exam science study notes
create gpstr and hstr exam science study notes with suitable diagrams and explanation in English for year 2026
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create gpstr and hstr exam science study notes with suitable diagrams and explanation in English for year 2026
What this prompt does
This is a brief request for English science study notes for GPSTR and HSTR exams in 2026. It does not specify syllabus scope, chapters, length, or exam region details.
Real outputs by model
Read full answers
We gave three models the same input and copied their answers unedited. Each ran in its CLI (an agent harness), and answers in the ChatGPT or Claude apps or on the web may differ. Outputs are in Korean.
현재 작업 공간이 읽기 전용이라 파일로 저장할 수는 없었습니다. 아래 내용은 바로 문서로 복사해 사용할 수 있는 영어 학습 노트입니다. 약어의 공식 범위가 기관별로 다를 수 있으므로 2026 공식 syllabus와 대조해 주세요.
GPSTR & HSTR Science Study Notes — 2026
1. Scientific Method
- Independent variable: the factor deliberately changed.
- Dependent variable: the factor measured.
- Control variables: factors kept constant.
- Accuracy: closeness to the true value.
- Precision: closeness of repeated measurements.
- Validity: whether the experiment measures what it should.
- Reliability: whether repeated results are consistent.
Question → Hypothesis → Fair test → Results → Analysis → Conclusion
↑ ↓
└──────────── Improved question or method ───────────────┘
Important graph rules:
- Independent variable on the x-axis.
- Dependent variable on the y-axis.
- Include units.
- Use a suitable scale.
- Draw a line of best fit.
2. Biology
Cell structures
Plant cell Animal cell
┌────────────────────┐ ┌───────────────┐
│ Cell wall │ │ Cell membrane │
│ ┌────────────────┐ │ │ Nucleus │
│ │ Cell membrane │ │ │ Mitochondria │
│ │ Nucleus │ │ └───────────────┘
│ │ Chloroplasts │ │
│ │ Large vacuole │ │
│ └────────────────┘ │
└────────────────────┘
- Nucleus: controls cell activities and contains genetic material.
- Cell membrane: controls movement into and out of the cell.
- Mitochondria: site of aerobic respiration.
- Chloroplasts: absorb light for photosynthesis.
- Cell wall: provides support in plant cells.
- Vacuole: contains cell sap and maintains turgor.
Transport
- Diffusion: movement from high concentration to low concentration.
- Osmosis: movement of water through a partially permeable membrane.
- Active transport: movement against the concentration gradient using energy.
Key equations
Carbon dioxide + water → glucose + oxygen
photosynthesis
Glucose + oxygen → carbon dioxide + water + energy
aerobic respiration
Human systems
Air → trachea → bronchi → bronchioles → alveoli ⇄ blood
Food → stomach → small intestine → blood → body cells
Alveoli are efficient because they have:
- a large surface area;
- thin walls;
- a good blood supply;
- a moist surface.
3. Chemistry
Particle model
Solid Liquid Gas
● ● ● ● ● ● ● ●
● ● ● ● ● ● ●
● ● ● ● ● ● ●
Fixed positions Close and moving Far apart and fast
- Heating increases particle kinetic energy.
- A change of state is a physical change.
- No new substance is formed during melting, freezing, boiling, or condensation.
Atomic structure
- Proton: positive charge.
- Neutron: no charge.
- Electron: negative charge.
- Atomic number = number of protons.
- Mass number = protons + neutrons.
Chemical bonding
- Ionic bonding: electrons are transferred between atoms.
- Covalent bonding: atoms share electrons.
- Metallic bonding: positive ions are surrounded by delocalised electrons.
Acids and bases
- pH below 7: acidic.
- pH 7: neutral.
- pH above 7: alkaline.
Acid + base → salt + water
Acid + carbonate → salt + water + carbon dioxide
Reaction rates
A reaction becomes faster when:
- temperature increases;
- concentration increases;
- pressure increases for gases;
- surface area increases;
- a catalyst is added.
A catalyst lowers activation energy and is not used up.
4. Physics
Motion and forces
Normal reaction
↑
Friction ← [ block ] → Applied force
↓
Weight
Formulas:
speed = distance ÷ timeacceleration = change in velocity ÷ timeforce = mass × accelerationweight = mass × gravitational field strengthwork done = force × distancepower = energy transferred ÷ timeefficiency = useful output ÷ total input × 100
A resultant force of zero means that an object is stationary or moving at constant velocity.
Waves
crest crest
▲ ▲
│ amplitude │
─────────┼───────╱╲──────────┼── equilibrium
╱ ╲
trough
←── wavelength ──→
- Transverse wave: vibrations are perpendicular to the direction of travel.
- Longitudinal wave: vibrations are parallel to the direction of travel.
wave speed = frequency × wavelength- Frequency is measured in hertz (Hz).
Electricity
┌──────[ resistor ]──────┐
│ │
(+) Battery │
│ │
└───────────────────────┘
current = charge ÷ timepotential difference = energy ÷ chargeresistance = voltage ÷ currentpower = voltage × current
Series circuits:
- same current throughout;
- voltage is shared.
Parallel circuits:
- same voltage across each branch;
- current is divided between branches.
5. Earth and Environment
Water cycle
Condensation
↓
Evaporation → Clouds → Precipitation
↑ ↓
Oceans/Lakes ← Runoff ← Land
↓
Groundwater
- Photosynthesis removes carbon dioxide from the atmosphere.
- Respiration, decomposition, and combustion release carbon dioxide.
- The greenhouse effect occurs when gases absorb outgoing infrared radiation.
- Renewable resources include solar, wind, hydroelectric, geothermal, and biomass.
- Non-renewable resources include coal, oil, gas, and many minerals.
6. Exam Skills
- State: give a short fact.
- Define: give the exact meaning.
- Describe: state what happens or what a graph shows.
- Explain: give a reason using scientific principles.
- Compare: give similarities and differences.
- Evaluate: discuss evidence, strengths, limitations, and judgement.
For calculation questions:
- Write the formula.
- Substitute the values.
- Show the unit.
- Round sensibly.
- Check whether the answer is realistic.
Model explanation:
The rate increases as temperature rises because particles have more kinetic energy. Therefore, collisions occur more frequently and more particles have enough energy to react.
7. Final Revision Checklist
- I can explain accuracy, precision, validity, and reliability.
- I can label plant and animal cells.
- I can explain diffusion, osmosis, and active transport.
- I can write the equations for photosynthesis and respiration.
- I can calculate speed, force, work, power, density, and efficiency.
- I can explain acids, bases, bonding, and reaction rates.
- I can interpret graphs and identify anomalies.
- I can explain the water cycle, carbon cycle, and greenhouse effect.
- I can plan a safe and fair scientific investigation.
- I can answer “explain” questions using: because → scientific principle → result.
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