Kawa 2 - Booklet
Kawa 2 - Booklet
VIDYAPEETH 1
                                                                                                                                              1     2q                                    1     3q
                                                        PHYSICS                                                                     (c)          .
                                                                                                                                             40 3 3R2
                                                                                                                                                                               (d)           .
                                                                                                                                                                                         40 2 3R2
                              ELECTRIC CHARGES AND FIELDS                                                                     7.    An insulated sphere of radius R has charge
1.    Figure shows the electric field lines around three      4.    Figure shows the electric lines of force energy                 density p. The electric field at a distance r from
      point charge A, B and C. Which charge has the                 from a charge body. If the electric field at A and              the centre of the sphere (r < R)
      largest magnitude?                                            B are E A and E B , respectively and the
                                                                                                                                             r                                          R
                                                                    displacement between A and B is r, then                         (a)                                        (b)
                                                                                                                                             30                                         30
                                                                                                                                                                                                            (a)   1                    (b)    2
                                                                                                                                             r                                          R
                                                                                                                                    (c)                                        (d)
                                                                                                                                             0                                          0                 (c)   3                    (d)    4
                                                                                                                              8.    For a uniformly charged ring of radius R, the                     11.   A point charge + q is placed at a distance d from
                                                                                                                                    electric field on its axis has the largest magnitude                    an isolated conducting plane. The field at a point
                                                                                                                                    at a distance h from its centre. Then, value of h is                    P on the other side of the plane is
      by a proton placed at point A is                                                                                              are placed on the X-axis at x = 1m and x = 4 m,                         (d)   directed radially towards the point charge
                                                              5.    Two point charges –q and +q/2 are situated at the               respectively. The electric field (in V/m) at a point
                                                                    origin and at the point (a, 0, 0), respectively. The                                                                              12.   A hemisphere is uniformly charged positively.
                                                                                                                                    y = 3m on Y-axis is
                                                                    point along the X-axis, where the electric field                                                                                        The electric field at a point on a diameter away
                                                                    vanished, is                                                               1                                                            from the centre is directed
                                                                                                                                    (Take,         = 9 109 N − m2C −2 )
                                                                                                                                              40
                                                                               2a                                                                                                                           (a)   perpendicular to the diameter
                                                                    (a)    x=
                                                                              2 −1                                                  (a)      ( 63iˆ − 27 ˆj ) 10      2
                                                                                                                                                                                                            (b)   parallel to the diameter
                                                                           X = 2a − 2 − 1
                                                                                                                                             (81iˆ − 81 ˆj ) 10
                                                                    (b)                                                                                            2
                                                                                                                                                                                                            (c)   at an angle tilted towards the diameter
      (a)    6.4 10−18 N        (b)     3.2 10−13 N                                                                               (b)
                                                                    (c)    X=   (   2 −1)   2a                                                                                                              (d)   at an angle tilted away from the diameter
      (c)    5.0 10−12 N        (d)    1.2 10−18 N                                                                                (c)      (81iˆ + 81 ˆj ) 10   2
                                                                                                                                                                                                      13.   A point positive charge brought near an isolated
3.    Two conducting sphere of radii r1 and r2 are                  (d)   None of these                                                                                                                     conducting sphere (figure). The electric field is
      charged to the same surface charge density. The         6.    The maximum field intensity on the axis of a
                                                                                                                                    (d)      ( −63iˆ + 27 ˆj ) 10         2
                                                                                                                                                                                                            best given by
      ratio of electric field near their surface is                 uniformly charged ring of charge q and radius R
                                                                                                                              10.   A metallic solid sphere is placed in a uniform
                                                                    will be                                                                                                                                 (a)
      (a)    r12 / r22           (b)     r22 / r12                                                                                  electric field. The lines of force follow the paths
                                                                            1     q                      1 2q                       shown in figure
      (c)    r1 / r2             (d)    1:1                         (a)        .                 (b)        .
                                                                           40 3 3R2                   40 3R2
                                                                                                                        EB
      (c)                         (d)                             (a)    EA  EB                    (b)         EA =
                                                                                                                         r
                                                                                                                        EB
                                                                  (c)    EA  EB                    (d)         EA =                                                                                 (a)   Both negative
25.   Figure shows three electric field lines. If FA , FB                                                               r2
      and FC are force on a test charge q at position A,                                                                                                                                             (b)       Q1 positive and Q2 negative
                                                            28.   A sphere of radius R carries charge density  such
      B and C respectively, then                                  that  = kr 2 , where k is positive constant and r is                                                                              (c)   Both positive
                                                                                                                                                                           q2
                                                                  distance from centre. Find the magnitude of                            (a)    q1 + q2            (b)                               (d)       Q1 negative and Q2 positive
                                                                  electric field at distance R/2 from centere.                                                             2
                                                                         kR    3
                                                                                                                 kR3                     (c)    − q1               (d)    Zero                 33.   The figure shows electric field lines. If E A and
                                                                  (a)                               (b)                                                                                              E B are electric fields at A and B and distance is
                                                                         200                                   100
                                                                                                                                                                                                     r, then
                                                                              3                                     3
                                                                         kR                                     kR                 31.   The magnitude of electric field strength E such
                                                                  (c)                               (d)
                                                                         50                                    400                     that an electron placed in it would experience an
      (a)    FA  FB  FC         (b)   FA  FB  FC                                                                                     electrical force equal to its weight is given by
                                                            29.   q1 , q2 , q3 and q4 are point charge located at
      (c)    FA  ( FB = FC )     (d)   FA  ( FB = FC )                                                                                 (a)    mge                (b)
                                                                                                                                                                           mg                        (a)       EA  EB           (b)   E A  EB / r
                                                                  points as shown in figure. S is the spherical                                                             e
                                                                  Gaussian surface of radius R. Which of the                                                                                         (c)       EA  EB           (d)   E A = EB / r 2
26.   There is a point charge +q inside a hollow sphere
      and a point charge –q outside its surface. Find the         following is true according to Gauss’s law?                                    e                         e2 g
                                                                                                                                         (c)                       (d)                         34.   If the electric field intensity in a fair weather
      total flux passing through the sphere.                                                                                                    mg                         2m
                                                                                                q +q +q                                                                                              atmosphere is 100 V/m, then the total charge on
             −q                         q
                                                                  (a)    (                     )
                                                                              E1 + E2 + E3 .dA = 1 2 3
                                                                                                   20                             32.   The figure shown is a plot of electric field lines          the earth’s surface is (radius of the earth is 6400
      (a)                         (b)                                                                                                                                                                km)
             0                         0                                                                                               due to two charges Q1 and Q2 . The sign of
                                                                                                            q1 + q2 + q3                                                                             (a)    4.55 107 C         (b)     4.55 108 C
                                                                          (E + E               )                                        charges is
                                        2q                        (b)                      + E3 .dA =                                                                                                (c)       4.55 105 C       (d)   4.55 106 C
                                                                                                                 0
                                                                                   1   2
      (c)   Zero                  (d)
                                        0
                                                                                                                                                                                               35.   Charge 2Q and –Q are placed as shown in figure.
                                                                                                                 q1 + q2 + q3
27.   Figure shows the electric lines of force emerging           (c)     (E + E  1   2                )
                                                                                           + E3 + E4 .dA =
                                                                                                                      0
                                                                                                                                                                                                     The point at which electric field intensity is zero
                                                                                                                                                                                                     will be somewhere
      from a charged body. If electric field at A and B
      are E A and E B respectively and distance
                                                                                                               q1 + q2 + q3 + q4
      between A and B is r then                                   (d)     (E + E 1    2            )
                                                                                           + E3 + E4 .dA =
                                                                                                                       0
                                                                                                                                                                                                     (a)   Between –Q and 2Q
                                                                                                                                                                                                     (b)   On the left of –Q
      (c)   On the right of 2Q                                    (b)     particle trajectory is more curved                      43.   An electric dipole consists of two opposite                 (c)   One
      (d)   On the perpendicular bisector of line                 (c)    Both trajectories are equally curved and in                     charges each of magnitude 1C separated by a
                                                                                                                                                                                                     (d)   Nothing certain can be said
            joining the charges                                          same direction                                                  distance of 2 cm. The dipole is placed in an
                                                                                                                                         external field of 105 N / C . The maximum torque      48.   An electric dipole is placed in non-uniform
                                                                  (d)    Both trajectories are equally curved and in
36.   Figure shows electric field lines due to a charge                                                                                  on the dipole is                                            electric field. It may experience
                                                                         same direction
      configuration, from this we conclude that                                                                                                                                                      (a)   Resultant force and couple
                                                            39.   Electric field in a region is uniform and is given                     (a)    2  10−4 N m       (b)    2  10−3 N m
                                                                  by E = aiˆ + bjˆ + ckˆ . Electric flux associated with                               −3                       −3
                                                                                                                                                                                                     (b)   Only resultant force
                                                                                                                                         (c)    4  10 N m         (d)    10 N m
                                                                  a surface of area A = R 2iˆ is                                                                                                    (c)   Only couple
                                                                                                                                   44.   A charge Q is situated at the centre of a cube. The
                                                                  (a)    aR 2                      (b)         3aR2                    electric flux through one of the faces of the cube          (d)   All of these
                                                                                                                                         is                                                    49.   The given figure shows, two parallel plates A and
                                                                  (c)    2abR                       (d)         acR
      (a)    q1 and q2 are positive and q2  q1                                                                                                 Q                           Q                        B of charge density + and – respectively.
                                                            40.   A small conducting sphere is hanged by an                              (a)                       (b)
      (b)    q1 and q2 are positive and q1  q2                                                                                                 0                         20                       Electric intensity will be zero in region.
                                                                  insulating thread between the plates of a parallel
      (c)    q1 and q2 are negative and q1  q2                   plate capacitor as shown in figure. The net force
                                                                                                                                                 Q                          Q
      (d)    q1 and q2 are negative and q2  q1                   on the sphere is                                                       (c)                       (d)
                                                                                                                                                40                        60
37.   Six point charges are placed at the vertices of a
      hexagon of slide 1 m as shown in figure. Net                                                                                 45.   A charge q is placed at the centre of the open end
      electric field at the centre of the hexagon is                                                                                     of a cylindrical vessel. The flux of the electric
                                                                                                                                         field through the surface of the vessel is                  (a)   I only                (b)   II only
                                                                                                                                                                           q                         (c)   III only              (d)   Both (1) & (3)
                                                                                                                                         (a)   Zero                (b)
                                                                                                                                                                           0
                                                                                                                                                                                               50.   A sphere of radius R has a uniform distribution of
                                                                  (a)    Towards plate A            (b)        Towards plate B                   q                         2q                        electric charge in its volume. At a distance x from
                                                                                                                                         (c)                       (d)                               its centre for x < R, the electric field is directly
                                                                  (c)    Upwards                    (d)        Zero                             20                        0
                                                                                                                                                                                                     proportional to
                                         6q                 41.   Electric charge q, q and –2q are placed at the                   46.   A charged body has an electric flux  associated
      (a)   Zero                  (b)                                                                                                                                                                          1                       1
                                                                  corners of an equilateral triangle ABC of side L.                      with it. The body is now placed inside a metallic           (a)                         (b)
                                        40                                                                                                                                                                   x2                      x
                                                                  The magnitude of electric dipole moment of the                         container. The flux , outside the container will
              q                          q                        system is
      (c)                         (d)                                                                                                    be                                                          (c)   x                     (d)   x2
             0                        40
38.   A proton and an  particle having equal kinetic
                                                                  (a)    qL                         (b)         2qL                      (a)   Zero                (b)    Equal to            51.   The electric field at 20 cm from the centre of a
      energy are projected in a uniform transverse                                                                                                                                                   uniformly charged non-conducting sphere of
                                                                  (c)      3qL                      (d)         4qL                      (c)   Greater than       (d)    Less than                 radius 10 cm is E. Then at a distance 5 cm from
      electric field as shown in figure
                                                                                                                                   47.   A charge of 1 coulomb is located at the centre of           the centre it will be
                                                            42.   The torque  acting on an electric dipole of dipole
                                                                                                                                         a sphere of radius 10 cm and a cube of side 20 cm.          (a)   16 E                  (b)   4E
                                                                  moment p in an electric field E is
                                                                                                                                         The ratio of outgoing flux from the sphere and
                                                                                                                                         cube will be                                                (c)   2E                    (d)   Zero
                                                                  (a)     = p.E                    (b)          = p E
                                                                                                                                         (a)   More than one                                   52.   If a small sphere of mass m and charge q is hung
                                                                  (c)     = pE                     (d)          = pE                                                                               from a silk thread at an angle  with the surface
      (a)   Proton trajectory is more curved                                                                                             (b)   Less than one
ELECTRIC CHARGES AND FIELDS                                                                                                     ELECTRIC CHARGES AND FIELDS
      of a vertical charged conducting plate, then for             then the electric field at a point in between the            60.   In which of the following cases electric field at         (a)     iˆ                   (b)     − iˆ
      equilibrium of sphere, the surface charge density            plates is given by                                                 point P is non-zero?
      of the place is                                                                                                                                                                           (c)      ĵ                  (d)     − ĵ
                                                                            Q                             Q
                                                                   (a)                            (b)                                 (a)
                 mg                       2mg                          A0                          2 A0                                                                             63.   If electric field in a region is given by
      (a)    0      tan      (b)    0       tan 
                 q                        q 
                                                                             Q                                                                                                                        E0 .x ˆ E0 . y 2 ˆ E0 .z 3 ˆ
                                                                   (c)                            (d)   Zero                                                                                    E=          i + 2 j+ 3 k
                                            mg                           4 A0                                                                                                                       l        l         l
      (c)    0 ( mgq) tan      (d)    0      tan 
                                            3q             57.   If atmospheric electric field is approximately 150                                                                           Where E0 = 5  103 N / C , l = 2cm .
                                                                                                                                      (b)
53.   Two long thin charged rods with charged density              volt/m and radius of the earth is 6400 km, then
                                                                                                                                                                                                then electric flux passing through the plane x = 2
       each are placed parallel to each other at a                the total charge on the earth’s surface is
                                                                                                                                                                                                cm. The plane is a square of side 2 cm.
      distance d apart. The force per unit length exerted          (a)    6.8 105 coulomb                                            (c)
      on one rod by the other will be                                                                                                                                                                         N .m2                      N .m 2
                                                                                                                                                                                                (a)     2                    (b)     3
                    1                                            (b)    6.8 106 coulomb                                                                                                                     C                          C
       Where k =        
                  40 
                                                                   (c)    6.8 104 coulomb                                                                                                                    N .m2
                                                                                                                                                                                                (c)     5                    (d)     None of these
                                                                                                                                      (d)                                                                      C
             k 2                       k 2 2                     (d)    6.8 10 coulomb
                                                                                     9
      (a)                        (b)
               d                          d                                                                                                                                               64.   Which of the following is true, when a dipole is
                                                             58.   Three particles are projected in a uniform electric          61.   For two equal and opposite charges placed at              placed in non-uniform electric field?
             k 2                       k 2 2                     field with same velocity perpendicular to the field                distance d, then electric field will be zero at
      (c)                        (d)
              d2                          d2                       as shown. Which particle has highest charge to                                                                               (a)    Net force on it is equal to zero
                                                                   mass ratio?                                                                                                                  (b)    Torque may or may not be zero
54.   Two isolated metallic spheres of radii 2 cm and 4
      cm are given equal charge, then the ratio of                                                                                                                                              (c)    Torque must be zero
      charge density on the surface of the sphere will be
                                                                                                                                                                                                (d)    All of these
      (a)   1:2                  (b)    4:1
                                                                                                                                      (a)   Mid way                                       65.   Which of the following is true for electric flux
      (c)   8:1                  (d)    1:4                                                                                                                                                     through a Gaussian surface?
                                                                                                                                      (b)   Distance d from (–q) and to the left
55.   Gauss’s law can help in easy calculation of                                                                                                                                               (a)    It depends on magnitude of net charge
      electric field due to                                                                                                           (c)   Distance d from (+q) and to the right
                                                                   (a)    A                                                                                                                            enclosed by Gaussian surface
      (a)   Moving charge only                                                                                                        (d)   No finite distance
                                                                   (b)    B                                                                                                                     (b)    Electric flux is a scalar quantity
      (b)   Any charge configuration                                                                                            62.   The linear charge density upon the semi-circular
                                                                   (c)    C                                                                                                                     (c)    Electric flux is independent of shape of
                                                                                                                                      ring, on both side is same in magnitude, the
      (c)   Any symmetrical charge configuration                                                                                      electric field at O is along                                     Gaussian surface enclosing the charge
                                                                   (d)    All have same charge to mass ratio
      (d)   Some      special      symmetric       charge                                                                                                                                       (d)    All are true
                                                             59.   The dimensional formula of linear charge density
            configuration                                           is                                                                                                                   66.   A small spherically symmetric charge q is placed
56.   Each of two large conducting parallel plates has                                                                                                                                          at one vertex of a cube as shown. The flux
                                                                           M L T A                   M L T A
                                                                              −1 −1 +1                      0 −1 +1
                                                                   (a)                            (b)                                                                                           through the faces ABCD and HGEF are,
      one sides surface area A. If one of the plates is
      given a charge Q whereas the other is neutral,                                                                                                                                            respectively,
                                                                   (c)     M −1L−1T +1 A−1    (d)    M 0 L−1T +1 A−1 
              q    q                          q
      (a)        ,               (b)    0,
             240 240                       80
              q                          q                         (a)    11                      (b)   17
      (c)        ,0              (d)         ,0
             80                        240
                                                                   (c)    21                      (d)   25
67.   Five identical charges +q are placed at five corner    70.   Two short dipoles, each of dipole moment p, are
      of a regular hexagon of side a. The magnitude of             placed at origin. The dipole moment of one dipole
                                    q                              is along x-axis, while that of other is along y-axis.
      electric field at centre is         . The value of n
                                  n0 a2                          The electric field at a point (a, 0) is given by
      is                                                             np
                                                                           . The value of n is
      (a)   1                    (b)    2                          40 a3
68.   The electric field at point O, due to the segment            (c)    3                       (d)   5
      of a ring, whose linear charge density is 8 C/cm
      is n× 1013 V/m . The value on n is
                                                             71.   If the electric field is given by 3iˆ + 2 ˆj + 6kˆ . The
      (a)   10                   (b)    16
                                                                   electric flux through a surface area 20 unit lying
      (c)   13                   (d)    18                         in xy plane is n unit. The value of n is