Basic Physics Questions and Answers

Paragraph for Questions 17 and 18 Consider 2 vectors A and B If we define vector component of component of B perpendicular to A as B A B where dot product then answer the following questions If A i and vector component of B along A is B A k 2 C 3 j 2 D i j B then which of the following cannot be along A as A B A and vec represent unit vector repres 2 Vector component of 21 2j k perpendicular to 3k is given by A 21 21 k B 21 2 C k D i j k
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Paragraph for Questions 17 and 18 Consider 2 vectors A and B If we define vector component of component of B perpendicular to A as B A B where dot product then answer the following questions If A i and vector component of B along A is B A k 2 C 3 j 2 D i j B then which of the following cannot be along A as A B A and vec represent unit vector repres 2 Vector component of 21 2j k perpendicular to 3k is given by A 21 21 k B 21 2 C k D i j k
Standing waves are set up in a string of length 240cm clamped horizontally at both ends The separation between any two consecutive points where displacement amplitude is 3 2 cm is 20cm The standing waves were set by two travelling waves of equal amplitude of 3 cm The overtone in which the string is vibrating will be O 2nd
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Standing waves are set up in a string of length 240cm clamped horizontally at both ends The separation between any two consecutive points where displacement amplitude is 3 2 cm is 20cm The standing waves were set by two travelling waves of equal amplitude of 3 cm The overtone in which the string is vibrating will be O 2nd
The displacement of a particle varies according to the relation x 3 sin 100t 8 cos 50t Which of the following is incorrect about this motion O The motion of the particle is S H M O The amplitude of the S H M of the particle is 5 units The amplitude of the resultant S H M is 73 units The maximum displacement of the particle from the origin is 9 units 4
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The displacement of a particle varies according to the relation x 3 sin 100t 8 cos 50t Which of the following is incorrect about this motion O The motion of the particle is S H M O The amplitude of the S H M of the particle is 5 units The amplitude of the resultant S H M is 73 units The maximum displacement of the particle from the origin is 9 units 4
5 A smooth uniform solid sphere rolling without slipping with velocity vo collides elastically and head on with a stationary identical sphere placed on a rough horizontal surface The velocity of second sphere when it starts pure rolling is 1 2V0 5 F Vo Rough 2 5V0 7
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5 A smooth uniform solid sphere rolling without slipping with velocity vo collides elastically and head on with a stationary identical sphere placed on a rough horizontal surface The velocity of second sphere when it starts pure rolling is 1 2V0 5 F Vo Rough 2 5V0 7
A bird moves from point 1 2 to 4 2 If the speed of the bird is 20 m s then the velocity vector of the bird is A 5 2 B 61 8j C 0 6i 0 8j D 121 16
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A bird moves from point 1 2 to 4 2 If the speed of the bird is 20 m s then the velocity vector of the bird is A 5 2 B 61 8j C 0 6i 0 8j D 121 16
Which of the following statement s is are correct A Two unit vectors can add to give a unit vector B A unit vector if rotated through an angle will not be a unit vector As angle between two vectors is increased from 90 to 135 magnitude of their C resultant increases D j k can be said to be components of vector i j k k
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Which of the following statement s is are correct A Two unit vectors can add to give a unit vector B A unit vector if rotated through an angle will not be a unit vector As angle between two vectors is increased from 90 to 135 magnitude of their C resultant increases D j k can be said to be components of vector i j k k
A constant horizontal force is applied on the hanging bob of a simple pendulum of mass m starting from vertical position as shown m F The string deflects through a maximum angle 0 F mg 1 tan 0 Find 3 cot 0 10 2 cot 0 4 tan
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A constant horizontal force is applied on the hanging bob of a simple pendulum of mass m starting from vertical position as shown m F The string deflects through a maximum angle 0 F mg 1 tan 0 Find 3 cot 0 10 2 cot 0 4 tan
with the water splashing out parallel to plate Find the force that the plate experiences 5 A laminar stream is flowing vertically down from a tap of cross section area I cm At a distance 10cm below the tap the cross section area of the stream has reduced to 1 2 cm Find the volumetric flow rate of water from the tap 6 Calculate the rate of flow of glycerine of density 1 25 x 10 kg m through the conical section of a
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with the water splashing out parallel to plate Find the force that the plate experiences 5 A laminar stream is flowing vertically down from a tap of cross section area I cm At a distance 10cm below the tap the cross section area of the stream has reduced to 1 2 cm Find the volumetric flow rate of water from the tap 6 Calculate the rate of flow of glycerine of density 1 25 x 10 kg m through the conical section of a
Two isotopes P and Q of atomic weight 10 and 20 respectively are mixed in equal amount by weight After 20 days their weight ratio is found to be 1 4 Isotope P has a half life of 10 days The half life of isotope Q is
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Two isotopes P and Q of atomic weight 10 and 20 respectively are mixed in equal amount by weight After 20 days their weight ratio is found to be 1 4 Isotope P has a half life of 10 days The half life of isotope Q is
Particle X and particle Y are initially positioned at a 0 and 0 b respectively At t 0 the particles X and Y start moving with ui and vj respectively Maximum angular speed of the line joining the particles is 1 3 v U va ub v 4 vb ua 2 4 v u va ubl v U vb ual
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Particle X and particle Y are initially positioned at a 0 and 0 b respectively At t 0 the particles X and Y start moving with ui and vj respectively Maximum angular speed of the line joining the particles is 1 3 v U va ub v 4 vb ua 2 4 v u va ubl v U vb ual
At a distance of 23 feet from the base of a flag pole the angle of elevation to the top of a flag that is 3 1 feet tall is 53 2 The angle of elevation to the bottom of the flag is 50 3 The pole extends 1 foot above the flag Find the height of the pole A 28 9 ft B 27 9 ft C 318 ft D 30 8 ft
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At a distance of 23 feet from the base of a flag pole the angle of elevation to the top of a flag that is 3 1 feet tall is 53 2 The angle of elevation to the bottom of the flag is 50 3 The pole extends 1 foot above the flag Find the height of the pole A 28 9 ft B 27 9 ft C 318 ft D 30 8 ft
Two vectors P Q are arranged in such a way that they form adjacent sides of a parallelogram as shown in figure Which of the following options have incorrect relationship A Q P S C R P S P te S R B R P Q D S Q P
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Two vectors P Q are arranged in such a way that they form adjacent sides of a parallelogram as shown in figure Which of the following options have incorrect relationship A Q P S C R P S P te S R B R P Q D S Q P
Consider a uniformly charged metallic spherical shell of radius R and charge Qas shown in fig The columbic force experienced by the upper half of the metallic spherical shell is Q X R Then value of x is Sr Super60 All R Space for rough work Page 6
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Consider a uniformly charged metallic spherical shell of radius R and charge Qas shown in fig The columbic force experienced by the upper half of the metallic spherical shell is Q X R Then value of x is Sr Super60 All R Space for rough work Page 6
A pin welded at the circumference of the wheel forces a T shaped body to move up and down The pin slides freely inside the slot of the yoke as the wheel rotates The 7 shaped body is constrained to move vertically by a set of walls A M yoke Pin Wall a Find the time period of oscillatory motion of point A at the base of the T shaped body
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A pin welded at the circumference of the wheel forces a T shaped body to move up and down The pin slides freely inside the slot of the yoke as the wheel rotates The 7 shaped body is constrained to move vertically by a set of walls A M yoke Pin Wall a Find the time period of oscillatory motion of point A at the base of the T shaped body
A conducting loop moves with constant velocity 2m s in nonuniform and variable magnetic field B t x T where x is in meter and t is in second s shown in figure The magnitude of emf induced at t 1s is a 1m 1 0 V 2 m s
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A conducting loop moves with constant velocity 2m s in nonuniform and variable magnetic field B t x T where x is in meter and t is in second s shown in figure The magnitude of emf induced at t 1s is a 1m 1 0 V 2 m s
If two vectors P and 6 are inclined at angle 0 then A Angle between P and is 27 0 B Angle between P and and Q is 0 C Angle between P and 1 is 0 D Angle between P and is 0
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If two vectors P and 6 are inclined at angle 0 then A Angle between P and is 27 0 B Angle between P and and Q is 0 C Angle between P and 1 is 0 D Angle between P and is 0
A cubical block of mass m 1 kg is placed on a smooth horizontal surface as shown Its centre is tied to a massless and inextensible string of length 10 m and other end of the string is connected to ball of same mass Ball is released from the position shown It falls under gravity and then string becomes taut The kinetic energy of block and ball just after string is taut are KE and KE respectively then g 9 8 m s 1 30
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A cubical block of mass m 1 kg is placed on a smooth horizontal surface as shown Its centre is tied to a massless and inextensible string of length 10 m and other end of the string is connected to ball of same mass Ball is released from the position shown It falls under gravity and then string becomes taut The kinetic energy of block and ball just after string is taut are KE and KE respectively then g 9 8 m s 1 30
A liquid of density p is filled in a U tube whose one end is open at the other end a bulb is fitted whose pressure is P Now this tube is moved horizontally with acceleration a as shown in the figure During motion it is found that liquid in both column is at same level at equilibrium If atmospheric pressure is P then find the value of P
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A liquid of density p is filled in a U tube whose one end is open at the other end a bulb is fitted whose pressure is P Now this tube is moved horizontally with acceleration a as shown in the figure During motion it is found that liquid in both column is at same level at equilibrium If atmospheric pressure is P then find the value of P
An astronomical telescope has an objective lens of focal length 100 cm and for relax eye adjustment magnification is 10 The separation between objective and eye piece lens is O O 110 cm 90 cm 10 cm O125 cm
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An astronomical telescope has an objective lens of focal length 100 cm and for relax eye adjustment magnification is 10 The separation between objective and eye piece lens is O O 110 cm 90 cm 10 cm O125 cm
D A rod of length 2 4 m and radius 4 6 mm carries a negative charge of 4 2 x 10 C spread uniformly over it surface The electric field near the mid point of the rod at a point on its surface is a 8 6 x 10 NC c 67 x 10 NC 1 b 8 6 x 10 NC 16210 NG
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D A rod of length 2 4 m and radius 4 6 mm carries a negative charge of 4 2 x 10 C spread uniformly over it surface The electric field near the mid point of the rod at a point on its surface is a 8 6 x 10 NC c 67 x 10 NC 1 b 8 6 x 10 NC 16210 NG
Consider the situation shown in the figure The switch S is open for a long time and then closed and again steady state reached then 2C X HH Charge flowing from X to Y is Charge flowing from Y to X is Work done by battery is Work done by battery is CV 3 2CV 3 2CV 3 CV 3 2C S H C
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Consider the situation shown in the figure The switch S is open for a long time and then closed and again steady state reached then 2C X HH Charge flowing from X to Y is Charge flowing from Y to X is Work done by battery is Work done by battery is CV 3 2CV 3 2CV 3 CV 3 2C S H C
Be A uniform metre rule of mass 100 g is balanced on a fulcrum at mark 40 cm by suspending an unknown mass m at the mark 20 cm i Find the value of m ii To which side the rule will tilt if the mass m is moved to the mark 10 cm iii What is the resultant moment now iv How can it be balanced by another mass of 02
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Be A uniform metre rule of mass 100 g is balanced on a fulcrum at mark 40 cm by suspending an unknown mass m at the mark 20 cm i Find the value of m ii To which side the rule will tilt if the mass m is moved to the mark 10 cm iii What is the resultant moment now iv How can it be balanced by another mass of 02
entre in in to the hits the small akw 87 The total flux through the faces of the cube with side of length a if a charge g is placed at corner A of the cube is 9 a 11
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entre in in to the hits the small akw 87 The total flux through the faces of the cube with side of length a if a charge g is placed at corner A of the cube is 9 a 11
le d negative z direction is a 10 N b 10 N c 10 N d 10 75 In the question number 74 torque experienced by the system is d 10 a 10 N b 10 N c zero CONTINUOUS CHARGE DISTRU ent b equal to
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le d negative z direction is a 10 N b 10 N c 10 N d 10 75 In the question number 74 torque experienced by the system is d 10 a 10 N b 10 N c zero CONTINUOUS CHARGE DISTRU ent b equal to
particles having charges of magnitude q each and alternatively positive and negative are placed at the four corners of the square Select the correct 1 alternative s neglect gravitational effects k Centre of dipole coincidence with the intersecting point of diagonals 4 C Sr Super60 All Space for rough work Page 5 Chaitanya IIT Academy 6kPq 3 20 06 2021 Sr Super60 All Jee Adv 2018 P1 GTA 11 Q P A Resultant electrostatic force on the system of four charges due to dipole is B Resultant electrostatic force on the system of four charges due to dipole is r 6kPq cos
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particles having charges of magnitude q each and alternatively positive and negative are placed at the four corners of the square Select the correct 1 alternative s neglect gravitational effects k Centre of dipole coincidence with the intersecting point of diagonals 4 C Sr Super60 All Space for rough work Page 5 Chaitanya IIT Academy 6kPq 3 20 06 2021 Sr Super60 All Jee Adv 2018 P1 GTA 11 Q P A Resultant electrostatic force on the system of four charges due to dipole is B Resultant electrostatic force on the system of four charges due to dipole is r 6kPq cos
It is claimed that two cesium clocks if allowed to run for 100 years free from an disturbance may differ by only about 0 02 s What does this imply for the accura of the standard cesium clock in measuring a time interval of I s
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It is claimed that two cesium clocks if allowed to run for 100 years free from an disturbance may differ by only about 0 02 s What does this imply for the accura of the standard cesium clock in measuring a time interval of I s
A uniform disc is performing pure rolling on a smooth horizontal stationary surface with constant angular velocity V R and linear velocity of centre of mass V as shown is fig find the correct statements at the given instant of time Radius of the disc is R Assume A B C D are on the circumference of the disc A D B V Stationary smooth surface C V A Acceleration of the lowest point C of the disc is R B The radius of curvature of the highest of point A of the disc is 4R 2V C The relative acceleration between the highest point A and lowest point C is R D Acceleration of the lowest point C of the disk is zero A plane progressive transversal mechanical wave is advanced in a medium along
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A uniform disc is performing pure rolling on a smooth horizontal stationary surface with constant angular velocity V R and linear velocity of centre of mass V as shown is fig find the correct statements at the given instant of time Radius of the disc is R Assume A B C D are on the circumference of the disc A D B V Stationary smooth surface C V A Acceleration of the lowest point C of the disc is R B The radius of curvature of the highest of point A of the disc is 4R 2V C The relative acceleration between the highest point A and lowest point C is R D Acceleration of the lowest point C of the disk is zero A plane progressive transversal mechanical wave is advanced in a medium along
pr to be projected on a level ground Its speed of projection remains fixed at u but the angle of projection 0 with horizontal can change from 0 to 90 Plot range on the level ground against 0 3 R R 90 0 2 4 R R 90 0
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pr to be projected on a level ground Its speed of projection remains fixed at u but the angle of projection 0 with horizontal can change from 0 to 90 Plot range on the level ground against 0 3 R R 90 0 2 4 R R 90 0
Calculate F dr for the given data If F is a force this gives the work done by the force in the displacement along C F xv x v 1 C is the quarter circle from 2 0 straight to 0 2 with center 0 0
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Calculate F dr for the given data If F is a force this gives the work done by the force in the displacement along C F xv x v 1 C is the quarter circle from 2 0 straight to 0 2 with center 0 0
A satellite has kinetic energy K potential energy U and total K U E energy E The value of will be K U 2 WIN 3 1 2 3 3
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A satellite has kinetic energy K potential energy U and total K U E energy E The value of will be K U 2 WIN 3 1 2 3 3
Velocity profile for a fluid between two flat plates Voy as shown in figure is given by H which one of the following is FALSE Moving Plate Vo X Fluid H Indicate Fixed Plate a Shear stress is constant in the gap every where and is independent of y b Shear stress acts in the negative x direction on the lower plate c Shear stress acts in the negative x direction on the upper plate
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Velocity profile for a fluid between two flat plates Voy as shown in figure is given by H which one of the following is FALSE Moving Plate Vo X Fluid H Indicate Fixed Plate a Shear stress is constant in the gap every where and is independent of y b Shear stress acts in the negative x direction on the lower plate c Shear stress acts in the negative x direction on the upper plate
Question No 05 Multiple Choice Select 1 out of 4 options for the question below To get the real image of small size from a concave mirror position of object is Options At focus Between centre of curvature and focus Between infinity and centre of curvature At centre of curvature
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Question No 05 Multiple Choice Select 1 out of 4 options for the question below To get the real image of small size from a concave mirror position of object is Options At focus Between centre of curvature and focus Between infinity and centre of curvature At centre of curvature
A circular road is banked for speed 40 km hr radius of track is r A car of mass m attempts to go on the circular road The friction coefficient between the tyre and the road is negligible i The car can not make a turn without skidding ii For the speed of car less than 40 km hr it will slip down iii If car turns at speed 40 km hr the force by the road N on car is equal to mu where is speed of car iv If car turns at speed 40 km hr the force by the road N on the car is more than mg as well as more than mu Question Type Single Correct Type 1 I II 211 III C LIV
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A circular road is banked for speed 40 km hr radius of track is r A car of mass m attempts to go on the circular road The friction coefficient between the tyre and the road is negligible i The car can not make a turn without skidding ii For the speed of car less than 40 km hr it will slip down iii If car turns at speed 40 km hr the force by the road N on car is equal to mu where is speed of car iv If car turns at speed 40 km hr the force by the road N on the car is more than mg as well as more than mu Question Type Single Correct Type 1 I II 211 III C LIV
The Sun is a hot plasma ionized matter with its inner core at a temperature exceed 107 K and its outer surface at a temperature of about 6000 K At these h temperatures no substance remains in a solid or liquid phase In what range do expect the mass density of the Sun to be in the range of densities of solids liquids or gases Check if your guess is correct from the following data mass of Sun 2 0 x10 kg radius of the Sun 7 0 x 10 m
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The Sun is a hot plasma ionized matter with its inner core at a temperature exceed 107 K and its outer surface at a temperature of about 6000 K At these h temperatures no substance remains in a solid or liquid phase In what range do expect the mass density of the Sun to be in the range of densities of solids liquids or gases Check if your guess is correct from the following data mass of Sun 2 0 x10 kg radius of the Sun 7 0 x 10 m
In the following figure the speed of incompressible fluid in A pipe of area is 4 A 3 3 m s A 4 m s 10 m s 20 m s 5 m s 15 m s A 4
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In the following figure the speed of incompressible fluid in A pipe of area is 4 A 3 3 m s A 4 m s 10 m s 20 m s 5 m s 15 m s A 4
It takes one minute for a passenger standing on an escalator to reach the top If the escalator does not move it takes him 3 minute to walk up How long will it take for the passenger to arrive at the top if he walks up the moving escalator
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It takes one minute for a passenger standing on an escalator to reach the top If the escalator does not move it takes him 3 minute to walk up How long will it take for the passenger to arrive at the top if he walks up the moving escalator
An insect is moving uniformly at speed 2cm s on outer surface of a vertical right circular cone Without changing its sense of motion about axis of cone it completes a round trip and reaches to starting point A in minimum time Given Apex angle of cone 60 Height of cone 3cm A A A time taken is 2 sec B time taken is 2 3 sec C magnitude of acceleration of insect first increases then decreases
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An insect is moving uniformly at speed 2cm s on outer surface of a vertical right circular cone Without changing its sense of motion about axis of cone it completes a round trip and reaches to starting point A in minimum time Given Apex angle of cone 60 Height of cone 3cm A A A time taken is 2 sec B time taken is 2 3 sec C magnitude of acceleration of insect first increases then decreases
A pump motor is used to deliver water at a certain rate from a given pipe To obtain twice as much water from the same pipe in the same time the power of motor has to be increased to Question Type Single Correct Type 1 2 times 2 4 times 3 8 times A 16 times
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A pump motor is used to deliver water at a certain rate from a given pipe To obtain twice as much water from the same pipe in the same time the power of motor has to be increased to Question Type Single Correct Type 1 2 times 2 4 times 3 8 times A 16 times
A biker starts a race and crosses the half line in 3 second with speed 54 km h and after that he increases his speed uniformally at a rate 7 5 m s and completed the race in 5 second A Acceleration in the first half of the race is 5 m s B He finished the race with speed 108 km h C Acceleration in the second half of the race is 12 5 m s Choose the correct option O Only A O Both B and C O Both A and B
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A biker starts a race and crosses the half line in 3 second with speed 54 km h and after that he increases his speed uniformally at a rate 7 5 m s and completed the race in 5 second A Acceleration in the first half of the race is 5 m s B He finished the race with speed 108 km h C Acceleration in the second half of the race is 12 5 m s Choose the correct option O Only A O Both B and C O Both A and B
32 If in a plano convex lens radius of curvature of convex surface is 10 cm and the focal length of lens is 30 cm the refractive index of the material of the lens will be 1 1 5 2 1 66 3 1 33 4 3
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32 If in a plano convex lens radius of curvature of convex surface is 10 cm and the focal length of lens is 30 cm the refractive index of the material of the lens will be 1 1 5 2 1 66 3 1 33 4 3
A glass clad fiber is made with core glass of refractive index 1 4 and the cladding is doped to give a fractional refractive index difference of 0 004 Choose the correct options Marks 1 The numerical aperture of the fiber will be OPTIONS 0 00167
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A glass clad fiber is made with core glass of refractive index 1 4 and the cladding is doped to give a fractional refractive index difference of 0 004 Choose the correct options Marks 1 The numerical aperture of the fiber will be OPTIONS 0 00167
a 7N b 33 Three charges of equal magnitude q is placed at the vertices of an equilateral triangle of side 1 The force on a charge Q placed at the centroid of the triangle is 3Qq b 4E 2 2Qq c 4TE 2 d zero Qq 2ne1
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a 7N b 33 Three charges of equal magnitude q is placed at the vertices of an equilateral triangle of side 1 The force on a charge Q placed at the centroid of the triangle is 3Qq b 4E 2 2Qq c 4TE 2 d zero Qq 2ne1
8 bjective NCERT B 50 Take the particle in question number electron projected with velocity v 4x 1 ms j electric field between the plates separated by Im 8 2 x 10 NC then the electron will strike the uppe plate if the length of plate is Take m 9 1x10 b 3 9 cm d 3 3 cm a 2 14 cm c 1 23 cm Bectic
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8 bjective NCERT B 50 Take the particle in question number electron projected with velocity v 4x 1 ms j electric field between the plates separated by Im 8 2 x 10 NC then the electron will strike the uppe plate if the length of plate is Take m 9 1x10 b 3 9 cm d 3 3 cm a 2 14 cm c 1 23 cm Bectic
65 A circular plane sheet of radius 10 cm is placed in a uniform electric field of 5 x 105 N C making an bb angle of 60 with the field The electric flux through the sheet is a 1 36 x 102 N m C 1 b 1 36 x 10 N m C 1 N m Cl
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65 A circular plane sheet of radius 10 cm is placed in a uniform electric field of 5 x 105 N C making an bb angle of 60 with the field The electric flux through the sheet is a 1 36 x 102 N m C 1 b 1 36 x 10 N m C 1 N m Cl
proton m 1 67 10 27kg is moving at a speed of 6 0 10 6 m s What is the de Broglie wavelength OPTIONS 2 0 10 13 m 0 33 10 13 m
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proton m 1 67 10 27kg is moving at a speed of 6 0 10 6 m s What is the de Broglie wavelength OPTIONS 2 0 10 13 m 0 33 10 13 m
In a photoemissive cell with executing wavelength A the fastest electron has speed v If the exciting wavelength is changed to the speed of fastest emitted electron will be A B Greater than v 4 Correct Answer Your Answer
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In a photoemissive cell with executing wavelength A the fastest electron has speed v If the exciting wavelength is changed to the speed of fastest emitted electron will be A B Greater than v 4 Correct Answer Your Answer
he wavelength of emission of radiation is 3000A and the coefficient of spontaneous mission is 10 power12 s Given k 8 6x 10 5eV K or 1 38 X 10 power 23 J K Einstein coefficient A21 stands for OPTIONS reciprocal of life time of excited state life time of excited state reciprocal of life time of ground state
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he wavelength of emission of radiation is 3000A and the coefficient of spontaneous mission is 10 power12 s Given k 8 6x 10 5eV K or 1 38 X 10 power 23 J K Einstein coefficient A21 stands for OPTIONS reciprocal of life time of excited state life time of excited state reciprocal of life time of ground state
A particle of mass m moves in the one dimensional potential V x Fox where Fo is a positive constant a Determine the solution r t for the initial conditions x 0 xo 0 and 0 Deduce that the angular frequency of the oscillations is T Fo 2mxo 1
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A particle of mass m moves in the one dimensional potential V x Fox where Fo is a positive constant a Determine the solution r t for the initial conditions x 0 xo 0 and 0 Deduce that the angular frequency of the oscillations is T Fo 2mxo 1
A wire elongates by l mm when a load W is hanged from it If the wire goes over a pulley and two weights W each are hung at the two ends the elongation of the wire will be in mm 1 l 2 2l 3 zero 4 1 2
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A wire elongates by l mm when a load W is hanged from it If the wire goes over a pulley and two weights W each are hung at the two ends the elongation of the wire will be in mm 1 l 2 2l 3 zero 4 1 2
Consider a infinitely long charged cylindrical insulator of uniform volume charge density pas shown in the figure There is also a long cylindrical cavity of radius r having its axis parallel to axis of cylindrical charged body X A The magnitude of electric field intensity at the xx axis of charged body is B The magnitude of electric field intensity at axis xx of charged body is zero pr 2 d pd 2 0 C The magnitude of electric field intensity at axis yy of charged body is D The magnitude of electric field intensity at any point in the caivity is Pd 2 0
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Consider a infinitely long charged cylindrical insulator of uniform volume charge density pas shown in the figure There is also a long cylindrical cavity of radius r having its axis parallel to axis of cylindrical charged body X A The magnitude of electric field intensity at the xx axis of charged body is B The magnitude of electric field intensity at axis xx of charged body is zero pr 2 d pd 2 0 C The magnitude of electric field intensity at axis yy of charged body is D The magnitude of electric field intensity at any point in the caivity is Pd 2 0