Physics · Professor Newton

Matter and particles, Year 10: latent heat, heating curves and gas pressure: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-MAT-0011

The energy needed to change the state of one kilogram of a substance with no change in temperature

Specific latent heat

提示The middle word comes from the Latin for 'hidden', because a thermometer does not show this energy going in.

为什么Its unit is joules per kilogram (J/kg) and its symbol is L. There are two values for each substance: one for melting, called fusion, and one for boiling, called vaporisation. Energy for a change of state = mass × this quantity.

2 GCSE-PHYS-MAT-0012

How much energy, in kilojoules, is needed to melt 0.5 kg of ice that is already at 0 °C? Specific latent heat of fusion of water = 334 000 J/kg. (number only)

167

提示The equation for a change of state has only two quantities multiplied together; then look again at the unit asked for.

为什么Energy for a change of state = mass × specific latent heat, or E = m L, so E = 0.5 × 334 000 = 167 000 J, which is 167 kJ. There is no temperature term, because the temperature does not change during melting. This equation is given on the AQA Physics equation sheet.

3 GCSE-PHYS-MAT-0013

The specific latent heat for the change of state from solid to liquid is called the specific latent heat of what? (one word)

Fusion

提示The same word is used for joining things by melting them together.

为什么The value for the change from liquid to vapour is called the specific latent heat of vaporisation. For water the vaporisation value is several times larger than the melting one, which is why a scald from steam is so severe.

4 GCSE-PHYS-MAT-0014

It takes 45 200 J to turn 0.02 kg of water at 100 °C into steam at 100 °C. Calculate the specific latent heat of vaporisation of water from these figures.

2 260 000 J/kg

提示Find how much energy a whole kilogram would need.

为什么Rearranging E = m L gives L = E ÷ m = 45 200 ÷ 0.02. Dividing by a number smaller than one makes the answer bigger, as it should: a whole kilogram needs fifty times the energy of 0.02 kg. The equation is on the equation sheet.

5 GCSE-PHYS-MAT-0015

What is the key difference between specific heat capacity and specific latent heat?

Specific heat capacity is about changing temperature; specific latent heat is about changing state

提示One goes with a thermometer reading that climbs, the other with a reading that stays put.

为什么Specific heat capacity is the energy to raise the temperature of one kilogram by one degree Celsius, with no change of state. Specific latent heat is the energy to melt or boil one kilogram with no change of temperature. AQA expects pupils to be able to tell the two apart.

6 GCSE-PHYS-MAT-0016

A solid is heated at a steady rate and its temperature is plotted against time. The line rises, then stays level for several minutes, then rises again. What is happening during the level section?

The solid is melting

提示Energy is still going in, but it is being spent on something other than warming.

为什么A flat section on a heating graph marks a change of state. The first one met when heating a solid is melting. Once all the solid has become liquid, the temperature starts to climb again.

7 GCSE-PHYS-MAT-0017

While a solid is melting, energy is still being supplied to it, yet the thermometer reading stays the same. What is the energy doing?

Changing the state of the substance: it raises the internal energy without raising the temperature

提示The particles are being rearranged, not sped up.

为什么On a heating graph this is why the line goes flat at the melting point and again at the boiling point. The energy supplied is called latent heat. It increases what is stored by the particles by changing how they are arranged, and only when the change is complete does the reading climb again.

8 GCSE-PHYS-MAT-0018

A pure solid is heated steadily from 20 °C. Its temperature–time graph rises to 80 °C, stays level for a while, rises again to 218 °C, and stays level again. What is the melting point of the substance, in °C? (number only)

80

提示Starting from a solid, which change of state must come first?

为什么The first level section, at the lower temperature, is where the solid turns to liquid. The second, at 218 °C, is where the liquid boils. Each flat section sits at the temperature of the change of state it shows.

9 GCSE-PHYS-MAT-0019

A pure substance has a heating graph that is level at 80 °C and level again at 218 °C. In what state is the substance at 150 °C?

Liquid

提示Work out which two changes of state the chosen temperature falls between.

为什么Below the first flat section the substance is solid; above the second it is gas. At 150 °C it has finished melting but has not yet reached its boiling point, so it lies on the sloping part of the graph between the two level sections.

10 GCSE-PHYS-MAT-0020

A test tube of a pure substance, melted to a hot liquid, is left to cool in the room, and its temperature is plotted against time. The line falls, stays level for several minutes, then falls again. What is happening during the level section?

The substance is turning from liquid to solid

提示It is the heating graph run backwards.

为什么A level section on a cooling graph is a change of state too. As the liquid solidifies it gives out energy, which keeps its temperature steady even though the tube is still losing energy to the room. Once it is all solid, the temperature falls again.

11 GCSE-PHYS-MAT-0021

A sealed plastic bottle of air is left on a sunny windowsill and its sides become tight. In terms of particles, why has the pressure inside risen?

The particles move faster and hit the walls harder and more often

提示Warming a gas does not add anything to it, so ask what changes about what is already there.

为什么Heating the air gives its particles more energy, so they travel faster. Faster particles strike the inside of the bottle more often, and each collision pushes harder. Both effects raise the force on every square centimetre of the wall.

12 GCSE-PHYS-MAT-0022

For a fixed volume of gas, raising the temperature ____ the pressure.

increases

提示Think of an aerosol can and the warning printed on it about heat.

为什么With the container's size fixed, hotter gas means faster particles and more forceful collisions with the walls. This is why sealed cans must be kept away from fires and why tyre pressures are checked cold.

13 GCSE-PHYS-MAT-0023

What property of its molecules is the temperature of a gas a measure of?

Their average kinetic energy

提示Hotter means faster; which quantity in physics goes with speed and mass?

为什么The molecules of a gas move at a wide range of speeds, so no single molecule sets the temperature. What a thermometer responds to is the average. Heat the gas and that average goes up; cool it and it comes down.

14 GCSE-PHYS-MAT-0024

Describe the motion of the molecules in a gas.

Constant, random motion

提示They never stop, and there is no pattern to where they are heading.

为什么Gas molecules travel in straight lines at high speed until they collide with each other or with the walls of the container, then head off in a new direction. The directions and speeds are random. The collisions with the walls are what cause the pressure of the gas.

15 GCSE-PHYS-MAT-0025

A pupil investigates how the temperature of a gas affects its pressure. Why must the gas be kept in a container of fixed volume?

A change in volume would also change the pressure

提示Ask what else, apart from heating, could alter how often the molecules strike the walls.

为什么Pressure depends on how hard and how often the molecules hit the walls. If the container could expand, the molecules would have further to travel between collisions and the pressure would change for that reason as well. Keeping the volume constant means any change in pressure is caused by the temperature alone.

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