Physics · Professor Newton

Energy, Year 10: specific heat capacity and power:全部卡片

整套按顺序列出——孩子看到之前,您可以先通读一遍。

1 GCSE-PHYS-ENE-0016

The energy needed to raise the temperature of one kilogram of a substance by one degree Celsius

Specific heat capacity

提示Three words; the first one signals 'for each kilogram'.

为什么Every material has its own value, in joules per kilogram per degree Celsius (J/kg °C). Water's is unusually high, about 4200 J/kg °C, which is why it takes so long to boil and makes a good coolant. The symbol is c.

2 GCSE-PHYS-ENE-0017

How much energy, in kilojoules, is needed to heat 2 kg of water by 10 °C? Specific heat capacity of water = 4200 J/kg °C. (number only)

84

提示The equation has three quantities multiplied together; then look again at the unit asked for.

为什么Change in thermal energy = mass × specific heat capacity × temperature change = 2 × 4200 × 10 = 84 000 J, and 1000 J is 1 kJ. This equation is given on the AQA Physics equation sheet, so pupils need to select and use it, not memorise it.

3 GCSE-PHYS-ENE-0018

A 0.5 kg aluminium block is supplied with 9000 J and its temperature rises by 20 °C. Calculate the specific heat capacity of aluminium from these figures.

900 J/kg °C

提示Divide the energy by the other two quantities multiplied together.

为什么Rearranging ΔE = m c Δθ gives c = ΔE ÷ (m × Δθ) = 9000 ÷ (0.5 × 20) = 9000 ÷ 10. The unit follows from the working: joules divided by kilograms and by degrees Celsius.

4 GCSE-PHYS-ENE-0019

In the required practical to find the specific heat capacity of a metal block, an electric heater warms the block. Which three quantities must be found by measurement?

The energy supplied, the mass of the block and its temperature rise

提示Look at what the equation needs on each side once c is the unknown.

为什么The mass comes from a balance, the temperature rise from a thermometer read before and after, and the energy from a joulemeter (or from the heater's power multiplied by the time it is on). Then c = energy ÷ (mass × temperature rise). This is AQA required practical 14.

5 GCSE-PHYS-ENE-0020

In the specific heat capacity practical, the value found for a metal block is usually higher than the true value, even when the block is wrapped in insulation. Why?

Some of the energy supplied heats the surroundings instead of the block

提示Not every joule counted by the meter ends up where you wanted it.

为什么The calculation assumes all the measured energy went into the block. In fact some escapes to the air, the bench and the heater itself, so the block warms less than it should for that energy, and dividing by too small a temperature rise gives too large an answer. Insulation reduces the loss but cannot remove it.

6 GCSE-PHYS-ENE-0021

Equal masses of water and copper, both at room temperature, are each supplied with the same amount of energy. Water has a much higher specific heat capacity than copper. Which one ends up hotter? (one word)

Copper

提示A high value means each kilogram soaks up a lot of energy for every degree it gains.

为什么Rearranged, the equation says temperature change = energy ÷ (mass × specific heat capacity). With the energy and mass equal, the material with the smaller specific heat capacity has the bigger temperature rise. That is why a metal pan heats up far faster than the water inside it.

7 GCSE-PHYS-ENE-0022

The quantity that tells you how quickly energy is transferred, or how quickly work is done

Power

提示It is the quantity printed in watts on a kettle or a light bulb.

为什么A powerful device is one that transfers a lot of energy every second, not one that holds a lot of energy. Its two equations, both to be recalled, are power = energy transferred ÷ time and power = work done ÷ time.

8 GCSE-PHYS-ENE-0023

A power of 1 watt means an energy transfer of 1 ____ per second.

joule

提示It is the standard unit for energy and for work done.

为什么The watt is a compound unit: W = J/s. A 60 W lamp therefore transfers 60 of these units of energy every second it is switched on. Knowing this lets you check that a power calculation has its units right.

9 GCSE-PHYS-ENE-0024

A kettle transfers 60 000 J of energy in 30 s. Calculate its power in watts. (number only)

2000

提示Share the energy out equally between the seconds.

为什么Power = energy transferred ÷ time = 60 000 ÷ 30. AQA expects this equation to be recalled. The answer is a typical rating for a household kettle.

10 GCSE-PHYS-ENE-0025

A 500 W motor does 6000 J of work. How long does this take?

12 s

提示The motor gets through 500 J every second; how many seconds until 6000 J are done?

为什么Rearranging power = work done ÷ time gives time = work done ÷ power = 6000 ÷ 500. Both power equations must be recalled, and either can be rearranged for any of its three quantities.

11 GCSE-PHYS-ENE-0026

Two electric motors each lift the same weight through the same height. Motor A takes 5 s and motor B takes 10 s. How do the work done and the power of the two motors compare?

They do the same work, but A has twice the power

提示One of the two quantities depends only on the load and the height; the other also depends on the clock.

为什么Work done is force × distance, and both are identical, so the energy transferred is the same. Power is that work divided by the time taken, and A takes half the time, so its power is double. AQA names exactly this comparison as the example pupils should be able to give.

12 GCSE-PHYS-ENE-0027

A pupil who weighs 600 N runs up a flight of stairs 3 m high in 4 s. Calculate her power.

450 W

提示Two steps: first the energy needed to raise her weight, then how quickly she supplied it.

为什么Work done = force × distance = 600 × 3 = 1800 J. Power = work done ÷ time = 1800 ÷ 4. The force is her weight and the distance is the vertical height, not the length of the staircase.

把学到的留下来

在这个页面上,练习不会被保存。在孩子自己的星空里,每一张卡都有排程——在快要忘记之前重新出现——写这张卡的教授也只有一步之遥。