispersion produced by prism 0 68 4 52 2 80 0 98
Physics
Optical Instruments
The refractive indices of a thin prism for red violet and yellow lights are 1 52 1 62 and 1 59 respectively If mean deviation is 4 what is angular dispersion produced by prism 0 68 4 52 2 80 0 98
The angle between two vectors given by 61 63 3k and 7i j 4k is B D C COS 4 cal Correct option is D sin We know angle between two vectors is given by A B cos 8 A A B A 62 62 3 9 B 72 4 4 9 And A B 61 61 3k 7i 4j 4k 42 24 12 54 Now putting the above values in A we get 8 cos 0 sin 0 sin Tage 54 81 1 3 When we are multiplying 6i 6j 7i 4j 4k We do like this 6x7 6x4 j 3x4 k 42 24 12 because i 2 j k And not like the way we generally d multiplication in maths when we ar variables like this 61 71 4 4k 6 71 4 4k 3k 7i 4j 4k Can you please explain why it is so
Physics
Basic Physics
The angle between two vectors given by 61 63 3k and 7i j 4k is B D C COS 4 cal Correct option is D sin We know angle between two vectors is given by A B cos 8 A A B A 62 62 3 9 B 72 4 4 9 And A B 61 61 3k 7i 4j 4k 42 24 12 54 Now putting the above values in A we get 8 cos 0 sin 0 sin Tage 54 81 1 3 When we are multiplying 6i 6j 7i 4j 4k We do like this 6x7 6x4 j 3x4 k 42 24 12 because i 2 j k And not like the way we generally d multiplication in maths when we ar variables like this 61 71 4 4k 6 71 4 4k 3k 7i 4j 4k Can you please explain why it is so
Han 8 1 37 A detector is released from rest over a source of sound of frequency fo 10 Hz The frequency observed by the detector at time t is plotted in the graph The speed of sound in air is g 10 m s ONS a 330 m s c 300 m s f Hz 2000 1000 30 t s b 350 m s d 310 m s
Physics
Basic Physics
Han 8 1 37 A detector is released from rest over a source of sound of frequency fo 10 Hz The frequency observed by the detector at time t is plotted in the graph The speed of sound in air is g 10 m s ONS a 330 m s c 300 m s f Hz 2000 1000 30 t s b 350 m s d 310 m s
The slits are 1 mm apart from each other and illuminated with a light of wavelength 5 x 10 7 m If the distance of screen from slits plane is 1 m then distance of third dark fringe from central maxima will be 1 25 mm 2 50 mm 3 75 mm 0 75 mm
Physics
Wave Optics
The slits are 1 mm apart from each other and illuminated with a light of wavelength 5 x 10 7 m If the distance of screen from slits plane is 1 m then distance of third dark fringe from central maxima will be 1 25 mm 2 50 mm 3 75 mm 0 75 mm
0 The string of a sonometer is divided into two parts using wedge Total length of string is 1m and two parts differ by 2mm When sounded together they produce 2 beats sec The freqencies of two parts are 1 501Hz 503Hz 2 501Hz 499Hz 3 499Hz 497Hz 4 497Hz 495Hz 3
Physics
Waves
0 The string of a sonometer is divided into two parts using wedge Total length of string is 1m and two parts differ by 2mm When sounded together they produce 2 beats sec The freqencies of two parts are 1 501Hz 503Hz 2 501Hz 499Hz 3 499Hz 497Hz 4 497Hz 495Hz 3
29 A conveyor belt moves to the right with speed v 300 m min A pieman puts pies on the belt at a rate of 20 per minute while walking with speed 30 m min towards a receiver at the other end The frequency with which they are received by the stationary receiver is a hovud a 26 67 min c 22 22 min b 30 min d 24 min
Physics
Waves
29 A conveyor belt moves to the right with speed v 300 m min A pieman puts pies on the belt at a rate of 20 per minute while walking with speed 30 m min towards a receiver at the other end The frequency with which they are received by the stationary receiver is a hovud a 26 67 min c 22 22 min b 30 min d 24 min
Light waves from two coherent sources of intensity ratio 81 1 produce interference What is the ratio of maximum and minimum intensity in interference pattern 56 25 16 36 25
Physics
Wave Optics
Light waves from two coherent sources of intensity ratio 81 1 produce interference What is the ratio of maximum and minimum intensity in interference pattern 56 25 16 36 25
particle moving along x axis has acceleration f at time t given by f fo 1 where fo and T are constants The particle at t 0 has zero velocity In the time interval between t 0 and the instant when f 0 the particle s velocity v is b for d f T a c 1 for IN in for 2007
Physics
Experiments
particle moving along x axis has acceleration f at time t given by f fo 1 where fo and T are constants The particle at t 0 has zero velocity In the time interval between t 0 and the instant when f 0 the particle s velocity v is b for d f T a c 1 for IN in for 2007
A boy is standing on a weighing machine inside a lift When the lift goes upwards g with acceleration the machine shows the reading 50 kg wt When the lift goes 4 downward with acceleration the reading of the machine in kg wt would be
Physics
Newton's law of motion
A boy is standing on a weighing machine inside a lift When the lift goes upwards g with acceleration the machine shows the reading 50 kg wt When the lift goes 4 downward with acceleration the reading of the machine in kg wt would be
is 22cm and 48cm away from the mean position Find its time period and amplitude Ans 2 331sec 56 44cm Calculate the fraction of kinetic energy and potential energy to the total energy when the displacement of the particle executing simple harmonic oscillation is 1 3 of its amplitude Ans E E 8 9 E E 1 9
Physics
Simple harmonic motion
is 22cm and 48cm away from the mean position Find its time period and amplitude Ans 2 331sec 56 44cm Calculate the fraction of kinetic energy and potential energy to the total energy when the displacement of the particle executing simple harmonic oscillation is 1 3 of its amplitude Ans E E 8 9 E E 1 9
A converging lens of power 2 D is placed in contact with another lens of power 1 D The combination will behave as A converging lens of focal length 100 cm O A converging lens of focal length 50 cm A diverging lens of focal length 100 cm A diverging lens of focal length 20 cm
Physics
Geometrical Optics
A converging lens of power 2 D is placed in contact with another lens of power 1 D The combination will behave as A converging lens of focal length 100 cm O A converging lens of focal length 50 cm A diverging lens of focal length 100 cm A diverging lens of focal length 20 cm
40 Given below are two statements labelled as Assertion A and Reason R Assertion A A uniform electric field and a uniform magnetic field are acting along the same direction in a certain region If an electron is projected along the direction of the fields with a certain velocity its velocity will decrease Reason R Magnetic force on a charged particle moving in a magnetic field does no work on the particle Select the most appropriate answer from the options given below 1 Point Both A and R are true and R is the correct explanation of A
Physics
Magnetic Field
40 Given below are two statements labelled as Assertion A and Reason R Assertion A A uniform electric field and a uniform magnetic field are acting along the same direction in a certain region If an electron is projected along the direction of the fields with a certain velocity its velocity will decrease Reason R Magnetic force on a charged particle moving in a magnetic field does no work on the particle Select the most appropriate answer from the options given below 1 Point Both A and R are true and R is the correct explanation of A
Light of wavelength 500 nm is incident on two slits separated by 1 mm in YDSE What is width of each bright band if screen is 1 m away from slit planes 0 2 mm O 0 25 mm O 0 3 mm 0 5 mm
Physics
Wave Optics
Light of wavelength 500 nm is incident on two slits separated by 1 mm in YDSE What is width of each bright band if screen is 1 m away from slit planes 0 2 mm O 0 25 mm O 0 3 mm 0 5 mm
HIS and secondary of a 20 mH and 90 mH al induction between and resistance for ter NEET Part II A train is moving on a straight horizontal track Induced emf across the axle is maximum when it moves 1 At poles 2 At equator 3 Along the direction where angle of dip is 45 4 emf is not induced A square loop enters a magnetic field with velocity v as shown in figure The front edge enters the magnetic field at time t 0 Which of the following anh gives the correct variation of emf induced 3 PA 4 d 10 53 Self inductance of a s decreasing through it induced in the solen
Physics
Basic Physics
HIS and secondary of a 20 mH and 90 mH al induction between and resistance for ter NEET Part II A train is moving on a straight horizontal track Induced emf across the axle is maximum when it moves 1 At poles 2 At equator 3 Along the direction where angle of dip is 45 4 emf is not induced A square loop enters a magnetic field with velocity v as shown in figure The front edge enters the magnetic field at time t 0 Which of the following anh gives the correct variation of emf induced 3 PA 4 d 10 53 Self inductance of a s decreasing through it induced in the solen
21 22 Find out mechanical advantage in given figure 1 4 3 2 1 W 2 3 4 1 A boy sitting on the topmost berth in the 21 fagfiffy 22 1 4 3 2 S W 2 3 4 1
Physics
Newton's law of motion
21 22 Find out mechanical advantage in given figure 1 4 3 2 1 W 2 3 4 1 A boy sitting on the topmost berth in the 21 fagfiffy 22 1 4 3 2 S W 2 3 4 1
16 A circular ring of radius square having side a a r The mutual inductance of the system is 1 Mor2 a 2 2 2 Horz 3 2 2 or a 4 2 2 Hor
Physics
Electromagnetic Induction
16 A circular ring of radius square having side a a r The mutual inductance of the system is 1 Mor2 a 2 2 2 Horz 3 2 2 or a 4 2 2 Hor
f inductance of two n a core as shown in inductance of each n is moving in ed v If B I and and R is the ower delivered Last Leap for NEET Par a semicircular conducting loop ACB is rotating with constant angular velocity to about O the which of the following graphs shows the variation induced current with time t The magnetic field is perpendicular to the plane of loop as show in the figure 1 3 3 100 B X X X X xxx XXX X X X X X X xxx X X xXx X X E N p 2 2 he M 2 4 2 nel slotti The circu 2 Dec 3 Fee 4 All The so axis P plane the loc 1 2 3
Physics
Electric Field and Potential
f inductance of two n a core as shown in inductance of each n is moving in ed v If B I and and R is the ower delivered Last Leap for NEET Par a semicircular conducting loop ACB is rotating with constant angular velocity to about O the which of the following graphs shows the variation induced current with time t The magnetic field is perpendicular to the plane of loop as show in the figure 1 3 3 100 B X X X X xxx XXX X X X X X X xxx X X xXx X X E N p 2 2 he M 2 4 2 nel slotti The circu 2 Dec 3 Fee 4 All The so axis P plane the loc 1 2 3
An electric bulb is marked 100W 220V If the supply voltage drops to 110V what is the total energy produced by the bulb in 20 minutes 1 Point O 30kJ O 15kJ O 10kJ O 5kJ
Physics
Basic Physics
An electric bulb is marked 100W 220V If the supply voltage drops to 110V what is the total energy produced by the bulb in 20 minutes 1 Point O 30kJ O 15kJ O 10kJ O 5kJ
A parallel plate capacitor is charged to 60 C 7 Due to a radioactive source the plate loses charge at the rate of 1 8 x 10 C s the magnitude of displacement current is 1 1 8 10 C s 2 3 6 10 C s 3 4 1 10 C s 4 5 7 x 10 2 C s x 60 fera ti ya 1 810 C sta effet 1 1 8 x 10 2 3 6 10 3 4 1 x 10 C s 4 5 7 x 10 2 C s C s C s
Physics
Basic Physics
A parallel plate capacitor is charged to 60 C 7 Due to a radioactive source the plate loses charge at the rate of 1 8 x 10 C s the magnitude of displacement current is 1 1 8 10 C s 2 3 6 10 C s 3 4 1 10 C s 4 5 7 x 10 2 C s x 60 fera ti ya 1 810 C sta effet 1 1 8 x 10 2 3 6 10 3 4 1 x 10 C s 4 5 7 x 10 2 C s C s C s
A mass M is divided in two parts m and M m 35 Now two parts are connected by an ideal string passing over a pulley as shown in diagram Find value of m such that tension in string is maximum 1 m 0 3 m M m M m 2 m 4 m M M 34 di via facer y farcit Bicht Jordi gesucri reit s s i m s fra safe 1 m 0 MM m 3 m M 3 M m 2 m 4 m MN MA
Physics
Basic Physics
A mass M is divided in two parts m and M m 35 Now two parts are connected by an ideal string passing over a pulley as shown in diagram Find value of m such that tension in string is maximum 1 m 0 3 m M m M m 2 m 4 m M M 34 di via facer y farcit Bicht Jordi gesucri reit s s i m s fra safe 1 m 0 MM m 3 m M 3 M m 2 m 4 m MN MA
10 In a resonance tube experiment resonance occurs with a tuning fork of 1 point frequency 420 Hz when the resonating length of the air column is 20 cm What is the velocity of sound in air Oa 300 m s Ob 336 m s Oc 310 m s Od 320 m s
Physics
Basic Physics
10 In a resonance tube experiment resonance occurs with a tuning fork of 1 point frequency 420 Hz when the resonating length of the air column is 20 cm What is the velocity of sound in air Oa 300 m s Ob 336 m s Oc 310 m s Od 320 m s
Two blocks of mass M 6 kg and m H 3 kg are placed as shown in the figure Coefficient of friction between M and m is 0 5 Coefficient of friction between M and the surface is 0 4 The maximum horizontal force that can be applied to the mass M so that they move without separation is g 10 ms 1 41 N 2 61 N 3 81 N 4 101 N ALLEN m 3 kg M 6 kg M 6 3 fan anat geen ant 0 5 fm 3 Tu for at 0 4 TERIMA SEI CHIRI SI FET g 10 f m 3 kg M 6 kg 1 412 2 61 3 81 55 4 101
Physics
Friction
Two blocks of mass M 6 kg and m H 3 kg are placed as shown in the figure Coefficient of friction between M and m is 0 5 Coefficient of friction between M and the surface is 0 4 The maximum horizontal force that can be applied to the mass M so that they move without separation is g 10 ms 1 41 N 2 61 N 3 81 N 4 101 N ALLEN m 3 kg M 6 kg M 6 3 fan anat geen ant 0 5 fm 3 Tu for at 0 4 TERIMA SEI CHIRI SI FET g 10 f m 3 kg M 6 kg 1 412 2 61 3 81 55 4 101
4 2 A long horizontal wire AB which is free to move in a vertical plane and carries a steady current of 20A is in equilibrium at a height of 0 01m over another parallel long wire CD which is fixed in a horizontal plane and carries a steady current of 30A as shown in figure 4 248 Show that when AB is slightly depressed it executes simple harmonic motion Find the period of oscillations i 20A B
Physics
Current Electricity
4 2 A long horizontal wire AB which is free to move in a vertical plane and carries a steady current of 20A is in equilibrium at a height of 0 01m over another parallel long wire CD which is fixed in a horizontal plane and carries a steady current of 30A as shown in figure 4 248 Show that when AB is slightly depressed it executes simple harmonic motion Find the period of oscillations i 20A B