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Two point charges of +2.0mu C and -6.0mu C are located on the x -axis at x=-1.0cm and x=+2.0cm respectively. Where should a third charge

Two point charges of

+2.0\\\\mu C

and

-6.0\\\\mu C

are located on the

x

-axis at

x=-1.0cm

and

x=+2.0cm

respectively. Where should a third charge of be placed on the

+x

-axis so that the potential at the origin is equal to zero?

(k

)

=(1)/(4)\\\\pi \\\\epsi _(0)=

(

8.99\\\\times 10^(9)(N)*(m^(2))/(C^(2)))

\

x=4.0cm\ x=1.0cm\ x=3.0cm\ x=2.0cm\ x=5.0cm
image text in transcribed
Two point charges of +2.0C and 6.0C are located on the x-axis at x=1.0cm and x=+2.0cm respectively. Where should a third charge 0 be placed on the +x-axis so that the potential at the origin is equal to zero? (k=1/40=8.99109Nm2/C2) x=4.0cmx=1.0cmx=3.0cmx=2.0cmx=5.0cm

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