. An electron is initially moving orizontally at 3x10^6 m/s when it nters a uniform electric field of 5.6 N/C. 91 a) Calculate the magnitude of the 92 lectric force (b) find the vertical 93 cceleration of electron using this 97 94 95 prmula (Fe-mg=ma) 96 . Calculate the electric flux of the closed 98 urfaces c and d given the following harges: q1= +3C, q2= +1C, q3= -5C, q4= 9C, q5= -4C, q6= -2C q7= -3C, q8= -1C

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1. A piece of plastic has a net charge of +2.0 nC. How many more protons do this piece of plastic
have?
2. An electron is initially moving horizontally at Vo= 3.0X10^6 m/s when it enters a uniform electric
field of 5.6 N/C directed vertically down. What are the horizontal and vertical components of its
2.0 us after entering the electric field?
3. Give the Sl unit of the following
Potential
Work
Potential Energy
Electric Current
Electric Charge
4. An electron is initially moving
horizontally at 3x10^6 m/s when it
enters a uniform electric field of 5.6 N/C.
91
(a) Calculate the magnitude of the
92
electric force (b) find the vertical
93
acceleration of electron using this
formula (Fe-mg=ma)
97
94
q5
96
5. Calculate the electric flux of the closed
surfaces c and d given the following
charges: q1= +3C, q2= +1C, q3= -5C, q4=
-9C, q5= -4C, q6= -2C q7= -3C, q8= -1C
Transcribed Image Text:1. A piece of plastic has a net charge of +2.0 nC. How many more protons do this piece of plastic have? 2. An electron is initially moving horizontally at Vo= 3.0X10^6 m/s when it enters a uniform electric field of 5.6 N/C directed vertically down. What are the horizontal and vertical components of its 2.0 us after entering the electric field? 3. Give the Sl unit of the following Potential Work Potential Energy Electric Current Electric Charge 4. An electron is initially moving horizontally at 3x10^6 m/s when it enters a uniform electric field of 5.6 N/C. 91 (a) Calculate the magnitude of the 92 electric force (b) find the vertical 93 acceleration of electron using this formula (Fe-mg=ma) 97 94 q5 96 5. Calculate the electric flux of the closed surfaces c and d given the following charges: q1= +3C, q2= +1C, q3= -5C, q4= -9C, q5= -4C, q6= -2C q7= -3C, q8= -1C
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