are connected as shown in the figure. If galvanometer shows no deflection at the point N
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A battery of emf E0 = 12V is connected across a 4m long uniform wire having resistance m/4Ω . The cells of small emf ε1 = 2V and ε 2 = 4V having internal resistance 2Ω and 6Ω respectively, are connected as shown in the figure. If galvanometer shows no deflection at the point N, find the distance of point N from the point A is equal to :
03
Dec
A battery of emf E0 = 12V is connected across a 4m long uniform wire having resistance m/4Ω . The cells of small emf ε1 = 2V and ε 2 = 4V having internal resistance 2Ω and 6Ω respectively, are connected as shown in the figure. If galvanometer shows no deflection at the point N, [...]
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A battery of emf E0 = 12V is connected across a 4m long uniform wire having resistance m/4Ω . The cells of small emf ε1 = 2V and ε 2 = 4V having internal resistance 2Ω and 6Ω respectively ,
are connected as shown in the figure. If galvanometer shows no deflection at the point N ,
find the distance of point N from the point A is equal to : ,
A battery of emf E0=12V is connected across a 4m long uniform wire having resistance 4Ωm. The cells of small emfs ε1=2V and ε2−4V having internal resistance 2Ω and 6Ω respectively, are connected as shown in the figure. If galvanometer shows no deflection at the point N, the distance of point N from teh point A is equal to
15
Nov
A battery of emf E0=12V is connected across a 4m long uniform wire having resistance 4Ωm. The cells of small emfs ε1=2V and ε2−4V having internal resistance 2Ω and 6Ω respectively, are connected as shown in the figure. If galvanometer shows no deflection at the point N, the distance of point N from teh point [...]
Tags:
A battery of emf E0=12V is connected across a 4m long uniform wire having resistance 4Ωm. The cells of small emfs ε1=2V and ε2−4V having internal resistance 2Ω and 6Ω respectively ,
are connected as shown in the figure. If galvanometer shows no deflection at the point N ,
the distance of point N from teh point A is equal to ,