The part of this excerpt from Stephen Crane's "The Open Boat" describe the narrator's opinion of the sea as a hostile entity is "that there is another behind it just as important and just as nervously anxious to do something effective".
To fail to function properly.
n.
A failure to function properly.
The theme of the Gettysburg address and four freedoms speech is given in option (b): "Americans must continue the deceased soldiers’ fight to preserve both democracy and equality."
<h3 /><h3>What is the theme of the Four freedoms speech?</h3>
The clip from Franklin D. Roosevelt's "Four Freedoms Speech" that is being provided explains how the formation of a nonviolent revolution that has adapted to changing circumstances has led to continuous progress in American history.
The final few sentences are a fantastic illustration of how Americans must carry on the fight started by the fallen warriors to protect equality and democracy.
As a result, option (b) or (ii) is the correct theme of the given passage.
Check out the link below to learn more about the Four freedoms speech;
brainly.com/question/7436331
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B (I think) okay heheh bye
The options to the question asked are listed below
A)The voltage across both the resistor and the capacitor is zero.
B)The voltage across the resistor is zero, and the voltage across the capacitor is equal to the terminal voltage of the battery.
C)The voltage across both the resistor and the capacitor is equal to the terminal voltage of the battery.
D)The voltage across the resistor is equal to the terminal voltage of the battery, and the voltage across the capacitor is zero.
E)The voltage across both the resistor and the capacitor is equal to one-half of the terminal voltage of the battery.
Answer:
D. The voltage across the resistor is equal to the terminal voltage of the battery, and the voltage across the capacitor is zero.
Explanation:
As soon as the switch is closed, the capacitor starts to charge through the resistor. At the moment the switch is closed, the voltage across the resistor equals the terminal voltage and the voltage across the capacitor equals zero. As the time, t increases, the capacitor begins to get charged and the voltage across it increases based on the formula
Vc=Vt (1-e^(-t/Rc)) where Vt is the terminal voltage and Vc is the voltage across the capacitor.