P7: Electrical Power and Energy
Power, energy transfers and the National Grid โ including electrical power equations, transformers, mains electricity and safety.
Power, energy transfers and the National Grid โ including electrical power equations, transformers, mains electricity and safety.
Where:
Where:
| Transformer | Voltage | Current | Location |
|---|---|---|---|
| Step-up | Increases | Decreases | Power station |
| Step-down | Decreases | Increases | Substation (near homes) |
| Wire | Colour | Function | Danger |
|---|---|---|---|
| Live | Brown | Carries alternating current from the supply (230 V) | Most dangerous โ gives a shock if touched |
| Neutral | Blue | Completes the circuit (0 V) | Normally safe, but can be dangerous if faulty |
| Earth | Green/yellow | Safety wire โ connects metal casing to ground | Carries current safely to ground if a fault occurs |
| Safety Device | How it works | Advantage | Disadvantage |
|---|---|---|---|
| Fuse | Wire melts when current is too high | Cheap, simple, reliable | Must be replaced after blowing, slower to react |
| Circuit breaker | Switch trips when current is too high | Can be reset, faster reaction | More expensive than fuses |
| Earth wire | Provides path to ground if fault occurs | Protects against electric shock from metal cases | Only works with metal-cased appliances |
Question: A kettle is connected to a 230 V supply and draws a current of 10 A. Calculate the power of the kettle.
Solution:
Question: A 2 kW heater is left on for 3 hours. Calculate the energy transferred in joules and in kWh.
Solution:
Time = 3 x 3600 = 10 800 s
In kWh: E = P (kW) x t (h) = 2 x 3 = 6 kWh
Question: A current of 5 A flows through a resistor of 8 ฮฉ. Calculate the power dissipated.
Solution:
Question: A charge of 150 C flows through a component with a potential difference of 12 V across it. Calculate the energy transferred.
Solution:
Question: A power station generates electricity at 25 000 V and 400 A. A step-up transformer increases the voltage to 400 000 V for transmission. Calculate the current in the transmission cables and explain why the voltage is stepped up.
Solution:
Power from power station: P = V x I = 25 000 x 400 = 10 000 000 W = 10 MW
At 400 000 V: I = P / V = 10 000 000 / 400 000 = 25 A
Question: An electric iron has a power rating of 920 W and is used on a 230 V supply. Calculate the normal operating current and choose an appropriate fuse (3 A, 5 A or 13 A).
Solution:
The normal current is 4 A. The fuse should be rated slightly above this, so a 5 A fuse is appropriate. A 3 A fuse would blow during normal use; a 13 A fuse would not provide adequate protection.
Q1: Foundation A hair dryer has a power of 1200 W and is connected to a 230 V supply. Calculate the current it draws.
Q2: Foundation Explain why the National Grid uses step-up transformers at power stations.
Q3: Foundation State the colour and function of each wire in a three-core mains cable.
Q4: Higher A 1500 W electric heater is used for 30 minutes. Calculate the energy transferred in (a) joules and (b) kWh.
Q5: Higher A 10 ฮฉ resistor has a current of 4 A flowing through it. Calculate the power dissipated using two different power equations and verify they give the same answer.
An electric oven has a power rating of 7.2 kW and is connected to a 230 V supply. Calculate the current and choose an appropriate fuse.
I = P / V = 7200 / 230 = 31.3 A
Appropriate fuse: 13 A fuse is too low โ this appliance requires a dedicated high-current circuit with a 32 A circuit breaker, not a standard plug fuse.
1. Wrong: Power and energy are the same thing Correct: Power is the rate of energy transfer (watts); energy is the total transferred (joules or kWh). P = E/t โ they are related but not the same
2. Wrong: A higher power appliance always uses more energy Correct: Energy depends on power AND time. A 3 kW heater on for 10 minutes uses less energy than a 1 kW heater on for 1 hour
3. Wrong: Fuses "use" electricity Correct: Fuses do not consume energy โ they are safety devices that melt and break the circuit if the current exceeds their rating
6 marks: Explain how the National Grid transmits electricity efficiently using step-up and step-down transformers. Refer to power, current, voltage and energy loss.
Electricity is generated at power stations at around 25 000 V. A step-up transformer at the power station increases the voltage to 400 000 V for transmission through the National Grid cables. Since power = voltage ร current, increasing the voltage means the current is reduced proportionally for the same power transmitted. Lower current is crucial because the energy lost as heat in the transmission cables depends on P = IยฒR โ even a small reduction in current causes a large reduction in power loss because the current is squared. This means less energy is wasted and more reaches the consumer. Near homes and industry, step-down transformers at substations reduce the voltage to 230 V for safe domestic use, which increases the current back to the level needed by appliances. Using transformers makes the grid efficient by minimising energy loss during long-distance transmission while delivering safe voltages to consumers.
Mark scheme: 1 mark โ step-up transformer increases voltage at power station, 1 mark โ current is reduced, 1 mark โ P = IยฒR explains energy loss in cables, 1 mark โ lower current means much less energy wasted as heat, 1 mark โ step-down transformer reduces voltage to 230 V near consumers, 1 mark โ reference to same power being transmitted or efficiency
The table shows the power ratings and typical daily use of three household appliances on a 230 V supply. Electricity costs 28p per kWh.
| Appliance | Power | Daily use |
|---|---|---|
| Kettle | 2.2 kW | 12 minutes |
| Fridge | 150 W | 24 hours |
| Tumble dryer | 2.5 kW | 45 minutes |
(a) Calculate the daily energy consumption in kWh for each appliance. Which uses the most energy per day?
(b) Calculate the daily cost of running the fridge and the weekly cost (7 days). Why might the fridge's actual consumption be lower than calculated?
(c) A student claims "the tumble dryer costs the most to run because it has the highest power." Evaluate this claim using your calculations.
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