IB Physics SL & HL · Exam Technique

IB Physics Long Answer Questions: A Smarter Strategy for Higher Marks

Learn how to read command terms, build a chain of reasoning, set out equations and match your answer to the marks available, so your written Physics earns what your understanding deserves.

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IB Physics Long Answer Questions strategy guide

Many students who sit at a 4 or 5 in IB Physics do not have a concept problem. They have an answer-writing problem. They know the physics, but the page shows an unexplained equation, a bare number, a vague phrase like "it gets bigger", or a diagram with no labels. Examiners can only reward what is written, so reasoning that stays in your head earns nothing.

IB Physics Long Answer Questions reward a visible chain: the principle, the relationship, the working and the link to the conclusion. This guide shows how to build that chain, how to respond to each command term and how much to write for the marks on offer. It is practical teaching advice, not an official IB specification. Always check your current subject guide and past markschemes.

What Are IB Physics Long Answer Questions?

"Long answer" is not an official category. Students use it for any question needing more than a one-line result: explanation questions, extended response questions, structured multi-part questions and calculations that also need justification. The depth required depends on the wording and the marks available, not on a fixed rule for each command term.

  • Explain / justify / suggest: give reasons, linking cause to effect.
  • Describe / compare / distinguish: state features, similarities or differences precisely.
  • Discuss / evaluate: weigh more than one point and reach a supported judgement.
  • Predict: give an outcome, often with a reason.
  • Show that / derive: reach a given result with every step visible.
  • Calculate and explain: numerical work plus a physics statement.

The International Baccalaureate publishes the official subject guide and command term definitions. Use those as your authority and treat this page as a technique guide on top.

The Biggest Problem: Knowing Physics but Not Showing It

Here are original examples of the same understanding, written weakly and then clearly.

Weak (thermal): Temperature increases, so pressure increases.
Stronger: A higher temperature raises the average kinetic energy of the particles. They hit the walls more often and with greater change in momentum, so for constant volume the pressure increases.
Weak (circular motion): The car needs friction to turn.
Stronger: Turning needs a centripetal force towards the centre of the bend. On a flat road this is supplied by friction between tyres and road. If the required force exceeds maximum friction, the car slides outwards.
Weak (electricity): Adding a resistor lowers the current.
Stronger: A resistor in series raises the total resistance. With the emf unchanged, I = ε/R, so the current in the circuit decreases.
Weak (nuclear): The sample gets less radioactive over time.
Stronger: Decay is random, but a fixed fraction of the remaining nuclei decays in each half-life. The number of undecayed nuclei, and so the activity, falls exponentially.

The stronger answers name the physical quantity, state the mechanism and finish by linking back to the question. That is a chain of reasoning, and it is what most markschemes are built to reward.

7 Powerful Strategies for IB Physics Long Answer Questions

1. Start With the Command Term

The verb tells you what kind of answer earns marks. Students lose marks by describing when asked to explain, or stating when asked to justify.

Example: "Explain why the gas cools" needs a mechanism, not "it cools down".

  • Circle the command term before reading further.
  • Ask: am I giving features, reasons or a judgement?

Common mistake: restating the question as the answer.

2. Identify the Physics Principle

Name the idea in play: conservation of momentum, Newton's second law, energy transfer, Snell's law. Marks are often tied to applying the correct principle.

Example: "Momentum is conserved because there is no external resultant force in the collision."

  • Write the principle in a short phrase first.
  • Check its conditions actually apply.

Common mistake: using energy conservation for an inelastic collision without accounting for losses.

3. Build a Clear Chain of Reasoning

Each sentence should lead to the next. Use linking words such as "therefore", "so" and "because" to show cause and effect.

Example: Larger mass → smaller acceleration for the same force → smaller change in velocity in the same time.

  • Aim for cause, mechanism, effect.
  • Do not skip the middle step.

Common mistake: jumping from cause straight to effect.

4. Show Equations and Substitution Clearly

A correct number with no working can lose method marks if it is wrong, and may lose marks even when right on show-that or multi-step questions.

Example: F = ma → a = 12 / 3.0 = 4.0 m s⁻²

  • Write the relationship, then substitute, then answer.
  • Define any symbol you introduce.

Common mistake: an unexplained equation dropped onto the page.

5. Use Correct Physics Terminology

Precise language shows understanding. "Speed" and "velocity", "heat" and "internal energy", "force" and "pressure" are not interchangeable.

Example: "The frequency of collisions with the wall increases" is stronger than "more collisions happen".

  • Keep a personal glossary of terms you often misuse.
  • Replace "it", "stuff" and "bigger" with named quantities.

Common mistake: writing "heat" when internal energy or temperature is meant.

6. Check Units, Signs, Directions and Significant Figures

Small slips cost marks across a whole paper. Vectors need direction, and final answers should usually reflect the precision of the data given.

Example: "Displacement is 4.2 m to the left" rather than "4.2".

  • State a sign convention for one-dimensional motion.
  • Give a final answer to a sensible number of significant figures.

Common mistake: forgetting to convert cm to m or km h⁻¹ to m s⁻¹.

7. Match the Depth of Your Answer to the Marks

The marks suggest how many distinct points are expected. Use them as a guide, not a rigid word count.

Example: A 2-mark "explain" often needs two linked ideas. A 1-mark question rarely needs a paragraph.

  • Count the marks, then plan that many separate points.
  • Stop once you have answered the question.

Common mistake: writing everything you know instead of what was asked.

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How to Structure a Long IB Physics Answer

Physics ideaPrincipleEquationWorkingReasoningFinal statementUnit / conclusion

You do not need every stage every time. A pure "state" question needs one. A calculation needs equation, working and unit. An explanation needs idea, principle and reasoning. A "show that" needs all the working and a final statement of the given value.

Under-answering means stopping after the first correct step. Over-writing means repeating textbook content that does not answer the question. Both are fixed by planning one line per expected mark.

Mark-Based Approach

MarksPractical approach
1 markOne precise point or result
2 marksTwo relevant points, or a result plus justification
3 marksClear explanation with linked reasoning
4+ marksStructured multi-step explanation or reasoning

The exact marking approach depends on the question and markscheme. Marks should not be treated as a rigid word-count rule.

IB Physics Command Terms: What Each One Asks For

These are practical interpretations. Confirm official definitions in your IB subject guide.

TermWhat to doWeak responseStronger response
CalculateFind a numerical answer with workingNumber onlyEquation, substitution, answer with unit
DetermineReach an answer, possibly from data or a graphGuessing from the graphMethod shown, values read clearly, unit given
DescribeState features or sequence of eventsVague, incompleteAccurate, precise statements of what happens
ExplainGive reasons or mechanismRestates the observationPrinciple plus linked cause and effect
CompareGive similarities and differencesDescribes each separatelyDirect, point-by-point comparison
DistinguishMake clear the differenceDefines only one itemBoth items with the key difference stated
DiscussOffer a balanced set of pointsOne-sided listSeveral developed points, sensible conclusion
EvaluateWeigh strengths and limitationsLists points, no judgementPoints weighed against evidence, judgement made
JustifyGive valid reasons for an answerAssertionClaim backed by principle or calculation
PredictGive an expected outcomeOutcome with no basisOutcome with brief physics reason
SuggestPropose a plausible ideaIrrelevant ideaSensible proposal linked to the context
Show thatReach the given resultJumps to the answerEvery step, an extra-precision value, final statement

Common IB Physics Long-Answer Mistakes (and Fixes)

MistakeCorrection
1. Defining instead of explainingApply the definition to the situation given.
2. Equation with no physicsSay why the relationship applies here.
3. Final number with no workingShow equation, substitution and answer.
4. Ignoring unitsWrite units at every final answer.
5. Vague words ("bigger", "faster")Name the quantity and the direction of change.
6. No cause and effectUse "because", "so", "therefore" deliberately.
7. Ignoring sign or directionSet a convention and state vector directions.
8. Writing everything you knowPlan one point per mark and stop.
9. Not answering the command termUnderline it and check your last sentence against it.
10. Wrong terminologyKeep a glossary of confused pairs.
11. Missing diagramSketch labelled forces, rays or circuits when helpful.
12. Stopping after the first stepCheck whether the marks demand a further link.
13. Copying the question wordingAdd new information, not a restatement.
14. Unsupported conclusionTie it back to your evidence or calculation.

How to Use the Markscheme Properly

A markscheme is a diagnostic tool, not an answer bank to memorise. After attempting a question under timed conditions:

  • Identify the required ideas, one per mark.
  • Notice the terminology that is accepted and compare it with yours.
  • Mark yourself honestly and spot missing reasoning steps.
  • Record each lost mark in an error log: topic, type of error, what to do next time.
  • Reattempt a similar question a few days later.

Never copy wording blindly. The goal is to understand why each point earns credit so you can build it yourself in a new context.

Original Practice Questions for Long Answers

These are original practice questions created for Nivara Academy. They are not IB questions and have no official markscheme.

QuestionMarksExaminer looks for / structureCommon mistake
Explain why a gas in a sealed rigid container exerts a greater pressure when heated.3Higher kinetic energy → more frequent, harder collisions → greater pressure at constant volume.Stops at "particles move faster".
A 2.0 kg trolley moving at 3.0 m s⁻¹ sticks to a stationary 1.0 kg trolley. Calculate the common speed and state whether kinetic energy is conserved.4Momentum conservation, substitution, answer with unit, compare kinetic energy before and after.Assumes energy is conserved.
Explain why a car moving at constant speed round a circular track is accelerating.2Velocity is a vector, its direction changes → acceleration towards the centre.Talks about speed only.
Describe and explain what happens to the brightness of a lamp when a second identical lamp is added in parallel to a cell with negligible internal resistance.3Same potential difference across each lamp, so same current in each, so brightness unchanged. Total current from the cell increases.Claims brightness decreases.
Evaluate whether a student's experiment with a single timing of a falling ball gives a reliable value of g.3Random error and reaction time, repeat readings, reasoned judgement.Lists errors with no judgement.

Long Answer Checklist

Before moving on, ask:

  • Did I answer the command term?
  • Did I identify the correct Physics principle?
  • Did I show important working?
  • Did I explain the reasoning?
  • Did I use correct Physics terminology?
  • Did I include units where needed?
  • Did I check significant figures where appropriate?
  • Did I answer every part of the question?
  • Does my conclusion actually answer the question?

How Nivara Academy Can Help

Some IB Physics students do not need more content. They need to see where marks are being lost and practise fixing it. That usually means work on exam technique, written explanations, problem-solving, long-answer practice, structured revision and individual feedback on real answers.

Nivara Academy is a personalised 1-to-1 IB learning and support platform. There is no pressure to commit. Discuss Your IB Physics Goals or Explore 1-to-1 IB Physics Support.

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IB Physics Long Answer Questions: FAQ

How do I answer IB Physics long answer questions?

Read the command term, name the principle, write the relationship, show working, link reasoning to the question and finish with a clear statement and unit.

How long should an IB Physics long-answer response be?

There is no fixed length. Plan roughly one distinct point per mark and stop when the question is fully answered.

How can I score more marks on IB Physics explanation questions?

Replace vague wording with named quantities, and link each step with cause and effect.

How should I approach a 4-mark IB Physics question?

Expect several linked points or steps. Sketch a quick plan, such as principle, equation, working, reasoning, and check each against the marks.

What is the difference between "describe" and "explain" in IB Physics?

Describe states what happens or the features. Explain gives the reasons why, using physics principles.

Should I show all working in IB Physics?

Show the equation, substitution and key steps. Skip trivial arithmetic but never present a multi-step result without method.

How can I improve my Physics written answers?

Rewrite weak answers, compare them with markscheme ideas, keep an error log and practise under timed conditions.

Why do I lose marks even when my final answer is correct?

Marks are often awarded for method, reasoning, units or a required statement. A correct number alone may not show these.

How can I use IB Physics markschemes for practice?

Mark your own answer, find missing ideas and terminology, log the error, then reattempt a similar question later. Do not memorise wording.

Can a tutor help me improve IB Physics long-answer questions?

A tutor can give feedback on your actual written answers and show where marks are lost. Results depend on practice and effort, and no outcome is guaranteed.

About This Guide

Prepared by the academic team at Nivara Academy with a focus on practical IB Physics learning and exam preparation. It is an independent study resource and is not an official IB publication.

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