Use the following constants if necessary. Coulomb constant, k=8.987×109N-m2/C2. Vacuum permittivity, eo=8.854×10-12F/m. Magnetic Permeability of vacuum, uo=12.566370614356×10-7H/m. The magnitude of the Charge of one electron is e=-1.60217662×10-19C. Mass of one electron, me=9.10938356×10-31kg. Unless specified otherwise, each symbol carries its usual meaning. For example, µC means microcoulomb. Ry Ez Rg P R, '3 R6 R9 R3 Rs R2 b a Suppose you have the following circuit diagram. Here Ri=2.2kn, R2=2.2kN, R3=1.1kN, R4=2.2kN, Rs=22kN, Rs=1.1kN, R7=11kN, Re=2.2kN, R9 =2.2kn are the resistances on the circuit where k stands for kilo ohm. The electromotive forces of the batteries are E1=5volts and E2=8volts. a) Calculate Ras the resistance equivalent to Rs,R6,R7,Rs and R» between the terminals b and k. Value of Res b) Calculate the current through R1. c) Calculate the current through Rak and call it Ibk. d) Calculate the power dissipated through the R2 resistor e) Calculate the potential difference across the oc terminal

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Use the following constants if necessary.
Coulomb constant, k=8.987×109N•m2/C2. Vacuum permittivity, e0=8.854×10-12F/m. Magnetic
Permeability of vacuum, uo=12.566370614356×10-7H/m. The magnitude of the Charge of one
electron is e=-1.60217662×x10-19C. Mass of one electron, me=9.10938356×10-31kg. Unless
specified otherwise, each symbol carries its usual meaning. For example, uC means microcoulomb.
Ry
Ez
Rg
P
www
'3
6.
R,
R6:
R9
Rz
R3
Rs
Rz
a
C
Suppose you have the following circuit diagram.
Here R1=2.2kN, R2=2.2kN, R3=1.1kN, R4=2.2kN, R5=22kN, R6=1.1kN, R7=11kN, R8=2.2kN, R9
=2.2kN are the resistances on the circuit where kQ stands for kilo ohm. The electromotive forces of
the batteries are E1=5volts and E2=8volts.
a) Calculate Rbk, the resistance equivalent to R5,R6,R7,R8 and R9 between the terminals b and k.
Value of Rbk:.
b) Calculate the current through R1.
c) Calculate the current through Rbk and call it Ibk.
d) Calculate the power dissipated through the R2 resistor
e) Calculate the potential difference across the oc terminal
Page 1 of 1
139 words
E English (United States)
* Accessibility: Investigate
D Focus
目
108%
1:25 PM
Links
Id
Ps
31°C Haze
3/26/2022
近
Transcribed Image Text:図。 o Search (Alt+Q) A Sajjad Choudhury sC 困 AutoSave ff Document3 Word File Home Insert Design References Mailings Review View Help P Comments A Share Draw Layout 뮴 Breaks▼ EAlign Spacing *IE Before: O pt CE After: Indent : Line Numbers v E Left: 0" i Group Margins Orientation Columns Position Wrap Bring Text v Forward v Backward Size Send Selection be Hyphenation - E* Right: 0" 17 pt ARotate Pane Page Setup Paragraph Arrange Use the following constants if necessary. Coulomb constant, k=8.987×109N•m2/C2. Vacuum permittivity, e0=8.854×10-12F/m. Magnetic Permeability of vacuum, uo=12.566370614356×10-7H/m. The magnitude of the Charge of one electron is e=-1.60217662×x10-19C. Mass of one electron, me=9.10938356×10-31kg. Unless specified otherwise, each symbol carries its usual meaning. For example, uC means microcoulomb. Ry Ez Rg P www '3 6. R, R6: R9 Rz R3 Rs Rz a C Suppose you have the following circuit diagram. Here R1=2.2kN, R2=2.2kN, R3=1.1kN, R4=2.2kN, R5=22kN, R6=1.1kN, R7=11kN, R8=2.2kN, R9 =2.2kN are the resistances on the circuit where kQ stands for kilo ohm. The electromotive forces of the batteries are E1=5volts and E2=8volts. a) Calculate Rbk, the resistance equivalent to R5,R6,R7,R8 and R9 between the terminals b and k. Value of Rbk:. b) Calculate the current through R1. c) Calculate the current through Rbk and call it Ibk. d) Calculate the power dissipated through the R2 resistor e) Calculate the potential difference across the oc terminal Page 1 of 1 139 words E English (United States) * Accessibility: Investigate D Focus 目 108% 1:25 PM Links Id Ps 31°C Haze 3/26/2022 近
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