Consider the diagram of a conducting wire of Figure Q1(b)(i). i. Determine the charge of 6.023 × 10²3 electrons. ii. If this number of electrons moves uniformly from the left end of the wire to the right end in 1 ms (millisecond), what is the current flows through the wire? ii. How many electrons must pass a given point in 1 minute to produce a current of 5 A?

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Consider the diagram of a conducting wire of Figure Q1(b)(i).
i. Determine the charge of 6.023 x 1023 electrons.
ii. If this number of electrons moves uniformly from the left end of the wire to the
right end in 1 ms (millisecond), what is the current flows through the wire?
iii. How many electrons must pass a given point in 1 minute to produce a current of 5
A?
iv. If the charge profile across the cross section of the conductor from left to right is
given by q(t) = sin(nt) C for 0 <ts sec. and zero for t< 0, plot the profile of
the current that flows across the boundary. In what direction would the current
flow?
v. Repeat part (iv) for the charge profile (in Coulomb) sketched in Figure Q1(b)(ii).
Transcribed Image Text:Consider the diagram of a conducting wire of Figure Q1(b)(i). i. Determine the charge of 6.023 x 1023 electrons. ii. If this number of electrons moves uniformly from the left end of the wire to the right end in 1 ms (millisecond), what is the current flows through the wire? iii. How many electrons must pass a given point in 1 minute to produce a current of 5 A? iv. If the charge profile across the cross section of the conductor from left to right is given by q(t) = sin(nt) C for 0 <ts sec. and zero for t< 0, plot the profile of the current that flows across the boundary. In what direction would the current flow? v. Repeat part (iv) for the charge profile (in Coulomb) sketched in Figure Q1(b)(ii).
Cross-sectional
boundary
q(t)
q(t) A
1
5 6 7 8 9
10 t(sec)
1
2
3 4
-1
-2
(ii)
Figure Q1(b)
Transcribed Image Text:Cross-sectional boundary q(t) q(t) A 1 5 6 7 8 9 10 t(sec) 1 2 3 4 -1 -2 (ii) Figure Q1(b)
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