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Consider a uniform electric field E = 3 ...

Consider a uniform electric field `E = 3 xx 10^3 hat 1 N//C`. - What is the flux through the square of 10 cm if the normal to its plane makes a `60^@` angle with the x-axis?

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Consider a uniform electric field vecE = 3 xx 10^3 hati N C^-1 What is the flux through the same square, if the normal to its plane makes a 60^@ angle with the X-axis?

Consider a uniform electric field E = 3 xx 10^3 hat 1 N//C . - What is the flux of this field through a square of 10 cm on a side whose plane is parallel to the yz plane?

Given a uniform electric field vecE = 5xx10^-3hati NC^-1 What would be the flux through the same square, if the plane makes a 30^@ angle with the X-axis?

There is uniform electric field of 3xx10^3hati Nc^-1 what is the net flux of the uniform electric field through a cube of ide 20 cm oriented so that its faces are parallel to the co-ordinate planes?

A large plane sheet of charge having surface charge density 5.0 xx 10^-16 C m^-2 lies in the XY-plane . Find the electric flux through a circular area of radius 0.1 m , if the normal to the circular area makes an angle of 60^@ with the Z-axis. Given that epsilon_0 = 8.85 xx 10^-12 C^2N^-m^-2

A rectangular frame of wire of 25 cm x 15 cm is placed in a uniform electric field of strength 2 x 10^4N/C, such that the plane of the coil is normal to field. Find the electric flux linked with the rectangular frame. Calcuate the electric flux linked with the frame, when it is converted into a square

A rectangular frame of wire of 25 cm x 15 cm is placed in a uniform electric field of strength 2 x 10^4N/C, such that the plane of the coil is normal to field. Find the electric flux linked with the rectangular frame Calcuate the electric flux linked with the frame, when it is converted into a circular frame.

A rectangular frame of wire of 25 cm xx 15 cm is placed in a uniform electric field of strength 2xx10^4N/C , such that the plane of the coil is normal to field. Find the electric flux linked with the rectangular frame.

A point charge causes an electric flux of -1.0 xx 10^3 Nm^2//C to pass through a spherical Gaussian surface of 10.0 cm radius centred on the charge - What is the value of the point charge?

A point charge causes an electric flux of -1.0 xx 10^3 Nm^2//C to pass through a spherical Gaussian surface of 10.0 cm radius centred on the charge - If the radius of the Gaussian surface were doubled, how much flux would pass through the surface?

PSEB-ELECTRIC CHARGES AND FIELDS -EXERCISE
  1. Figure shows tracks of three charged particles in a uniform electrost...

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  2. Consider a uniform electric field E = 3 xx 10^3 hat 1 N//C. - What is ...

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  3. Consider a uniform electric field E = 3 xx 10^3 hat 1 N//C. - What is ...

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  4. What is the net flux of the uniform electric field through a cube of s...

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  5. Careful measurement of the electric field at the surface of a black bo...

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  6. Careful measurement of the electric field at the surface of a black bo...

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  7. A point charge +10 muC is a distance 5 cm directly above the centre of...

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  8. A point charge of 2.0 muC is at the centre of a cubic Gaussian surface...

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  9. A point charge causes an electric flux of -1.0 xx 10^3 Nm^2//C to pass...

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  10. A point charge causes an electric flux of -1.0 xx 10^3 Nm^2//C to pass...

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  11. A conducting sphere of radius 10 cm has an unknown charge. If the elec...

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  12. A uniformly charged conducting sphere of 2.4 m diameter has a surface ...

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  13. A uniformly charged conducting sphere of 2.4 m diameter has a surface ...

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  14. An infinite line charge produces a field of 9 xx 10^4 N//C at a distan...

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  15. Two large, thin metal plates are parallel and close to each other. On ...

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  16. Two large, thin metal plates are parallel and close to each other. On ...

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  17. Two large, thin metal plates are parallel and close to each other. On ...

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  18. An oil drop of 12 excess electrons is held stationary under a constant...

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  19. Which among the curves shown in Fig. cannot possibly represent electro...

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  20. In a certain region of space, electric field is along the z-direction ...

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