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OCR Gateway GCSE Physics J249 Higher Paper 1 summary notes

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OCR Gateway GCSE Physics J249 Higher Paper 1 summary notes written by a Grade 9 student

Institution
GCSE
Module
Science

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P1: Matter

Chapter 1.1: The particle model
2000 years ago
●​ People believed things could be split forever
●​ Two Greek philosophers (Democritus and Leucippus) thought it isn’t possible
●​ They believed it would end with an atom
●​ Atom (atomos meaning indivisible in Greek)
●​ They claimed atoms were too small to see

1870’s
●​ John Dalton did experiments to measure how elements combined
●​ Believed his experiments could be explained with atoms
●​ Created a model of an atom
●​ He thought that all atoms in an element are the same and the atoms in one element are
different to the atoms in the other elements

1897
●​ J. J. Thomson was investigating rays given out by hot metals, called cathode
rays
●​ He discovered that they are made up of particles that have one thousandth the
mass of a hydrogen atom
●​ He had found a particle called an electron that must have come from inside an
atom
●​ He also worked out the charge of an electron is negative
●​ Atoms overall have no electrical charge - neutral
●​ Thomson suggested a new model
●​ He said that atoms are like blueberry muffins
●​ In the model, the atom consists of positive mass with negative electrons
●​ Did not know what the mass was made of, or the structure
●​ Thought it might be solid or like a cloud

1909
●​ Ernest Rutherford discovered some materials emit particles
●​ Called them alpha particles - have positive charge
●​ Decided to fire them at a piece of gold foil
●​ Hans Geiger and Ernest Marsden helped him with work
●​ Most of particles went through, but a few bounced back
●​ Could not be explained by Plum Pudding model
●​ Suggested atom is made of tiny, positively charged
nucleus with electrons around outside
●​ Nearly all mass of atom is in nucleus
●​ When alpha particles hit nucleus they bounce back
●​ Later, scientists discovered nucleus is made of 2 types of
particles: neutrons and protons

1913
●​ Problem with Rutherford’s model: you would expect electrons to spiral in until they hit nucleus
●​ Niels Bohr suggested electrons can only move in fixed orbits called shells around nucleus
●​ Modern atomic structure

,Atom is about 0.000,000,0001m in diameter. Standard form: 1x10-10m



Chapter 1.2: Changes of state
Density
●​ Tells you how much mass is in certain volume
3 𝑚𝑎𝑠𝑠(𝑘𝑔)
●​ Formula: 𝑑𝑒𝑛𝑠𝑖𝑡𝑦(𝑘𝑔/𝑚 ) = 3
𝑣𝑜𝑙𝑢𝑚𝑒(𝑚 )
●​ Solid is most dense, gas is least dense
●​ Depends on particles arrangement ^^ and mass of particles
●​ Conservation of mass:
○​ Have to add or remove material for mass of a system to change
○​ Particles do not appear or disappear - Law of Conservation of Mass
○​ Applies when substances change state

Energy and temperature
●​ Temperature
○​ tells you how hot or cold something is
○​ Can be measured by thermometer or temperature sensor
○​ Can be measured in Celsius, Fahrenheit or Kelvin
○​ Difference in temperature of 1oC is same as 1K
●​ Difference between energy and temperature
○​ When water is heated, energy from chemical store of fuel is transferred to thermal
store of water
○​ Water particles move faster or vibrate more
○​ Energy in thermal store is measured in joules - depends on arrangement of particles
and how fast they are moving or vibrating
○​ Temperature tells you average kinetic energy of particles
●​ What happens when you heat things up?
○​ Changes energy stored within the system to increase the temperature
○​ Produces a change of state
○​ makes chemical reactions happen
○​ Changes of state are physical changes
■​ Does not make new substances
■​ Most are easy to reverse
■​ Particles are only rearranged
○​ Chemical reactions are different
■​ Involves joining atoms together in different ways
■​ Cannot be easily reversed

Specific heat capacity
●​ Amount of energy needed to raise temperature of an object depends on
○​ Type of material
○​ Mass of material
○​ Temperature rise
●​ Energy needed to raise temperature of 1kg of a material by 1oC is specific heat capacity
●​ Heating increases internal energy of material
●​ Internal energy: energy that relates to motion, vibration, rotation and arrangement of particles
●​ How to calculate using specific heat capacity: change in thermal energy (J) = mass (kg) x
specific heat capacity (J/kgoC) x change in temperature (oC)
●​ Specific heat capacity how resistant material is to change in temperature

, Specific latent heat
●​ During change of state internal energy increases but temperature does not
●​ Specific latent heat of fusion (or melting) is energy transferred when 1kg of substance
changes between liquid and solid
●​ Specific latent heat of vaporisation is energy transferred when 1kg of substance changes
between liquid and gas
●​ How to calculate with specific latent heat: thermal energy for change in state (J) = mass (kg) x
specific latent heat (J/kg)
●​ Difference between specific latent heat and specific heat capacity: SLH is about change of
state, SHC is about change of temperature



Chapter 1.3: Pressure
Pressure from gases
●​ When balloon is blown up, there are more air particles inside
●​ Particles collide with surface of balloon
●​ Each collision produces small force
●​ Many collisions produces outward force over certain area
●​ Produces gas pressure
●​ Force on rubber makes balloon bigger
●​ When you add air particles to container that cannot expand, pressure increases

Effect of temperature on gas pressure
●​ Higher temperature of gas means particles have higher average
speed
●​ Slides more frequently with sides of container
●​ Forms bigger force and more pressure
●​ Pressure gauge can be used to measure pressure of air trapped in
bottle
●​ Measured in pascals (Pa)
●​ One pascal = one newton per square metre (1 N/m2)
●​ For higher pressure, use kilopascals

Extrapolating
●​ Dotted line shows what would happen
if you continued cooling gas
●​ Pressure would reach 0 Pa at
-273.14oC, or 0K
●​ Not possible to reach absolute zero,
but value can be worked out by
extrapolating


Measuring pressure of gas
●​ Manometer

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