EMEC - Greg: Difference between revisions
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| <math>\sum_{n} V_{n} = 0 = \oint \overrightarrow{E} \overrightarrow{dl}</math> |
| <math>\sum_{n} V_{n} = 0 = \oint \overrightarrow{E} \overrightarrow{dl}</math> |
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| <math>\oint \overrightarrow{H} \overrightarrow{dl} = N i = \sum_{n} H l + N i = 0 </math> |
| <math>\oint \overrightarrow{H} \overrightarrow{dl} = N i = \sum_{n} H l + N i = 0 </math> |
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|Kirchoff's voltage law |
|Kirchoff's voltage law, Ampere's law |
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|- |
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| <math>\sum_{n} I_{n} = 0 = \oint_{S} \overrightarrow{J} \overrightarrow{dS}</math> |
| <math>\sum_{n} I_{n} = 0 = \oint_{S} \overrightarrow{J} \overrightarrow{dS}</math> |
Revision as of 11:33, 7 January 2010
Definitions
Symbol | Units | Name |
---|---|---|
Electric Field Intensity | ||
Electric Flux Density | ||
Magnetic Field Intensity | ||
Magnetic Flux Density |
Analogies between Electric & Magnetic Circuits
Electric | Magnetic | Notes |
---|---|---|
Kirchoff's voltage law, Ampere's law | ||
Kirchoff's current law, The B-field has to go around in a loop | ||
Magnetic flux, Phi | ||
Reluctance | ||
or | Assumes linearity - exceptions: Hysterisis loop, etc |