Get ready for the FCC General Radiotelephone Operator License (GROL) exam. Study with flashcards and multiple choice questions, each with hints and detailed explanations. Prepare effectively for your licensing test!

Multiple Choice

Which form describes Ohm's law in its simplest form?

Voltage across a resistor is equal to the current through it multiplied by its resistance. This direct proportionality shows how V depends on I and R: V = IR. In this form, the relationship is immediately clear—doubling the current or doubling the resistance doubles the voltage, assuming the other quantity stays the same. The units align: volts come from amperes times ohms. For example, if 2 A flows through a 5 Ω resistor, the voltage across it is 10 V (V = IR = 2 A × 5 Ω = 10 V). The other expressions are rearrangements or derived results. I = V / R is simply another way to write the same relationship, but the simplest form to remember is V = IR because it directly ties voltage to the product of current and resistance. P = V^2 / R describes power and is derived from Ohm's law, not Ohm's law itself.

Voltage across a resistor is equal to the current through it multiplied by its resistance. This direct proportionality shows how V depends on I and R: V = IR. In this form, the relationship is immediately clear—doubling the current or doubling the resistance doubles the voltage, assuming the other quantity stays the same. The units align: volts come from amperes times ohms.

For example, if 2 A flows through a 5 Ω resistor, the voltage across it is 10 V (V = IR = 2 A × 5 Ω = 10 V).

The other expressions are rearrangements or derived results. I = V / R is simply another way to write the same relationship, but the simplest form to remember is V = IR because it directly ties voltage to the product of current and resistance. P = V^2 / R describes power and is derived from Ohm's law, not Ohm's law itself.