Home
Class 11
PHYSICS
A positive point charge 50mu C is locate...

A positive point charge `50mu C` is located in the plane xy at a point with radius vector `vecr_(0)=2hat(i)+3hat(j)`. The electric field vector `vec(E )` at a point with radius vector `vec(r )=8 hat(i)-5 hat(j)`, where `r_(0)` and r are expressed in meter, is

A

`1200 V//m`

B

`0.04 V//m`

C

`900 V//m`

D

`4500 V//m`

Text Solution

Verified by Experts

The correct Answer is:
D


`E=(KQ)/r^(2) hat(r)=(9xx10^(9)xx50xx10^(-6))/(100)xx((6hat(i)-8hat(j))/(10))`
`=4500 V//m`.
Promotional Banner

Topper's Solved these Questions

  • MISCELLANEOUS

    ALLEN|Exercise Exersice-03|7 Videos
  • MISCELLANEOUS

    ALLEN|Exercise ASSERTION-REASON|18 Videos
  • MISCELLANEOUS

    ALLEN|Exercise Part -II Example Some worked out Examples|1 Videos
  • KINEMATICS (MOTION ALONG A STRAIGHT LINE AND MOTION IN A PLANE)

    ALLEN|Exercise BEGINNER S BOX-7|8 Videos
  • PHYSICAL WORLD, UNITS AND DIMENSIONS & ERRORS IN MEASUREMENT

    ALLEN|Exercise EXERCISE-IV|8 Videos

Similar Questions

Explore conceptually related problems

Find the unit vector of the vector vec(r ) = 4hat(i) - 2hat(j) + 3 hat(k)

Find the projection of the vector vec(P) = 2hat(i) - 3hat(j) + 6 hat(k) on the vector vec(Q) = hat(i) + 2hat(j) + 2hat(k)

A positive charge Q=50 muC is located in the xy plane at a point having position vector vec(r)_(0)=(2hat(i)+3hat(j))m where hat(i) and hat(j) are unit vectors in the positive directions of X and Y axis respectively. Find : (a) The electric intensity vector and its magnitude at a point having co-ordinates (8m, -5m). (b) Work done by external agent in transporting a charge q=10 muC from (8m, 6m) to the point (4m, 3m).

Find the projection of the vector vec a=2 hat i+3 hat j+2 hat k on the vector vec b=2 hat i+2 hat j+ hat k .

The projection of a vector vec(r )=3hat(i)+hat(j)+2hat(k) on the x-y plane has magnitude

Find the image of the point having position vector hat(i) + 3hat(j) + 4hat(k) in the plane vec(r ).(2hat(i) - hat(j) + hat(k))+ 3=0

The number of unit vectors perpendicular to the vector vec(a) = 2 hat(i) + hat(j) + 2 hat(k) and vec(b) = hat(j) + hat(k) is

Find the scalar and vector products of two vectors vec(a)=(2hat(i)-3hat(j)+4hat(k)) and vec(b)= (hat(i)-2hat(j)+3hat(k)) .

For a body, angular velocity (vec(omega)) = hat(i) - 2hat(j) + 3hat(k) and radius vector (vec(r )) = hat(i) + hat(j) + vec(k) , then its velocity is :

Unit vector parallel to the resultant of vectors vec(A)= 4hat(i)-3hat(j) and vec(B)= 8hat(i)+8hat(j) will be

ALLEN-MISCELLANEOUS-Exercise-01
  1. An electron is projected as in figure with kinetic energy K, at an ang...

    Text Solution

    |

  2. A proton sists at coordinates (x,y)=(0, 0), and an electron at (d, h),...

    Text Solution

    |

  3. A positive point charge 50mu C is located in the plane xy at a point w...

    Text Solution

    |

  4. Three point charges of 1C, 2C and 3C are placed at the corners of an e...

    Text Solution

    |

  5. Rank the work required to assemble the charge distribution below from ...

    Text Solution

    |

  6. The are AB with the centre C and infinitely long wire having linear ch...

    Text Solution

    |

  7. The diagram shows the electric field lines produced by an electrostali...

    Text Solution

    |

  8. A charge +q is placed at the origin O of x-y axes as shoen in the figu...

    Text Solution

    |

  9. Two identical thin rings, each of radius R, are coaxially placed at a...

    Text Solution

    |

  10. Two identical particles of mass m carry a charge Q each. Initially one...

    Text Solution

    |

  11. In a regular polygon of n side, each corner is at a distance r from th...

    Text Solution

    |

  12. An alpha particle of energy 5 MeV is scattered through 180^(@) by a fi...

    Text Solution

    |

  13. In a uniform electric field a charge of 3 C experiences a force of 300...

    Text Solution

    |

  14. Uniform electric field of magnitude 100 Vm^-1 in space is directed alo...

    Text Solution

    |

  15. The equation of an equipotential line in an electric field is y = 2 x...

    Text Solution

    |

  16. In a certain region of space, the potential is given by : V=k[2x^(2)-y...

    Text Solution

    |

  17. (Figure 3.141) shows two equipotential lines in the x plane for an ele...

    Text Solution

    |

  18. The refreactive index of space changes with y, who function is given ...

    Text Solution

    |

  19. Three equal charges are placed at the corners of an equilateral triang...

    Text Solution

    |

  20. A non-conducting ring of radius 0.5 m carries a total charge of 1.11xx...

    Text Solution

    |