The action along a path is defined to be: S = [(K.E.-P.E.) dt Determine the physical units of action. Detail Feynman's approach to calculating the probability amplitude for an electron to go from one event A to another B using the "sum over all paths".
The action along a path is defined to be: S = [(K.E.-P.E.) dt Determine the physical units of action. Detail Feynman's approach to calculating the probability amplitude for an electron to go from one event A to another B using the "sum over all paths".
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The action along a path is defined to be:
S = [(K.E.-P. E.) dt
Determine the physical units of action. Detail Feynman's approach to calculating the probability
amplitude for an electron to go from one event A to another B using the "sum over all paths".
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Transcribed Image Text:No Spacing
Heading 1
Normal
Aa v A A
困、
Paragraph
Styles
The action along a path is defined to be:
S = [(K.E.-P. E.) dt
Determine the physical units of action. Detail Feynman's approach to calculating the probability
amplitude for an electron to go from one event A to another B using the "sum over all paths".
A'Focus
12
1>
12
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