A particular 12 V car battery can send a total charge of84 A#h (ampere-hours) through a circuit, from one terminal to the other. (a) How many coulombs of charge does this represent? (Hint: See Eq. 21- 3.) (b) If this entire charge undergoes a change in electric potential of 12 V, how much energy is involved?
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Question
Electron in a well. Figure 24- 65 shows electric potential V along an x-axis. The scale of the vertical axis is set by \({{V}_{s}}=8.0\ \text{V}\). An electron is to be released at x=4.5 cm with initial kinetic energy 3.00 eV.
(a) If it is initially moving in the negative direction of the axis, does it reach a turning point (if so, what is the x coordinate of that point) or does it escape from the plotted region (if so, what is its speed at x=0)?
(b) If it is initially moving in the positive direction of the axis, does it reach a turning point (if so, what is the x coordinate of that point) or does it escape from the plotted region (if so, what is its speed at x=7.0 cm)? What are the
(c) magnitude F and
(d) direction (positive or negative direction of the x-axis) of the electric force on the electron if the electron moves just to the left of x=4.0 m? What are
(e) F and
(f) the direction if it moves just to the right of x=5.0 cm?
Solution
Step 1 of 6
Consider the given data as follows.
The electric potential along the vertical axis is \({{V}_{s}}=8.0\ \text{V}\).
The initial kinetic energy is \(K{{E}_{i}}=3.00\ \text{eV}\).
The distance is \(x=4.5\ \text{cm}=4.5\times {{10}^{-2}}\ \text{m}\).
The mass of an electron is \(m=9.1\times {{10}^{-31}}\ \text{kg}\).
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