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60 Cards in this Set
- Front
- Back
engineering notation
82,000 |
82x10^3
|
|
engineering notation
243,000 |
243x10^3
|
|
engineering notation
1,956,000 |
1.956x10^6
|
|
engineering notation
0.0022 |
2.2x10^-3
|
|
scientific notation
240 |
2.4x10^2
|
|
scientific notation
5100 |
5.1x10^3
|
|
scientific notation
85000 |
8.5x10^4
|
|
scientific notation
3,350,000 |
3.35 x 10^6
|
|
scientific notation
0.24 |
2.4x10^-1
|
|
scientific notation
0.005 |
5x10^-3
|
|
scientific notation
0.00063 |
6.3x10^-4
|
|
scientific notation
0.000015 |
1.5x10^-5
|
|
kilo
|
K 10^3
|
|
mega
|
M 10^6
|
|
giga
|
G 10^9
|
|
tera
|
T 10^12
|
|
milli
|
mm 10^-3
|
|
micro
|
u 1-^-6
|
|
nano
|
m 10^-9
|
|
pico
|
p 10^-12
|
|
femto
|
f 10^-16
|
|
1st color band
|
1st resistance value
|
|
2nd color band
|
2nd resistance value
|
|
3rd color band
|
multiplier, number of zeros
|
|
4th color band
|
tolerance
|
|
gold tolerance
|
5%
|
|
silver tolerance
|
10%
|
|
no tolerance
|
20%
|
|
0
|
black
|
|
1
|
brown
|
|
2
|
red
|
|
3
|
orange
|
|
4
|
yellow
|
|
5
|
green
|
|
6
|
blue
|
|
7
|
violet
|
|
8
|
gray
|
|
9
|
white
|
|
power rating
|
max amount of power a resistor can handle by excessive heat buildup
|
|
determined by size and shape of resistor can handle by excessive heat buildup
|
power rating
|
|
larger the resistor, the more ______
|
power
|
|
voltage sources are subtracted when their polarities are in opposite directions
|
series opposing
|
|
opens
|
voltage drop
no current |
|
shorts
|
no voltage
current |
|
coulomb
|
c
|
|
ampere
|
a
|
|
ohm
|
horseshoe
|
|
coulomb electrons
|
6.3 billions electrons
6.24 x 10^18 |
|
lead red
|
+ power
|
|
lead black
|
- negative
|
|
opposite polarity
|
the opposite
|
|
rheostat
|
controls current
|
|
potentiometer
|
voltage divider
|
|
wire size
|
0000-18
|
|
little number on wire means
|
big gauge
|
|
bigger wire number on wire means
|
little gauge
|
|
common ground
|
open triangle
|
|
chassis ground
|
components of a circuit are mounted
|
|
external to internal
|
100 ohms = 100 ohms impedance
|
|
when the load resistance equals the source resistance, under which maximum power is transferred from source to load
|
maximum power transfer
|