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How is the numeracy progression related to the Australian Curriculum?

Numeracy skills are explicit teaching in the Australian Curriculum: Mathematics. Students need opportunities to recognise that mathematics is constantly used outside the mathematics classroom and that numerate people apply general mathematical skills …

How is the numeracy progression related to the Australian Curriculum? | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

Structure of Geography Geography

Units In Senior Secondary Geography, students develop their understanding about themes of immediate relevance to them and which have scope for application at a variety of scales, from the local to the global. There are four units: Unit 1: Natural and …

Structure of Geography | Geography | Humanities and Social Sciences | Senior secondary curriculum

Context statement Indonesian

The place of the Indonesian language and culture in Australia and in the world The languages of the Indonesian archipelago have been used in Australia since contact several centuries ago between the peoples of the islands now known as Indonesia …

Context statement | Indonesian | Languages | F-10 curriculum

QuN6

Producing number names counts to at least 30 produces the number word just after a given number in the range 1–30 (without dropping back) produces the number word just before a given number word in the range 1–30 (without dropping back) counts forwards …

QuN6 | Quantifying numbers | 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

Example of knowledge and skills Media Arts

In this band students are introduced to the ways that ideas and intentions are communicated in and through Media Arts. They develop knowledge, understanding and skills through media arts practices focusing on: Representation and story principles Structure representing …

Example of knowledge and skills | Media Arts | The Arts | F-10 curriculum

Example of knowledge and skills Visual Arts

In this band students are introduced to the ways that ideas and intentions are communicated in and through visual arts. They develop knowledge, understanding and skills through visual arts practices focusing on: Representation Subject matter personal …

Example of knowledge and skills | Visual Arts | The Arts | F-10 curriculum

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

UnM5

Coins of one value to $5[1] determines the equivalent value of coins to $5 using one denomination of 5c, 10c, 20c or 50c coins (Sam has $1.20 in 5-cent coins. How many 5-cent coins does Sam have?)   [1] $5 is the limit of legal tender in combinations …

UnM5 | Understanding money | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

CoU1

Building ratios uses knowledge of fractions as part-whole relationships to divide and compare quantities represents and models ratios using diagrams or objects (in a ratio 1:4 of red to blue counters, for each red counter there are four blue coun …

CoU1 | Comparing units (ratios, rates and proportion) | 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

Introduction Auslan

As a native user of Auslan, and as an advocate for the language and for the Deaf community, I am thrilled to see a national curriculum in Auslan come to fruition. For the first time, deaf children will have access to a formal first language learner pathway …

Introduction | Auslan | Languages | F-10 curriculum

QuN5

Producing number names  counts to at least 20   continues a count from a number other than 1  counts forwards by tens to 100  Counting items  counts groups of up to 20 items  Numeral recognition and identification  points to the correct …

QuN5 | 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

Structure of Biology Biology

Units Biology is the study of the fascinating diversity of life as it has evolved and as it interacts and functions. Investigation of biological systems and their interactions, from cellular processes to ecosystem dynamics, has led to biological knowledge …

Structure of Biology | Biology | Science | Senior secondary curriculum

Structure of Chemistry Chemistry

Units In Chemistry, students develop their understanding of chemical systems, and how models of matter and energy transfers and transformations can be used to describe, explain and predict chemical structures, properties and reactions. There are four …

Structure of Chemistry | Chemistry | Science | Senior secondary curriculum

Structure of Earth and Environmental Science Earth and Environmental Science

Units In Earth and Environmental Science, students develop their understanding of the ways in which interactions between Earth systems influence Earth processes, environments and resources. There are four units: Unit 1: Introduction to Earth systems Unit …

Structure of Earth and Environmental Science | Earth and Environmental Science | Science | Senior secondary curriculum

InF5

Equivalence of fractions identifies the need to have equal wholes to compare fractional parts (explains why one-third as a number is larger than one-quarter) creates fractions larger than 1 by recreating the whole (when creating four-thirds, recognises …

InF5 | Interpreting fractions | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

QuN9

Producing number names of any size counts forwards and backwards from any number produces and reads numbers to at least 1000 Numeral recognition and identification of place value recognises and identifies numerals from a given range up to 1000 …

QuN9 | Quantifying numbers | Number sense and algebra | National Numeracy Learning Progression | National Literacy and Numeracy Learning Progressions | Resources

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