E.m.f. and internal resistance Edexcel International A Level Physics revision

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In plain words

A battery marked 1.5 V rarely gives you the full 1.5 V. The battery itself has some resistance, so some of the energy is wasted inside it, warming it up. The harder you work it, the more is lost, and the lower the voltage at its terminals.

4 things to know

  1. The e.m.f. ε of a source is the energy it transfers per unit charge in driving charge round the complete circuit. The p.d. across a component is the energy per unit charge transferred in that component.
  2. A real source has an internal resistance r. ε = I(R + r), and the terminal p.d. is V = ε − Ir. The "lost volts" are Ir.
  3. With no current, the terminal p.d. equals the e.m.f. As the current rises, the terminal p.d. falls.
  4. To measure ε and r: vary the external resistance, record the terminal p.d. V and the current I, and plot V against I. The intercept on the V axis is ε and the gradient is −r.

Worked example

A cell of e.m.f. 6.0 V and internal resistance 0.50 Ω is connected to a 5.5 Ω resistor. Find the current and the terminal p.d.

  1. ε = I(R + r): 6.0 = I × (5.5 + 0.50).
  2. I = 1.0 A.
  3. Terminal p.d. = ε − Ir = 6.0 − 1.0 × 0.50 = 5.5 V.

Tips and tricks

  • On a graph of terminal p.d. against current, the intercept is the e.m.f. and the gradient is −r.
  • A voltmeter across a cell that is supplying no current reads its e.m.f.
5 questions, about 2 minutes.

It lands in your notebook with its questions as flashcards.

E.m.f. and internal resistance: 5 questions and answers

These are the quiz’s questions. Do the quiz first, then come back here for the ones that got you.

  1. A cell has an e.m.f. of 1.5 V and an internal resistance of 0.50 Ω. What is its terminal p.d. when it supplies 1.0 A?
    • 0.50 V
    • 1.0 V (the answer)
    • 1.5 V
    • 2.0 V

    V = ε − Ir.

  2. What is the e.m.f. of a cell?
    • the p.d. across its internal resistance
    • the energy it transfers per unit charge round the whole circuit (the answer)
    • the current it supplies
    • its power output

    It is measured in volts.

  3. On a graph of terminal p.d. against current for a cell, what is the gradient?
    • the e.m.f.
    • the internal resistance
    • minus the internal resistance (the answer)
    • the external resistance

    V = ε − Ir has the form y = c + mx.

  4. When does the terminal p.d. of a cell equal its e.m.f.?
    • when it is supplying no current (the answer)
    • when it is supplying its largest current
    • never
    • when it is short-circuited

    With no current there are no lost volts.

  5. What are the "lost volts" of a cell?
    • the p.d. across its internal resistance (the answer)
    • the p.d. across the external resistor
    • the e.m.f. of the cell
    • the voltage that leaks into the air

    They are equal to Ir.

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