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A student uses dimensional analysis to analyze the time () it takes for a capacitor (C) to discharge through a resistor (R). They correctly identify that depends on R and C. However, they are unable to derive the precise relationship . What limitation of dimensional analysis explains this?
Dimensional analysis cannot reveal purely numerical relationships between variables.
The analysis requires knowledge of the initial charge on the capacitor, which is not provided.
Dimensional analysis cannot handle exponential decay processes.
The relationship between , R, and C is logarithmic, not a power law.
A conducting rod of length rotates with a constant angular velocity about one end in a uniform magnetic field perpendicular to the plane of rotation. A capacitor is connected in series with the rod and a resistance . If the steady state charge on the capacitor is , which of the following expressions is correct?
Q = 1/2 CBฯl^2
Q = CBฯl^2
Q = 2CBฯl^2
Q = 1/4 CBฯl^2
In a series R-C circuit, the voltage across the capacitor lags the current by . If the frequency of the source is doubled, the phase difference between the voltage across the capacitor and the current will:
Increase
Decrease
Remain the same
Become zero
A capacitor is connected to a 20 V battery through a resistance of It is found that the potential difference across the capacitor rises to 2 V in The capacitance of the capacitor inโฆ... [Given,
9.52
0.95
0.105
1.85