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If `vec(e_(1))` and `vec(e_(2))` are two unit vectors and `theta` is the angle between them, the
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If `vec(e_(1))` and `vec(e_(2))` are two unit vectors and `theta` is the angle between them, then `sin (theta/2)` is:
If `vec(e_(1))` and `vec(e_(2))` are two unit vectors and `theta` is the angle between them, the
If `V=2r^(2)` then find (i) `vec(E) (1, 0, -2)` (ii) `vec(E) (r=2)`
If \( V=2 r^{2} \) then find out (i) \( \vec{E}(1,0,-2) \) (ii) \( ...
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If` vece_(1) = ( 1,1,1) and vece_(2) = ( 1,1,-1) and veca and vecb` are two vectors that `
An electric field is expressed as vec E = 2 hat i + 3 hat j. Find the potential difference (V_A ...
An electric field `vecE = vec(i20 + vecj30 ) NC^(-1)` exists in the space. If the potential at the
An electric field given by `vec(E )= 4hat(i)+3(y^(2)+2)hat(j)` pieces Gaussian cube side `1m` place
An electric field \(\vec{E}=(2 x \hat{i}) N C^{-1}\) exists in space. A cube of side \(2 m\) is ....
An electric field is expressed as `vec E = 2 hat i + 3 hat j`. Find the potential difference `(V...
ABC is an equilateral triangle of side 2m. If `vec(E ) = 10 NC^(-1)` th |Class 12 PHYSICS | Doubtnut
If uniform electric field ` vec E = E_ 0 hati + 2 E _ 0 hatj `, where ` E _ 0 ` is
If \( \vec{E} \) and \( \vec{B} \) represent the electric and magne...
The electric field in a region is given by \(\vec{E}=(A x+B) \hat{i}\), where \(E\) is in \(N C^....
An electric field vecE = vec(i20 + vecj30 ) NC^(-1) exists in the space. If the potential at the...
If \( \vec{E}=2 y \hat{i}+2 x \hat{j} \), then find \( V(x, y, z) \...
Consider an electric field \( \vec{E}=E_{0} \hat{x} \) where \( E_{0} \) is a constant. The flux...
Find `V_(ab)` in an electric fiels `vec E = (2 hat I + 3 hat j + 4 hat k) NC^-1` where `vec r_a ...
An electric field given by `vec(E)=4hat(i)+3(y^(2)+2) hat(j)` pierces a gaussian
The electric field in a region is given by \( \vec{E}=(A x+B) \hat{i} \), where \( E \) is in \(...
ABC is an equilateral triangle of side 2m. If `vec(E ) = 10 NC^(-1)` | Class 12 Physics | Doubtnut
If `vec(E)=2x^(2) hat(i)-3y^(2) hat(j)`, then V (x, y, z)
If electric field around a surface is given by |vec(E)|=(Q_(in))/(epsilon_0|A|) where 'A' ...
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