Which Moon position (A−E) best corresponds with the Moon phase shown in the upper-rightcorner of Figure 1? Make sure that the Moon position you choose correctly predictsa Moon phase in which only a small crescent of light on the left-hand side of the Moon isvisible from Earth.
Which Moon position (A−E) best corresponds with the Moon phase shown in the upper-rightcorner of Figure 1? Make sure that the Moon position you choose correctly predictsa Moon phase in which only a small crescent of light on the left-hand side of the Moon isvisible from Earth.
Which Moon position (A−E) best corresponds with the Moon phase shown in the upper-rightcorner of Figure 1? Make sure that the Moon position you choose correctly predictsa Moon phase in which only a small crescent of light on the left-hand side of the Moon isvisible from Earth.
Expert Solution & Answer
To determine
The position of moon that best corresponds with the phase shown in the upper right corner.
Answer to Problem 1THP
The position of moon that best corresponds with the phase shown in the upper right corner is the position D.
Explanation of Solution
In one month cycle, appearance of the moon completely changes; it is termed as phases of the moon or lunar cycle. Out of all phases of Moon, one of the phases is crescent phase. Crescent phase occurs at two positions.
1. Waxing Crescent: One day after new moon, people on Earth can see first appearance of the moon and it is called crescent. It keeps on growing until its next phase. During this phase moon rises at 9a.m. and sets at 9p.m.
2. Waning Crescent: This is the last phase of the moon, in this phase it is similar to the one visible on waxing crescent. During this phase moon rises at 3a.m. and sets at 3p.m. .
The given phase in the upper right corner is the waning crescent. The required position of Moon to occur in the given phase is position D.
Conclusion:
Thus, the position of moon that best corresponds with the phase shown in the upper right corner is the position D.
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Four capacitors are connected as shown in the figure below. (Let C = 12.0 µF.)
A circuit consists of four capacitors. It begins at point a before the wire splits in two directions. On the upper split, there is a capacitor C followed by a 3.00 µF capacitor. On the lower split, there is a 6.00 µF capacitor. The two splits reconnect and are followed by a 20.0 µF capacitor, which is then followed by point b.
(a) Find the equivalent capacitance between points a and b. µF(b) Calculate the charge on each capacitor, taking ΔVab = 16.0 V.
20.0 µF capacitor
µC
6.00 µF capacitor
µC
3.00 µF capacitor
µC
capacitor C
µC
Two conductors having net charges of +14.0 µC and -14.0 µC have a potential difference of 14.0 V between them. (a) Determine the capacitance of the system. F (b) What is the potential difference between the two conductors if the charges on each are increased to +196.0 µC and -196.0 µC? V
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