N5 Assignment from 2020+

A set of PRACTICAL EXPERIMENTAL SHEETS that are in line with the changes brought in for the 2020/21 session. Teachers you are expected to check the validity of these. I’d love feedback on those you’ve tried and seem to get a good mark. 

This table has the worksheets in word form.

TopicSheetNotes
Dynamics / SpaceN5 Hookes Law AHookes Law A
Dynamics / SpaceN5 Hookes Law BHookes Law B
DynamicsN5 Acc slopeAcceleration and angle of the slope
DynamicsN5 F=m a AF=ma changing mass :A
DynamicsN5 F=m a BF=ma changing mass: B
DynamicsN5 projectiles A
Projectiles changing the launch angle: A
DynamicsN5 projectiles BProjectiles changing the launch speed: B
DynamicsN5 projectiles CProjectiles changing the launch height: C
DynamicsN5 Stopping distance AHow the speed affects the stopping distance
DynamicsN5 Stopping distance BHow the speed affects the stopping distance
DynamicsPendulum and length
Prop. of Matter
Prop. of MatterN5 Charles' Law AVolume and Temperature with constant pressure
Prop. of MatterN5 Boyles Law APressure and volume for constant temperature
Prop. of MatterN5 Boyles Law BPressure and volume for constant temperature: A
Prop. of MatterN5 Pressure Law APressure and Temperature for constant volume: B
Prop. of MatterN5 Pressure and depth AEffects of pressure of a liquid with depth
Prop. of MatterN5 SHC ASpecific Heat Capacity measure V and I
Prop. of MatterN5 SHC BSpecific Heat Capacity using joule meter
Prop. of MatterN5 Cooling Curve ACooling curve of water and stearic acid
Prop. of MatterN5 Latent heat of vaporisation ADetermining latent heat of vaporisation A
Prop. of MatterN5 Latent heat of vaporisation BDetermining latent heat of vaporisation B
Electricity / EnergyN5 Solar Cell A angle
Solar Cells A Angle
Electricity / EnergyN5 Solar Cell B distanceSolar Cells B Distance
Electricity / EnergyN5 Solar Cell C translucentSolar Cells C Translucent
Electricity / EnergyN5 Solar Cell D area
Solar Cells D Area
ElectricityN5 Ohms Law AMeasuring voltage and current for a ohmic conductor (resistor)
ElectricityN5 Ohms Law BMeasuring voltage and current for a non-ohmic conductor
ElectricityN5 Thermistors A 2023Thermistors
ElectricityN5 LED 2023LEDs
ElectricityN5 LDR AAn LDR -distance from the light source.
N5 Assign LDR BAn LDR - light intensity: B
ElectricityN5 Assign LDR C
Calibrating an LDR against a light level meter
SpaceOrbit period v height
Waves / SpaceMicrowave distance v signal strength
WavesN5 Speed of SoundSpeed of Sound
WavesN5 Refraction ARefraction
Radiation

Assignment Investigation Sheets

NOTE: TO ALL TEACHERS,  IT IS  YOUR RESPONSIBILITY TO CHECK THE SHEETS YOU ARE GIVING TO STUDENTS DO NOT BREACH THE STRICT GUIDELINES GIVEN IN THE ASSESSMENT GUIDE AND THAT THESE EXPERIMENT SHEETS MEET THE SPECIFICATIONS. YOU ARE ALSO RESPONSIBLE FOR CHECKING YOUR OWN RISK ASSESSMENTS, ITEMS IN THESE SHEETS ARE A GUIDE. 

Warning about the Choice of Investigation

Marking grid.docx

3779phys2_tcm4-124418 Again this is a temporary file until I can get the experiment cards organised but the experiments you could choose can be found on pp 33, 34, 36, 37, 76, 77, 87, 125


This is the info for N5 from August 2020

Student Information

The material has been published on the Understanding Standards Website SQA Physics N5 INFO

N5 Candidate 1 N5 Commentary 1

Above gives an example of the new Assignment requirements. It is vital that you don’t copy or even attempt to copy this assignment. If you are likely to copy other people’s work it is best to choose another topic.

Initial Task- vital

SectionExpected responseMax mark
TitleThe report has an informative title.1
AimA description of the purpose of the investigation.1
Underlying physics relevant to the aimA description of the physics relevant to the aim which shows understanding.3
Data collection and handlingA brief description of the experiment.1
Sufficient raw data from the experiment.1
Raw data presented in a table with headings and units.1
Values correctly calculated from the raw data.1
Data from an internet/literature source.1
A reference for the internet/literature source.1
Graphical presentationThe correct type of graph used to present the experimental data.1
Suitable scales.1
Suitable labels and units on axes.1
All points plotted accurately, with line or curve of best fit if appropriate.1
AnalysisExperimental data compared to data from internet/literature source.1
ConclusionA conclusion related to the aim and supported by data in the report.1
EvaluationA discussion of a factor affecting the reliability, accuracy or precision of the results.2
StructureA report which can be easily followed.1
TOTAL MARKS20

Before Starting on your assignment take time to go over the following, it is vital that you know what you are doing.

The first thing that you must do before starting your Assignment is to know what you will be doing, what expectations there are and how you will be writing this up. All of this is contained in the candidate guide below.

Candidate Instructions word

Candidate Instructions pdf

Marking Instructions for the N5 Assignment

mark scheme pdf form

mark scheme excel form

You must also correctly reference your work, learn how to do this with the following link.

Exeter.ac.uk/studyskills/harvard_referencing.htm

N5 Assignment instructions (pdf file)

To kick you off with your assignment Mr Forwood has supplied the following document.

N5 Assignment instructions (editable in word)

Pupil checklist flyleaf    word    

Pupil checklist flyleaf pdf (Thanks N Forwood)

Here is the what you can take into the write-up phase. Collect a polypocket and keep it all in there.

National 5 Assignment Material

ASSIGNMENT INSTRUCTIONS FROM THE SQA

When choosing a topic for an assignment check that:

  1. the theory is in the compendium,
  2. the topic is in the course,
  3. there is a graph of your experiment online or in one of the text books in school. Does your graph contain data ie, are there proper points on the graph or is it a trendline- which do you think is better?
  4. there is theory that you can write about that relates to your experiment.

Remember If you’ve used the results from your experiment to determine further values, you should show at least one sample calculation.

I think the following experiments might be suitable-

3779phys2_tcm4-124418 Again this is a temporary file until I can get the experiment cards organised but the experiments you could choose can be found on pp 33, 34, 36, 37, 76, 77, 87, 125

Understanding Standards Webinar

How to record your relationships!

This is not a discussion about your friendships but how the data can be described.

The best terminology to use for graphs that have

That avoids issues around whether something is directly proportional or proportional.

Directly proportional only applies when the graph is a straight line through the origin (or close to the origin within the uncertainty in the y-intercept). It is best to avoid ‘proportional’ altogether.

A curve, such as that produced when plotting mass against acceleration for a constant force, can never be described as showing an ‘inversely proportional’ relationship, since it does not show the actual relationship (it could potentially be any number of different relationships).

Inverse proportionality can only be claimed when the correct graph of, for example, acceleration against 1/m is drawn, and it produces a straight line through the origin.

The type of graph produced for an internal resistance experiment is covered by the term ‘linear relationship’, as it follows the equation y=mx+c format.

Mrs Physics

Updated Feb 2026

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