Three capacitors having a value of 10pF, 12uF and 15µF were electrically combined. Determine the equivalent capacitance if all of them were connected in a. series b. parallel

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Chapter1: Units, Trigonometry. And Vectors
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II. PROBLEM SOLVING
Determine what is asked. Write your solution(s).
1. Two charges, -1nC and +5nC, are positioned on rectangular coordinates (0.10, 0)
and (0, 0.5) correspondingly. Coordinates are in units of mm.
Calculate the electric field intensity of -1nC at the origin (in N/C).
Calculate the electric field intensity of +5nC at the origin (in N/C).
Find magnitude and direction of the combined electric field
a.
b.
с.
intensity of both charges at origin(in N/C, in degrees)
2. A couple of systems move electrons on conductor (a material that allows the flow
of electrons). System 1: 3 x 10* J@ 48V, and System 2: 6 x 105 J @ 24V.
* Calculate the electrical charge moving in system 1 (in C).
Calculate the electrical charge moving in system 2 (in C).
Determine which system moves more electrons. An electron has a
a.
b.
с.
charge of 1.6 x 10-19 C.
3. A couple of capacitors 1 x 10-6 F, 10 x 10- F and 100 x 10-6 F. These are
connected to a potential difference of 75V, 48V and 16V respectively.
Determine each capacitor's electrical charge (in C).
a.
Which capacitor stores more electrical charge?
4. Three capacitors having a value of 10pF, 12uF and 15µF were electrically
combined. Determine the equivalent capacitance if all of them were connected in
b.
a.
series
b.
& parallel
Transcribed Image Text:II. PROBLEM SOLVING Determine what is asked. Write your solution(s). 1. Two charges, -1nC and +5nC, are positioned on rectangular coordinates (0.10, 0) and (0, 0.5) correspondingly. Coordinates are in units of mm. Calculate the electric field intensity of -1nC at the origin (in N/C). Calculate the electric field intensity of +5nC at the origin (in N/C). Find magnitude and direction of the combined electric field a. b. с. intensity of both charges at origin(in N/C, in degrees) 2. A couple of systems move electrons on conductor (a material that allows the flow of electrons). System 1: 3 x 10* J@ 48V, and System 2: 6 x 105 J @ 24V. * Calculate the electrical charge moving in system 1 (in C). Calculate the electrical charge moving in system 2 (in C). Determine which system moves more electrons. An electron has a a. b. с. charge of 1.6 x 10-19 C. 3. A couple of capacitors 1 x 10-6 F, 10 x 10- F and 100 x 10-6 F. These are connected to a potential difference of 75V, 48V and 16V respectively. Determine each capacitor's electrical charge (in C). a. Which capacitor stores more electrical charge? 4. Three capacitors having a value of 10pF, 12uF and 15µF were electrically combined. Determine the equivalent capacitance if all of them were connected in b. a. series b. & parallel
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