• The capacitor is initially uncharged. Immediately after the switch is closed, before any charge has built up on the capacitor, how are the potential differences across resistors Y and Z related? · A) JAVyI = IAV2| B) JAVYI > IAV2I C) laVyI < IAV2| • D) The answer can't be determined • Immediately after the switch is closed, before any charge has built up on the capacitor, what is true about the current? • 1. The current in resistor Y is zero • 2. The current in resistor Z is zero · A) Only 1 is true • B) Only 2 is true C) Both 1 and 2 are true D) Neither 1 nor 2 is true

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• The capacitor is initially uncharged. Immediately after the
switch is closed, before any charge has built up on the capacitor,
how are the potential differences across resistors Y and Z
related?
· A) JAV,| = |AV2|
B) |AVy| > JAVg|
C) laVyI < IaV;l
• D) The answer can't be determined
20
• Immediately after the switch is closed, before any charge has
built up on the capacitor, what is true about the current?
• 1. The current in resistor Y is zero
2. The current in resistor Z is zero
· A) Only 1 is true
• B) Only 2 is true
• C) Both 1 and 2 are true
• D) Neither 1 nor 2 is true
Transcribed Image Text:• The capacitor is initially uncharged. Immediately after the switch is closed, before any charge has built up on the capacitor, how are the potential differences across resistors Y and Z related? · A) JAV,| = |AV2| B) |AVy| > JAVg| C) laVyI < IaV;l • D) The answer can't be determined 20 • Immediately after the switch is closed, before any charge has built up on the capacitor, what is true about the current? • 1. The current in resistor Y is zero 2. The current in resistor Z is zero · A) Only 1 is true • B) Only 2 is true • C) Both 1 and 2 are true • D) Neither 1 nor 2 is true
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