3. Second, calculate the electric field vector due to source 2 at the target location.
3. Second, calculate the electric field vector due to source 2 at the target location.
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![The following sequence of problems guides you through the calculation of the total
electrie field at a target point in space when there are two source partieles. We'll stick
to two dimensions (get rid of the z-axis) just to reduce some of the arithmetic.
The source partieles are both located on the z-axis with source 1 at z = 5 em and
source 2 at za = -5 cm. Source 1 has charge -5 uC while source 2's charge is 3 uC.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2a39407e-8b6e-45ca-91f9-5cf33a72fdc4%2Feddd033d-ec9e-45e6-a1fd-3f8b5bba5032%2Fcbrs28m_processed.png&w=3840&q=75)
Transcribed Image Text:The following sequence of problems guides you through the calculation of the total
electrie field at a target point in space when there are two source partieles. We'll stick
to two dimensions (get rid of the z-axis) just to reduce some of the arithmetic.
The source partieles are both located on the z-axis with source 1 at z = 5 em and
source 2 at za = -5 cm. Source 1 has charge -5 uC while source 2's charge is 3 uC.
![3. Second, caleulate the electric field vector due to source 2 at the target location.
[Enter your answer with the following format: X*i+Y*j. where you substitute the
numerical values of the components along the z and y directions in place of the 'X
and "Y" in the expression. The letters i and j represent the unit vectors along different
directions. Use the asterisks to denote multiplication. Make sure to convert your units
to standard MKS base units and use two-decimal precision. Denote powers of ten
with engineering notation, for example 1.23 x 10 should be expressed as "1.23E-
45.)
particle 2 electric fleld vector
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Transcribed Image Text:3. Second, caleulate the electric field vector due to source 2 at the target location.
[Enter your answer with the following format: X*i+Y*j. where you substitute the
numerical values of the components along the z and y directions in place of the 'X
and "Y" in the expression. The letters i and j represent the unit vectors along different
directions. Use the asterisks to denote multiplication. Make sure to convert your units
to standard MKS base units and use two-decimal precision. Denote powers of ten
with engineering notation, for example 1.23 x 10 should be expressed as "1.23E-
45.)
particle 2 electric fleld vector
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