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The Arts: Visual Arts - Satisfactory - Years 3 and 4

This portfolio of student work shows that the student can identify and describe visual conventions of an artwork (item 1) and draw and plan their own artworks (items 2 and 3).  They use visual conventions, processes and techniques to create several sculptures …

The Arts: Visual Arts - Satisfactory - Years 3 and 4 | Portfolios | Work samples | Resources

Languages: Indonesian - Satisfactory - Years 3 and 4

This portfolio of student work shows that the student can interact in classroom routines and structured interactions with teachers and peers (WS1). The student reproduces the sounds of au (for example, mau) and g (for example, gemuk) and the final sound k (for …

Languages: Indonesian - Satisfactory - Years 3 and 4 | Portfolios | Work samples | Resources

Mathematics - Years 7 and 8

Year 7 Statistics and probability Data representation and interpretation Content descriptions with elaborations: Identify and investigate issues involving numerical data collected from primary and secondary sources (ACMSP169) obtaining secondary …

Mathematics - Years 7 and 8 | Food and fibre dimensions | Dimensions | Curriculum connections | Resources

Design and Technologies - Years 7 and 8

Year 7 and 8 Design and technologies knowledge and understanding Content descriptions with elaborations Investigate the ways in which products, services and environments evolve locally, regionally and globally and how competing factors including social, …

Design and Technologies - Years 7 and 8 | Food and wellbeing dimensions | Dimensions | Curriculum connections | Resources

MuS6

Flexible strategies for multiplication draws on the structure of multiplication to use known multiples in calculating related multiples (uses multiples of 4 to calculate multiples of 8) uses known single-digit multiplication facts (7 boxes of 6 donuts …

MuS6 | Multiplicative strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

MuS7

Flexible number properties uses multiplication and division as inverse operations uses factors of a number to carry out multiplication and division (to multiply a number by 72, first multiply by 12 and then multiply the result by 6) uses knowledge …

MuS7 | Multiplicative strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

NPA6

Generalising patterns identifies a single operation rule in numerical patterns and records it as a numerical expression (2, 4, 6, 8, 10 … is n + 2, or 2, 6, 18, 54 … is 3n) predicts a higher term of a pattern using the pattern’s rule Number properties creates …

NPA6 | Number patterns and algebraic thinking | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

OwD3

Understanding the effects of multiplication and division with decimals understands that multiplying and dividing decimals by 10, 100, 1000 changes the positional value of the numerals explains that multiplication does not always make the answer larger …

OwD3 | Operating with decimals | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

AdS4

Counting on (by ones) treats a number word as a completed count when solving problems (‘I have 7 apples. I want 10. How many more do I need?’ Treats the 7 as a completed count) uses a strategy of count-up-from to calculate addition (to find 6 + 3, …

AdS4 | Additive strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

AdS5

Counting back (by ones) uses count-down-from for subtraction tasks (9 – 3 = ?, 9 ... 8, 7, 6. It equals 6) uses count-down-to to calculate (9 take away something equals 6, responds 9 ... 8, 7, 6 ... It's 3) finds the difference between two numbers …

AdS5 | Additive strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

NPA4

Continuing number patterns continues patterns where the difference between each term is the same number (2, 4, 6, 8, 10 …) describes rules for continuing patterns where the difference between each term is the same number (to find the next number …

NPA4 | Number patterns and algebraic thinking | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

NPA5

Generalising patterns identifies elements, including missing elements, in a one-operation number pattern Number sentences uses equivalent number sentences involving addition or subtraction to find an unknown (527 + 96 = ? is the same as 527 …

NPA5 | Number patterns and algebraic thinking | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

NPA9

Algebraic relationships interprets and uses formulae and algebraic representations that describe relationships in various contexts (Body Mass Index – BMI) creates an algebraic expression in two unknowns to represent a formula or relationship (Anna …

NPA9 | Number patterns and algebraic thinking | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

QuN8

Producing number names to at least 1000 counts forwards and backwards by 100s to 1000 (100, 200 … 1000) counts forwards and backwards by tens off the decade to 100 (2, 12, 22, …) Numeral recognition and identification of place value recognises …

QuN8 | Quantifying numbers | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

InF6

Fractions as numbers connects the concepts of fractions and division: a fraction is a quotient, or a division statement (two-sixths is the same as 2 ÷ 6 or 2 partitioned into 6 equal parts) justifies where to place fractions on a number line (to place …

InF6 | Interpreting fractions | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

QuN12

Understanding place value (directed numbers) orders negative numbers (recognises that −10 °C is colder than −2.5 °C) Representing place value recognises, reads and interprets very large and very small numbers expresses numbers as powers of 10 …

QuN12 | Quantifying numbers | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

AdS6

Flexible strategies with combinations to 10 uses a range of non–count-by-one strategies when adding or subtracting two or more numbers (bridging to 10, near doubles) uses part-whole construction of number to partition a whole number into parts (partitions …

AdS6 | Additive strategies | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

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

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

Digital project: Bee-Bot - ABOVE

Students explored the concept of sequencing steps and decisions using Bee-Bots. They worked in groups to solve progressively more complex routes using grids on paper. Students then programmed the Bee-Bots to navigate grids created on the floor using masking …

Digital project: Bee-Bot - ABOVE | Samples | Work samples | Resources

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