Concept Studio

See the idea. Put it to the test.

956 activities from Kindergarten to Year 12, in 13 subject areas. A practical gives the idea, what you need, the steps, what you should see and a safety card. A teacher-led demonstration gives the idea and its hazards; its method is for tutors on the learning platform.

Review

Reviewed before publication (owner’s confirmation, 24 September 2026). That covers every activity here, and a practical’s page lists the sources its author read.

A safety card on every page

The risk, who supervises and the hazards. The 38 teacher-led demonstrations show their idea and hazards here; their materials, steps and sources, and any result, control or note that states a number or an amount, are for tutors and administrators on the learning platform.

School laboratory, not for home

207 activities are medium or high risk. Each says so on its page: In a school laboratory, with a teacher supervising, under the school's risk assessment. Not for home.

Curriculum references

Each activity lists the NSW syllabus outcomes and Australian Curriculum v9 codes it supports. They are references, not a verified or complete curriculum alignment.

Find an activity

Clear all

A practical is carried out at the bench, in the classroom or outdoors. A practical with its model not built stands on its own; the page says where a step mentions the model. A calculation and data activity works from published figures by hand, with a calculator or in a spreadsheet. No page includes an interactive model.

100 activities

Mathematics K–6 · page 1 of 3

  1. Mathematics K–6 · Kindergarten

    Fair shares: dealing a collection into equal groups

    Sharing one at a time gives every group the same number, and sometimes some are left over.

    PracticalLow risk
  2. Mathematics K–6 · Kindergarten

    Feel and name: sorting 2D shapes by their features

    A shape is named by its features, such as how many straight sides and corners it has, and not by which way up it is.

    PracticalLow risk
  3. Mathematics K–6 · Kindergarten

    Halfway: folding a ribbon to find the middle

    Half of a length is one of two equal parts, found by folding the length end to end, and the fold marks the halfway point.

    PracticalLow risk
  4. Mathematics K–6 · Kindergarten

    Heavier or lighter: comparing masses by hefting

    Mass is how much stuff is in an object, felt by hefting one object in each hand, and it is not the same as size.

    PracticalLow risk
  5. Mathematics K–6 · Kindergarten

    Longer or shorter: comparing lengths end to end

    Two lengths can only be compared when one end of each is lined up on the same baseline, so that the other ends show which is longer.

    PracticalLow risk
  6. Mathematics K–6 · Kindergarten

    Our day in order: sequencing events and o'clock times

    The events of a school day happen in a fixed order, the days of the week repeat in a cycle of seven, and when the minute hand points to 12 the hour hand points to the hour.

    PracticalLow risk
  7. Mathematics K–6 · Kindergarten

    Packaging sort: objects that stack, roll or do both

    Three-dimensional objects can be sorted by testing them: flat faces let an object stack and slide, curved surfaces let it roll, and an object such as a can has both.

    PracticalLow risk
  8. Mathematics K–6 · Kindergarten

    Seeing how many without counting: dot cards and ten-frames

    Small collections up to 5 can be recognised in an instant from their arrangement, and a ten-frame shows a number and how many more make 10 at the same time.

    Practical, model not builtLow risk
  9. Mathematics K–6 · Kindergarten

    Sorting our shoes: a graph made of real objects

    When objects are sorted into rows that start on the same line and each object takes one equal space, the longest row shows the most common group without counting.

    PracticalLow risk
  10. Mathematics K–6 · Kindergarten

    Ten-frames: counting and comparing collections to 20

    A collection keeps the same number however it is spread out, and two ten-frames show a teen number as one full ten and some more, so two collections can be compared by looking at the filled squares.

    Practical, model not builtLow risk
  11. Mathematics K–6 · Kindergarten

    Under the cup: the parts that make a number up to 10

    A collection can be split into two parts in several ways, and knowing one part and the whole tells you the other part.

    Practical, model not builtLow risk
  12. Mathematics K–6 · Kindergarten

    What comes next: repeating patterns with beads and pegs

    A repeating pattern is built from one unit that repeats, so knowing the unit tells you what comes next and what is missing.

    Practical, model not builtLow risk
  13. Mathematics K–6 · Kindergarten

    Where is the bear: position words with real objects

    The position of an object is described in relation to another object or person (on, under, beside, between, in front of, behind), so the same object can be described differently from a different place.

    PracticalLow risk
  14. Mathematics K–6 · Kindergarten

    Which covers more: comparing areas by laying one shape on another

    Area is the amount of surface a shape covers, and two surfaces are compared by placing one on top of the other, not by how tall or wide they look.

    PracticalLow risk
  15. Mathematics K–6 · Kindergarten

    Which holds more: filling and pouring

    A container's capacity is how much it holds, found by filling it and pouring into another, and a tall container does not always hold more than a short one.

    PracticalLow risk
  16. Mathematics K–6 · Years 1–2

    Balancing with cubes: mass in uniform informal units

    The mass of an object can be measured by how many identical units balance it, and a heavier unit gives a smaller count.

    PracticalLow risk
  17. Mathematics K–6 · Years 1–2

    Bead frame: making ten to add and subtract within 20

    Numbers to 20 are ten and some more, so 8 + 5 is solved by moving 2 to complete the ten and seeing 3 left over, and subtraction undoes the same moves.

    Practical, model not builtLow risk
  18. Mathematics K–6 · Years 1–2

    Bundling sticks: tens and ones to 120 and beyond

    Ten ones make one ten, so a large collection is counted by making bundles of ten, and the same number can be named in tens and ones in more than one way.

    Practical, model not builtLow risk
  19. Mathematics K–6 · Years 1–2

    Calendar count: dates and the days between events

    A calendar sets out the days in rows of seven, so the days between two dates are counted as whole weeks down the columns and extra days along a row, and the months have different lengths.

    Practical, model not builtLow risk
  20. Mathematics K–6 · Years 1–2

    Class shop: paying and giving change with Australian coins

    A coin stands for a value rather than a count of one, so the same amount can be made with different coins, and change is found by counting on from the price to the amount paid.

    Practical, model not builtLow risk
  21. Mathematics K–6 · Years 1–2

    Covering a surface: area in rows and columns

    Area is measured by covering a surface with identical units that leave no gaps, and the units line up in rows and columns so the count can be found by rows times columns.

    PracticalLow risk
  22. Mathematics K–6 · Years 1–2

    Cube towers: skip counting by twos, fives and tens

    Equal towers turn counting by ones into counting by twos, fives or tens, and a staircase of towers that grow by the same step is an additive pattern whose missing terms can be predicted.

    Practical, model not builtLow risk
  23. Mathematics K–6 · Years 1–2

    Equal groups and arrays with counters

    Equal groups arranged in rows make an array, and turning the array shows that 3 rows of 4 and 4 rows of 3 hold the same number.

    Practical, model not builtLow risk
  24. Mathematics K–6 · Years 1–2

    Geoboard shapes: sides, corners and parallel sides

    A two-dimensional shape is classified by its straight sides and corners and by features such as opposite sides that are parallel, not by its size or which way up it sits.

    Practical, model not builtLow risk
  25. Mathematics K–6 · Years 1–2

    Give and follow directions on a floor grid

    A route is a sequence of steps and turns, and the same words move a person or a floor robot to the same square when followed exactly.

    PracticalLow risk
  26. Mathematics K–6 · Years 1–2

    Half past and quarter past on a geared clock

    The minute hand and the hour hand move together: while the minute hand travels half way round, the hour hand moves half way from one number to the next.

    Practical, model not builtLow risk
  27. Mathematics K–6 · Years 1–2

    Halves, quarters and eighths by folding

    Folding a whole in half again and again makes 2, 4 then 8 equal parts, each part half the size of the one before.

    PracticalLow risk
  28. Mathematics K–6 · Years 1–2

    How long is a minute: comparing and measuring durations

    Duration is how long something takes, and it can be compared by starting two events together or measured by counting repeats of a fixed timer.

    PracticalLow risk
  29. Mathematics K–6 · Years 1–2

    How many cups fill the jug: capacity with uniform units

    Capacity is measured by counting how many times a smaller container fills a larger one, and the estimate can be improved after the first few cupfuls.

    PracticalLow risk
  30. Mathematics K–6 · Years 1–2

    Measuring with paperclips: uniform units end to end

    A length is measured by laying identical units end to end with no gaps or overlaps, and a smaller unit gives a bigger count for the same length.

    PracticalLow risk
  31. Mathematics K–6 · Years 1–2

    Packing a box: volume with cubes in layers

    The volume of a box is the number of identical cubes that pack it without gaps, and the cubes sit in layers that each hold the same number.

    PracticalLow risk
  32. Mathematics K–6 · Years 1–2

    Quarter, half and full turns with bodies and clock hands

    A turn is measured by how far round something goes, so two quarter turns make a half turn, four make a full turn, and three quarter turns one way end where one quarter turn the other way ends.

    Practical, model not builtLow risk
  33. Mathematics K–6 · Years 1–2

    Roll, stack or slide: sorting 3D objects by what they can do

    The flat faces and curved surfaces of an object decide whether it can roll, stack or slide, so objects can be sorted by testing them.

    PracticalLow risk
  34. Mathematics K–6 · Years 1–2

    Tally, table, picture graph: a class survey

    Answers to a question can be collected with tally marks, organised in a table and shown in a picture graph where one picture stands for one answer.

    PracticalLow risk
  35. Mathematics K–6 · Years 1–2

    The twentieth bead: finding the unit of repeat

    A repeating pattern is fixed by its unit of repeat, so the length of the unit tells you the element at any position without building the whole pattern.

    Practical, model not builtLow risk
  36. Mathematics K–6 · Years 1–2

    Will it happen: chance words and ten coin tosses

    Some events are certain, some are impossible and some might happen, and a coin toss is an event that might go either way every time.

    PracticalLow risk
  37. Mathematics K–6 · Years 3–4

    Arrays and area: multiplication facts to 10 by 10

    A multiplication fact is the number of squares in a rectangle of rows and columns, so a hard fact can be split into two easy rectangles and added.

    Practical, model not builtLow risk
  38. Mathematics K–6 · Years 3–4

    Balancing number sentences: finding the missing value

    The equals sign means both sides balance, so a missing value is whatever makes the two pans level, and the same balance shows addition and subtraction as a pair.

    Practical, model not builtLow risk
  39. Mathematics K–6 · Years 3–4

    Counting by quarters along a rope

    Fractions are numbers with places on a number line, so counting by quarters passes 1 and continues to mixed numerals such as one and a quarter.

    Practical, model not builtLow risk
  40. Mathematics K–6 · Years 3–4

    Dollars and cents: making $1 many ways and weighing coins

    One dollar is 100 cents, so an amount is written in dollars and cents and made from many coin combinations, and because 5c, 10c and 20c coins have a mass in proportion to their value, a dollar of any of them has the same mass.

    Practical, model not builtLow risk
  41. Mathematics K–6 · Years 3–4

    Estimate, then measure: metres, centimetres and millimetres

    Metric units are fixed sizes that everyone shares, and an estimate improves when it is checked against a measurement and the error is recorded.

    PracticalLow risk
  42. Mathematics K–6 · Years 3–4

    Fair or unfair: spinners with unequal sectors

    On a spinner the chance of a colour depends on how much of the circle it covers, so a colour with a bigger sector comes up more often over many spins.

    Practical, model not builtLow risk
  43. Mathematics K–6 · Years 3–4

    Fold and mirror: lines of symmetry and turning symmetry

    A shape has a line of symmetry when folding along it makes the halves match exactly, and it has turning symmetry when it fits its own outline before a full turn.

    Practical, model not builtLow risk
  44. Mathematics K–6 · Years 3–4

    Fraction strips: unit fractions and completing the whole

    A unit fraction is one of several equal parts of a whole, and enough copies of it laid end to end make the whole again.

    Practical, model not builtLow risk
  45. Mathematics K–6 · Years 3–4

    From survey to column graph: a statistical investigation

    A question is answered by collecting data with a method that everyone follows, recording it in a frequency table and drawing a graph whose scale suits the numbers.

    PracticalLow risk
  46. Mathematics K–6 · Years 3–4

    Grid references: a map of the playground

    A grid names every cell by a column letter and a row number, so a place on a map can be given and found by two symbols.

    Practical, model not builtLow risk
  47. Mathematics K–6 · Years 3–4

    How many in the jar: estimating a collection by sampling

    A large collection can be estimated by counting one scoop, counting how many scoops fill the container and multiplying, then checked against a full count.

    PracticalLow risk
  48. Mathematics K–6 · Years 3–4

    Layer count: volume in cubic centimetres by packing

    A rectangular prism packed with centimetre cubes has the same number of cubes in every layer, so its volume in cubic centimetres can be described and counted layer by layer, one layer's worth of cubes at a time.

    Practical, model not builtLow risk

For tutors and administrators

The materials and steps of every teacher-led demonstration are on the learning platform, with the safety card first. Sign in with a tutor or administrator account to read them.

Open the teacher-led demonstrations