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Numeracy - Level 2 (Years 1 and 2)

Typically, by the end of Year 2, students: Understand and use numbers in context model, represent, order and use numbers up to four digits Interpret proportional reasoning  visualise and describe halves and quarters Interpret chance events identify …

Numeracy - Level 2 (Years 1 and 2) | Knowledge and understanding | Dimensions | Curriculum connections | Resources

Digital Technologies - Years 7 and 8

Collecting, managing and analysing data Acquire data from a range of sources and evaluate authenticity, accuracy and timeliness (ACTDIP025) Analyse and visualise data using a range of software to create information, and use structured data to model …

Digital Technologies - Years 7 and 8 | Competencies and skills | Dimensions | Curriculum connections | Resources

Digital Technologies - Years 9 and 10

Collecting, managing and analysing data Develop techniques for acquiring, storing and validating quantitative and qualitative data from a range of sources, considering privacy and security requirements (ACTDIP036) Analyse and visualise data to create …

Digital Technologies - Years 9 and 10 | Competencies and skills | Dimensions | Curriculum connections | Resources

Elaboration (2) ACLJAU156

knowing that the hiragana spelling of a particular particle does not match its pronunciation, for example, ‘wa’ for は , ‘e’ for へ, ‘o/wo’ for を

Elaboration (2) | ACLJAU156 | Content Descriptions | Years 5 and 6 | Years F–10 Sequence | Japanese | Languages | F-10 curriculum

InF1

Creating halves identifies the part and the whole recognises dividing a whole into 2 parts can create equal or unequal parts creates equal halves by attending to the linear aspect of a model (folds a paper strip in half to make equal pieces by aligning …

InF1 | Interpreting fractions | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

UGP3

Properties of shapes and objects relates the faces of a three-dimensional object to two-dimensional shapes aligns the corresponding faces of an object and its net identifies the relationship between the number of edges of a shape and the number of …

UGP3 | Understanding geometric properties | Measurement and geometry | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

AdS2

Perceptual strategies counts items that can be perceived by ones to find the total of two groups with one-to-one matching of number words and objects builds and subtracts numbers by using objects or fingers makes combinations to form numbers up to …

AdS2 | Additive strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

MuS3

Figurative (imagined units) relies on perceptual markers to represent each group uses equal grouping and counting without individual items visible but needs to represent the groups before determining the total counts by twos, fives and tens, matching …

MuS3 | Multiplicative strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

MuS4

Repeated abstract composite units uses composite units in repeated addition and subtraction using the unit a specified number of times uses skip counting and may use fingers to keep track of the number of groups as the counting occurs determines …

MuS4 | Multiplicative strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

Mathematics - Year 3

Number and place value Recognise, model, represent and order numbers to at least 10 000 (ACMNA052) Apply place value to partition, rearrange and regroup numbers to at least 10 000 to assist calculations and solve problems (ACMNA053) Recognise and explain …

Mathematics - Year 3 | Knowledge and understanding | Dimensions | Curriculum connections | Resources

Mathematics - Year 3

Recognise, model, represent and order numbers to at least 10 000 (ACMNA052) Apply place value to partition, rearrange and regroup numbers to at least 10 000 to assist calculations and solve problems (ACMNA053) Recognise and explain the connection between …

Mathematics - Year 3 | Responsibility and enterprise | Dimensions | Curriculum connections | Resources

CoU3

Applying proportion interprets proportion as the equality of two ratios or rates uses common fractions and decimals for proportional division demonstrates how increasing one quantity in a ratio will affect the total proportion performs operations …

CoU3 | Comparing units (ratios, rates and proportion) | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

UuM6

Identifying the structure of units draws and describes the column and row structure to represent area as an array, moving beyond counting of squares by ones calculates the total area using rows and/or columns as composite units uses familiar household …

UuM6 | Understanding units of measurement | Measurement and geometry | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

UnC5

Calculating probabilities describes the likelihood of events using a fraction or percentage interprets the odds of an event (odds of 5:1, the odds against rolling a 6, means a wager of $1 stands to win $5) explains how probability is not affected …

UnC5 | Understanding chance | Statistics and probability | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

ACMGM042

interpret, in context, the slope and intercept of a straight-line graph used to model and analyse a practical situation

ACMGM042 | Content Descriptions | Unit 2 | General Mathematics | Mathematics | Senior secondary curriculum

ACMGM092

fit a least-squares line to model long-term trends in time series data.

ACMGM092 | Content Descriptions | Unit 4 | General Mathematics | Mathematics | Senior secondary curriculum

ACMMM138

recognise uniform discrete random variables and use them to model random phenomena with equally likely outcomes

ACMMM138 | Content Descriptions | Unit 3 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACMMM146

use Bernoulli random variables and associated probabilities to model data and solve practical problems. 

ACMMM146 | Content Descriptions | Unit 3 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACSPH017

The kinetic particle model describes matter as consisting of particles in constant motion, except at absolute zero

ACSPH017 | Content Descriptions | Unit 1 | Physics | Science | Senior secondary curriculum

ACSPH071

The mechanical wave model can be used to explain phenomena related to reflection and refraction (for example, echoes, seismic phenomena)

ACSPH071 | Content Descriptions | Unit 2 | Physics | Science | Senior secondary curriculum

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