Laws & Equations Flashcards

1
Q

Faradays Law:

A

The magnitude of the EMF Is directly proportional to the rate of change of flux (Applies to generators)

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2
Q

Lenz’s Law:

A

An inducedelectric currentflows in a direction such that the current opposes the change that induced it

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3
Q

Kirchhoff’s Voltage Law

A

The sum of the voltage drops around a single closed path equals the sum of the voltage sources

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4
Q

Kirchhoff’s Current Law

A

At any point in an electrical circuit, the sum of currents flowing towards that point is equal to the sum of currents flowing away from that point

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5
Q

Ohms Law

A

V=IR

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6
Q

Power Law

A

P=IV

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7
Q

Left hand rule

A

Electric motors

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8
Q

Right Hand rule

A

Electric Generators

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9
Q

EMF Equation

A

EMF = BLV

B = Magnetic Field 
L = Length of the object moving 
V = Speed
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10
Q

Conductance Equation

A

Conductance (G) = 1/R

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11
Q

Internal resistance equation

A

Internal resistance = OCV - CCV
-—————
I

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12
Q

Power Equation’s

A

P = I^2 x R

P = V^2/R

P = V x I

P = Amps x Volts

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13
Q

1 watt =

A

1 Joule per second

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14
Q

Charge (Q) Equation:

A

Q = Capacitance x Voltage

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15
Q

Time constant Equation:

A

5 x R x C

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16
Q

MMF Equation:

A

MMF = Amps x Turns

17
Q

Capacitance Equation:

A

C = KA/d

KA = Dielectric Constant 
d =  Distance plates apart
18
Q

Field Strength Ident.

A

H

19
Q

Flux Density Ident.

A

B

20
Q

Field Strength Equation:

A

H = I x N / L

I = Current
N = Number of turns 
L = Length
21
Q

Magnetic Flux density (B) Eqution

A

B = H x permeability

H = Magnetic field Strength

22
Q

Magnetic Flux equation

A

Flux = B x A

A =  Pole Area 
B = Flux density
23
Q

Power in a motor equation:

A

Torque x 2pi x rev/sec

24
Q

Torque equation:

A

Force x radius

25
Q

Permeability equation

A

Permeability = flux density / magnetic field strength

26
Q

Average voltage =

A

Average voltage = 0.63 x peak value

27
Q

True power =

A

TP = V x I x PF

28
Q

Form Factor =

A

Form factor = RMS/Average

29
Q

RMS =

A

RMS = Peak voltage x 0.707

Or

RMS = peak voltage / 1.414

30
Q

Energy stored in a capacitor =

A

0.5 x C x V^2

31
Q

Inductive Resistance =

A

2 Pi x frequency x inductance