the electric field components in fig 1.27 are ex = ax1/2, ey = ez = 0, in which a = 800 n/cm1/2. cal
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the electric field components in fig. 1.88 are ex = a x1/2, ey = ez = 0, in which a = 800 n / cm2.
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the electric field components in fig. are ex = αx1/2, ey = ez = 0, in which α = 800
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the electric field components in fig are ex=αx1/2,ey=ez=0 in which α=800n/c−m1/2. consider the cube
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the electric field component in fig 1.67 are ex = axi,ey=ez,= 0 in which a = 800 n/c-m 2.cube shown
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the electric field components in fig. 1.24 areex = ax1/2, ey = ez = 0, in which a = 800 n/c m1/2....
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the electric field components in fig. 1.27 are ex = ax1/2, ey = ez = 0, in which a = 800 n/c m1/2.
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example 1.11 the electric field components in fig. 1.27 are ex = αx 1/2 , ey = ez = 0, in which..
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example 1.10 the electric field components in fig. 1.24 are ex = αχ¹/2, ε = ε = 0, in which a = 800
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the electric field components in fig. are ex = ax1/2, ey = ez = 0 in which a = 800 n/cm1/2. calculat
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example 1.10 electric charges and fields || the electric field components in fig. are ex =ax½, ey=ez
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the electric field components in the given figures are e_x=αx^1 / 2, e_y=e_z=0 in which α=800 nc...
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the electric field components in fig. are `e_(x)=ax^(1//2), e_(y)=e_ | class 12 physics | doubtnut
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the electric components in the figure are `e_(x)=alphax^(1//2) ,e_(y)=0,e_(z)=0` where `alp
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the electric field components in the given figure are \( e_{x}=\alpha x^{1 / 2} \), \( e_{y}=e_{...
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