B. Edwin Hubble
C. Galilei Galileo
D. Sir Isaac Newton
1. The relationship between total resistance and individual resistances:
The total resistance(R_total) in a series circuit is equal to the sum of the individual resistances (R1, R2, R3, ...) connected in series. Mathematically, we can express this relationship as:
R_total = R1 + R2 + R3 + ...
In a series circuit, the total resistance increases as more resistors are added in series.
2. The relationship between total voltage and individual voltages:
In a series circuit, the total voltage (V_total) across the circuit is equal to the sum of the individual voltages (V1, V2, V3, ...) across each component. This relationship can be stated as:
V_total = V1 + V2 + V3 + ...
In a series circuit, the total voltage is equal to the sum of the individual voltage drops across each resistor.
3. The relationship between total current and individual currents:
In a series circuit, the total current (I_total) flowing through the circuit is the same at all points in the circuit.
This means that the current passing through each individual resistor is also equal to the total current. Mathematically, we can express this relationship as:
I_total = I1 = I2 = I3 = ...
In a series circuit, the current is constant throughout the circuit, and the same current flows through each component.
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B. most metals.
C. glass objects.
D. caramel candy.
The answer is Glass objects C. in this case.
I got 0.0126, but it feels wrong.