Suppose you have 5 point charges q1 to q5 distributed along a semi-circle maintaining equal distance. The charge q6 is at the center of the circle. The radius of the semi-circle is R=44cm and the magnitude of the charges are as follows : q1=q5=20μC, q2=q4=38μC and q3=q6=−38μC. e) Find the vector that points from q4 to q6 and call it r⃗4,6. x component of the vector y component of the vector f) Calculate the coulomb force on q6 due to q4 in unit vector notation and call it F⃗4,6. x component of the force y component of the force g) Calculate the Net Electric force on q6 due to all other charges. x component of the force y component of the force
Suppose you have 5 point charges q1 to q5 distributed along a semi-circle maintaining equal distance. The charge q6 is at the center of the circle. The radius of the semi-circle is R=44cm and the magnitude of the charges are as follows : q1=q5=20μC, q2=q4=38μC and q3=q6=−38μC. e) Find the vector that points from q4 to q6 and call it r⃗4,6. x component of the vector y component of the vector f) Calculate the coulomb force on q6 due to q4 in unit vector notation and call it F⃗4,6. x component of the force y component of the force g) Calculate the Net Electric force on q6 due to all other charges. x component of the force y component of the force
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Suppose you have 5 point charges q1 to q5 distributed along a semi-circle maintaining equal distance. The charge q6 is at the center of the circle. The radius of the semi-circle is R=44cm and the magnitude of the charges are as follows : q1=q5=20μC, q2=q4=38μC and q3=q6=−38μC.
e) Find the vector that points from q4 to q6 and call it r⃗4,6.
x component of the vector
y component of the vector
f) Calculate the coulomb force on q6 due to q4 in unit vector notation and call it F⃗4,6.
x component of the force
y component of the force
g) Calculate the Net Electric force on q6 due to all other charges.
x component of the force
y component of the force
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