Current (i) = Q/t = ne/t
i = 5500000×1.6×10-19/(6×10-1)
i = 1.466×10-12A
The amount of current is 1.466×10-12A
A. If 5500000 electrons pass a particular location in a circuit during a time interval of...
1)
during what time interval does car c pass car a?
2) during what time interval does
car b pass car c?
Suppose you are looking down from a helicopter at three cars traveling in the same direction along a freeway. The positions of the three cars every 2 seconds are represented by dots on the diagram. The positive direction is to the right.
Consider current flowing through a circuit element. It is determined that 6.5×10^13 electrons flow through the circuit element in 2.5 × 10^−3 s. a) How much charge flow through the circuit element during this time interval? b) What is the current through the circuit element?
during the time interval (0,1].We wish to estimate the An object moves with velocity v- t+1 displacement of the object during the whole time interval. Calculate the n-1 Trapezoid sum that estimates this displacement. Use a decimal number (rounded to the nearest tenth, if necessary) to answer. Do not use a fraction, and do not use units.
during the time interval (0,1].We wish to estimate the An object moves with velocity v- t+1 displacement of the object during the whole...
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we have learned that the current in an RL circuit behaves according to the equation: I(t)= V/R(1-e-t/τ) where τ= L/R is the characteristic time of the circuit. a) According to the equation, what is the maximum current that can flow in an RL circuit? Your answer shou;d be in the form of a formula, not a number. make sure to explain, either mathematically or in words, why your answer is what it is. b) In a given circuit, after 58...
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answer all parts
ELECTRICAL EQUATIONS: Current (A) = Charge (C) / Time (5) | Energy (1) = Potential Difference (V) x Charge C Power (W) = Energy D / Time (s) Conversion Physical Constants: Factors: 1A=1C/s Charge of e- 1.60 x 10°C 1 -1 VC Faraday - 96,485 C/mol 1W= 1 J/s 1. How much energy is required to move 2.53 x 104 Coulombs of charge through a potential difference of 110.0 volts? 2. A steady 2.0 ampere current exists...