Combined Science Double Award - 9204 OxfordAQA

Transferring Electrical Energy

Aperçu

Somewhere in your home there is a small box with a row of digits on it, and those digits have been climbing since the day the building was wired. Nobody watches them. They tick up a little while the kettle boils, faster while the shower runs, imperceptibly while a phone charger sits plugged in and forgotten. Once every three months somebody writes the number down, takes away the number written down last time, multiplies the difference by a price, and posts a bill. That is the whole of this topic in one sentence, and every step of it is examinable.

What you will build here is the bridge between physics and money. You will meet power as a rate rather than an amount, and see why a machine rated at three kilowatts can cost less to run than a lamp rated at a tenth of that. You will learn the one equation that ties power to the current and the potential difference an appliance works at, and then use it for the job the specification names outright: working out the current an appliance actually draws and choosing a fuse that will protect it without cutting it off in normal use. Finally you will find out why electricity is sold in a unit invented for the purpose, the kilowatt-hour, and how to turn two meter readings and a price into a total. Five of the six statements here are Core Tier, so nearly all of this lesson is set for both tiers; the one Extension Tier item is marked where it arrives.

Objectifs

  1. Electrical appliances are designed to transfer energy. Students should be able to give examples of such devices and identify the energy transfers.
  2. The rate at which energy is transferred by an appliance is called the power. The relationship between power, P, energy transferred, E, and time, t, is:
  3. The power transfer, P, in any device is related to the current, I, flowing through it and potential difference, V, across it: Students should be able to calculate the current through an appliance from its power and the potential difference of the supply and from this determine the size of fuse needed.
  4. The relationship between energy transferred, E, potential difference, V, and charge, Q, is:
  5. The amount of energy an appliance transfers depends on how long the appliance is switched on for and its power rating. It is often more convenient to measure energy transfers in domestic appliances in kWh instead of J due to the small size of the latter.
  6. The relationship between energy transferred, E, from the mains, power, P, and time, t, is: Students will not be required to convert between kilowatt-hours and joules. Students should be able to calculate the cost of mains electricity given the cost per kilowatt-hour and interpret and use electricity meter readings to calculate total cost over a period of time.

Carte mentale

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Note de cours

An electricity meter has no idea what you own. It cannot tell a freezer from a games console, and it does not care how expensive either was. It counts one thing only: how much energy has come into the building through the supply cable. That number rises whenever anything is switched on, rises faster when something greedy is switched on, and rises for exactly as long as the thing stays on. Two quantities therefore decide the whole bill, and both of them are physics: how fast an appliance transfers energy, and for how long it does so.

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Évaluation de la leçon

Félicitations, vous avez terminé la leçon sur Transferring Electrical Energy. Maintenant que vous avez exploré le concepts et idées clés, il est temps de mettre vos connaissances à lépreuve. Cette section propose une variété de pratiques des questions conçues pour renforcer votre compréhension et vous aider à évaluer votre compréhension de la matière.

Vous rencontrerez un mélange de types de questions, y compris des questions à choix multiple, des questions à réponse courte et des questions de rédaction. Chaque question est soigneusement conçue pour évaluer différents aspects de vos connaissances et de vos compétences en pensée critique.

Utilisez cette section d'évaluation comme une occasion de renforcer votre compréhension du sujet et d'identifier les domaines où vous pourriez avoir besoin d'étudier davantage. Ne soyez pas découragé par les défis que vous rencontrez ; considérez-les plutôt comme des opportunités de croissance et d'amélioration.

  1. Which of these is the unit of power? A. Joule B. Watt C. Coulomb D. Volt Answer: B
  2. A 60 W lamp is switched on for 5.0 minutes. How much energy does it transfer? A. 12 J B. 300 J C. 3600 J D. 18 000 J Answer: D
  3. An appliance is marked 230 V, 920 W. Which is the smallest suitable fuse for its plug? A. 1 A B. 3 A C. 5 A D. 13 A Answer: C
  4. A 2.0 kW heater is switched on for 3.0 hours. How much energy does it transfer? A. 0.67 kWh B. 1.5 kWh C. 6.0 kWh D. 6000 kWh Answer: C
  5. An electricity meter reads 41 208.6 kWh in July and 42 108.6 kWh in October. Electricity costs 20 p per kWh. What is the cost of the electricity used between the two readings? A. 45.00 pounds B. 180.00 pounds C. 900.00 pounds D. 8421.72 pounds Answer: B

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