Particles of charge +65 μC, +48 μC and -95 μC are placed in a line (Figure 2.8). The center one is 0.35 m from each other of the others. Calculate the net force on each charge due to the other two.
Particles of charge +65 μC, +48 μC and -95 μC are placed in a line (Figure 2.8). The center one is 0.35 m from each other of the others. Calculate the net force on each charge due to the other two.
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Particles of charge +65 μC, +48 μC and -95 μC are placed in a line (Figure 2.8). The center one is 0.35 m from each other of the others. Calculate the net force on each charge due to the other two.
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E 5-1-ELECTRIC_CHARGE_AND_FIE X
O File | D:/Users/Acer/Desktop/GENERAL%20PHYSICS%201/Second%20Sem/Science-Pocket-Lesson-in-General-Physics-2.pdf
SAIN PEDRO RELOGATION CENTER NATIONAL MIGH SCHOOL - SCIENGE DEPAKT MENTU ZUZU
FLASH CHECK
Solve the following problems using Coulomb's Law.
1. What is the magnitude of the electric force of attraction between an iron nucleus (g = +26e)
and its innermost electron if the distance between them is 1.5 x 10-12 m? e = - 1.6 x 10-19 C
(charge of one electron)
2. Particles of charge +65 µC, +48 µC and -95 µC are placed in a line (Figure 2.8). The center
one is 0.35 m from each other of the others. Calculate the net force on each charge due to
the other two.
+65 µC
+48 µC
-95 µC
Figure 2.8 Problem 2
0.35 m
0.35 m
3. Determine the magnitude and direction of the electric force on an electron in a uniform electric
field of strength 2460 N/C that points due east.
9:44 PM
P Type here to search
3/23/2021"
Transcribed Image Text:A Science-Pocket-Lesson-in-Gener X
E 5-1-ELECTRIC_CHARGE_AND_FIE X
O File | D:/Users/Acer/Desktop/GENERAL%20PHYSICS%201/Second%20Sem/Science-Pocket-Lesson-in-General-Physics-2.pdf
SAIN PEDRO RELOGATION CENTER NATIONAL MIGH SCHOOL - SCIENGE DEPAKT MENTU ZUZU
FLASH CHECK
Solve the following problems using Coulomb's Law.
1. What is the magnitude of the electric force of attraction between an iron nucleus (g = +26e)
and its innermost electron if the distance between them is 1.5 x 10-12 m? e = - 1.6 x 10-19 C
(charge of one electron)
2. Particles of charge +65 µC, +48 µC and -95 µC are placed in a line (Figure 2.8). The center
one is 0.35 m from each other of the others. Calculate the net force on each charge due to
the other two.
+65 µC
+48 µC
-95 µC
Figure 2.8 Problem 2
0.35 m
0.35 m
3. Determine the magnitude and direction of the electric force on an electron in a uniform electric
field of strength 2460 N/C that points due east.
9:44 PM
P Type here to search
3/23/2021
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