Solve the ff. problems. Show your solution using the GRESA method. 1. Determine the electrical force of attraction between two balloons with separate charges of +3.5 x 10-8 C and -2.9 x 10-8 C when separated by a distance of 0.65 m. 2. Two balloons are charged with an identical quantity and type of charge: -6.25 nC. They are held apart ata separation distance of 61.7 cm. Determine the magnitude of the electrical force of repulsion between them. 3. Two balloons with charges of +3.37 uC and -8.21 uC attract each other

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Chapter1: Units, Trigonometry. And Vectors
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Solve the ff. problems. Show your solution using the GRESA method.
1. Determine the electrical force of attraction between two balloons with
separate charges of +3.5 x 10-8 C and-2.9 x 10-8 C when separated
by a distance of 0.65 m.
2. Two balloons are charged with an identical quantity and type of
charge: -6.25 nC. They are held apart at a separation distance of 61.7
cm. Determine the magnitude of the electrical force of repulsion
between them.
3. Two balloons with charges of +3.37 uC and -8.21 uC attract each other
with a force of 0.0626 Newton. Determine the separation distance
between the two balloons.
Transcribed Image Text:Solve the ff. problems. Show your solution using the GRESA method. 1. Determine the electrical force of attraction between two balloons with separate charges of +3.5 x 10-8 C and-2.9 x 10-8 C when separated by a distance of 0.65 m. 2. Two balloons are charged with an identical quantity and type of charge: -6.25 nC. They are held apart at a separation distance of 61.7 cm. Determine the magnitude of the electrical force of repulsion between them. 3. Two balloons with charges of +3.37 uC and -8.21 uC attract each other with a force of 0.0626 Newton. Determine the separation distance between the two balloons.
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