Two point charges, Q1=-1 nC and Q2=6 nC are placed 5 cm apart as shown above. Determine the magnitude and direction of the resultant electric field strength at point M where b=7 cm following the step below. I) Draw the electric field strength at point M II) Find r1M and r2M Find E1=kQ1/r1M2 and E2=kQ2/r2M2 III) Find x and y component of E1 and E2 and put it in the table. IV) Find EMx and EMy Then, find EM and the
Two point charges, Q1=-1 nC and Q2=6 nC are placed 5 cm apart as shown above. Determine the magnitude and direction of the resultant electric field strength at point M where b=7 cm following the step below. I) Draw the electric field strength at point M II) Find r1M and r2M Find E1=kQ1/r1M2 and E2=kQ2/r2M2 III) Find x and y component of E1 and E2 and put it in the table. IV) Find EMx and EMy Then, find EM and the
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Two point charges, Q1=-1 nC and Q2=6 nC are placed 5 cm apart as shown above. Determine the magnitude and direction of the resultant electric field strength at point M where b=7 cm following the step below.
I) Draw the electric field strength at point M
II) Find r1M and r2M
Find E1=kQ1/r1M2
and
E2=kQ2/r2M2
III) Find x and y component of E1 and E2 and put it in the table.
IV) Find
EMx and EMy
Then, find EM and the ?
Second picture below for reference

Transcribed Image Text:а
M
b
Q2

Transcribed Image Text:Two point charges, Q1=-1 nC and Q2=6 nC are placed 5 cm apart as shown
above. Determine the magnitude and direction of the resultant electric field
strength at point M where b=7 cm following the step below.
Draw the electric field strength at point M.
Find rim=
m and r2m=
m.
kQ1
Find E1=
N C-1 and
%3D
kQ2
E2=
N C-1.
Find x and y component of E1 and E2 and put it in the table.
Find
EMx = E1x + E2x=|
N C-1
EMy = E1y + E2y=
N C-1
Then, find
ΕΜ-ν(E Mx}) + (E_My') =
N C-1 and
0=
The direction of F1 is
choose one
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