IB MYP ยท Years 4 & 5 Biology
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IB MYP Mathematics
CRITERION A
Knowing and
CRITERION B
Inquiring and
CRITERION C
Processing and
CRITERION D
Reflecting on
4
Criteria
2
Levels
28+
Modules
180+
Questions
IB MYP Sciences Assessment Framework
All Four Criteria โ Fully Elaborated
IB MYP Sciences criteria are shared across Biology, Chemistry, and Physics. Each criterion is worth 8 marks.

Criterion A MAX 8 MARKS ๐ง
Knowing and Understanding
Recall, use, and apply scientific knowledge and understanding to solve problems set in familiar and unfamiliar situations. Use scientific language and notation correctly.๐ Assessment Strands (iโiv)
Outline scientific knowledge and explain scientific concepts, principles, laws, and theories
Apply scientific knowledge and understanding to solve problems set in familiar situations
Apply scientific knowledge and understanding to solve problems set in unfamiliar situations
Evaluate the validity of a scientific model, law, or theory in relation to new evidence or information
โ๏ธ Physics Topics Covered

Forces & Motion
- Newton's three laws of motion
- Speed, velocity & acceleration
- Distance-time & velocity-time graphs
- Forces โ balanced & unbalanced
- Momentum & impulse (Extended)

Energy
- Forms of energy & energy stores
- Conservation of energy
- Work done and power
- Efficiency calculations
- Specific heat capacity

Waves
- Properties of waves โ amplitude, frequency, wavelength
- Transverse & longitudinal waves
- Reflection, refraction & diffraction
- The electromagnetic spectrum
- Sound โ speed, pitch & loudness

Electricity
- Current, voltage & resistance (Ohm's law)
- Series & parallel circuits
- Electrical power & energy
- Magnetic fields & electromagnetism
- Transformers (Extended)

Criterion B MAX 8 MARKS ๐งช
Inquiring and Designing
Design and carry out scientific investigations. Formulate testable hypotheses, identify variables, design fair experiments, and select appropriate equipment and techniques.๐ Assessment Strands (iโiv)
Explain a problem or question to be tested by a scientific investigation and formulate a testable hypothesis
Explain how to manipulate variables and describe how data will be collected
Describe and explain a method for testing the hypothesis and explain how the data will be analysed
Explain how sufficient, relevant data will be collected to address the research question
๐ Topics Covered

Scientific Method
- Arithmetic sequences & nth term
- Geometric sequences & common ratio
- Fibonacci-type sequences
- Recursive definitions
- Sum of arithmetic & geometric series (Extended)

Data Collection
- Linear functions & gradients
- Quadratic functions & parabolas
- Exponential growth & decay
- Inverse & composite functions (Extended)
- Piecewise-defined functions (Extended)

Physics Practicals
- Numerical pattern recognition
- Generalising results with algebra
- Testing & refining conjectures
- Extending patterns to new contexts
- Proof by induction (Extended)

Safety & Ethics
- Plotting & interpreting graphs
- Gradient as a rate of change
- Area under a graph
- Intersection of functions
- Transformations of curves

Criterion c MAX 8 MARKS ๐
Processing and Evaluating
Process, interpret, and evaluate data from scientific investigations. Identify patterns, draw conclusions, evaluate experimental methods, and suggest improvements.๐ Assessment Strands (iโiv)

Present collected and transformed data clearly, using appropriate means โ tables, graphs, calculations

Interpret data and explain results, using scientific reasoning to determine whether the hypothesis is valid

Evaluate the validity and reliability of the experimental method and the quality of the data

Suggest improvements to the method and explain how they would reduce error or improve reliability
โ๏ธ Physics Topics Covered

Data Processing
- Calculating averages, ranges & uncertainties
- Percentage error & percentage change
- Drawing & interpreting graphs
- Line of best fit & gradient calculations
- Proportionality & inverse relationships

Analysis
- Identifying patterns & trends
- Linking results to theory
- Drawing valid conclusions
- Explaining anomalous results
- Comparing results to accepted values
Evaluation
- Assessing validity of hypothesis
- Identifying sources of error (systematic & random)
- Evaluating reliability of data
- Suggesting specific improvements
- Commenting on sample size & range

Communication
- Writing structured lab reports
- Using SI units & significant figures
- Scientific language & terminology
- Referencing and citations
- Presenting findings clearly

Criterion D MAX 8 MARKS ๐
Reflecting on the Impacts of Science
Reflect on the ways science and its application interact with our society and environment. Evaluate the benefits and limitations of science and consider its ethical dimensions.๐ Assessment Strands (iโiv)

Summarise the ways in which science is applied and used to address a specific problem or issue

Discuss and evaluate the various implications of using science to address the problem or issue (social, ethical, economic, political, cultural, or environmental)

Apply scientific language effectively and use documentation and bibliography correctly

Evaluate the impact of possible solutions or applications, and make reasoned judgements about their use
โ๏ธ Physics Topics Covered

Energy & Society
- Fossil fuels vs renewables
- Nuclear energy โ benefits & risks
- Energy efficiency in the home
- Climate change & global warming
- Carbon footprint & sustainability

Technology
- Medical imaging โ X-rays & ultrasound
- GPS & satellite communication
- Electric vehicles & batteries
- Smart technologies & sensors
- Space exploration & its value

Ethics & Society
- CERN & particle physics โ who benefits?
- Nuclear weapons & disarmament
- Privacy & surveillance technology
- Access to technology globally
- Responsibility of scientists

Environment
- Light & noise pollution
- Electromagnetic radiation safety
- E-waste & toxic materials
- Sustainable engineering
- Physics in environmental monitoring
Core & Extended Physics
Choose the level that matches your school’s MYP programme
LEVEL 01
Core
Physics
Essential physics concepts for all MYP students. Covers forces, energy, waves, electricity, and magnetism with real-world applications and practicals.OUR REVIEWS
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Topic Modules
What You Will Learn

UNIT 01
Forces & Motion
- Newton's laws (1, 2, 3)
- Speed, velocity & acceleration
- Distance-time graphs
- Pressure in solids & fluids
- Turning forces & moments

UNIT 02
Energy
- Energy forms & stores
- Work done = F ร d
- Power = E/t
- Efficiency = useful/total
- Conduction, convection & radiation

UNIT 03
Waves & Light
- Wave properties โ ฮป, f, A, v
- Reflection & refraction
- Total internal reflection
- EM spectrum & uses
- Lenses & the eye

UNIT 04
Electricity
- V = IR (Ohm's law)
- Series & parallel circuits
- P = IV, E = Pt
- Charge & current (I = Q/t)
- Magnets & electromagnets
What’s Included
Everything You Need to Excel

Topic Notes
Concise, exam-focused PDFs for every subtopic with embedded worked examples

Worked Examples
Full step-by-step solutions matching the IB MYP mark scheme exactly

Practice Sheets
Criterion-tagged drill sets โ A, B, C, D questions with full answer keys

Video Tutorials
Screen-recorded lessons by experienced IB MYP Mathematics specialists

Mock Assessments
Full-length papers in authentic IB MYP eAssessment format

Formula Posters
A3 visual formula sheets โ perfect for wall revision and quick reference

Ready to master
IB MYP Physics?
Structured, criterion-aligned Physics tutorials for IB MYP Years 4 & 5 โ Core and Extended โ taught by expert IB Sciences educators.



