Outstanding resources available
-AQA chemistry, biology and physics lessons.
-Differentiated science worksheets compatible with all exam boards.
-Brilliant splat AfL powerpoints.
-Engaging 'Who Wants to be a Millionaire' themed AfL science quizzes.
Outstanding resources available
-AQA chemistry, biology and physics lessons.
-Differentiated science worksheets compatible with all exam boards.
-Brilliant splat AfL powerpoints.
-Engaging 'Who Wants to be a Millionaire' themed AfL science quizzes.
Complete set of 3 revision mat worksheets which covers the AQA B1 4.3
unit. Includes the following content:
-4.3.1 Communicable diseases
4.3.1.1 Communicable (infectious) diseases
4.3.1.2 Viral diseases
4.3.1.3 Bacterial diseases
4.3.1.4 Fungal diseases
4.3.1.5 Protist diseases
4.3.1.6 Human defence systems
4.3.1.7 Vaccination
4.3.1.8 Antibiotics and painkillers
4.3.1.9 Discovery and development of drugs
-4.3.2 Monoclonal antibodies
4.3.2.1 Producing monoclonal antibodies
4.3.2.2 Uses of monoclonal antibodies
-4.3.3 Plant Disease
4.3.3.1 Detection and identification of plant diseases
4.3.3.2 Plant defence responses
Knowledge organiser #Knowledge map # Mind map
Fantastic pupil led worksheets and activities:
-Includes ALL Chemistry, Biology and Physics equations and calculations.
-Engaging tasks where pupils need to determine the formula, equation and units for each calculation.
-For AQA combined trilogy, combined synergy and triple science.
-Higher tier and triple science formulas clearly highlighted.
-Answers for every equation.
-Units specified for each calculation.
-Can be used a powerpoint activity or printed as worksheets.
-Clearly indicates which equations need to be memorised and which equations are given in the exam.
-Every calculation in B1, B2, C1, C2, P1 and P2 covered!
**
-Covers the following formulas:
PHYSICS:
weight = mass × gravitational field strength
work done = force × distance
force = spring constant × extension
moment = force × distance
pressure = force/surface area
distance = speed × time
acceleration = change in velocity / time
force = mass × acceleration
momentum = mass × velocity
kinetic energy = 0.5 × mass × speed2
gravitational potential energy = mass × gravitational field strength × height
power = energy transferred / time
power = work done / time
efficiency = useful energy out / total energy in
wave speed = frequency × wavelength
charge = current × time
potential difference = current × resistance
power = potential difference × current
power = current2 × resistance
energy = power × time
energy = charge × potential difference
density = mass/volume
pressure = height × density × gravitational field strength
final velocity2 – initial velocity2 = 2 × acceleration × distance
force = change in momentum / timeforce = mass x change in velocity / time
elastic potential energy = 0.5 × spring constant × extension2
change in thermal energy = mass × specific heat capacity × temperature change
period = 1 / frequency
magnification = image height / object height
force = magnetic flux density × current × length
thermal energy = mass × specific latent heat
Vp/Vs = np/ns
voltage primary coil × current primary coil = voltage secondary coil × current secondary coil
pressure × volume = constantpressure 1 × volume 1 = pressure 2 × volume 2
CHEMISTRY:
Atomic number
Mass Number
Group number
Period number
Overall charge
Relative atomic mass
Relative formula mass
Conservation of Mass
Mole = mass / molar mass
Avogadro’s constant
Concentration = mass / volume
Concentration = mole / volume
Percentage yield
Atom economy
Volume of gases
Energy change
Rate of reaction
General formula for alkanes
General formula for alkenes
General formula for alcohols
General formula for carboxylic acids
BIOLOGY:
Magnification = size of image / size of object
Circular Cross-sectional area = πr²
Volume of cube = length x length x length
Surface area = 6 x length x length
Ratio = Surface area /volume
Percentage change = (change / original) x 100%
Heart rate = number of beats / number of minutes
Breathing rate = number of breaths / number of minutes
Complete set of outstanding pupil-led lesson PowerPoints and worksheets which covers the AQA C1 4.1 unit. Includes the following content:
4.1.1.1 Atoms, elements and compounds
4.1.1.2 Mixtures
4.1.1.3 The development of the model of the atom
4.1.1.4 Relative electrical charges of subatomic particles
4.1.1.5 Size and mass of atoms
4.1.1.6 Relative atomic mass
4.1.1.7 Electronic structure
4.1.2.1 The periodic table
4.1.2.2 Development of the periodic table
4.1.2.3 Metals and non-metals
4.1.2.4 Group 0
4.1.2.5 Group 1
4.1.2.6 Group 7
4.1.3.1 Comparison (of transition metals) with Group 1 elements
4.1.3.2 Typical properties (of transition metals)