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Representation of General capabilities

Literacy is important in students’ development of Science Inquiry Skills and their understanding of content presented through the Science Understanding and Science as a Human Endeavour strands. Students gather, interpret, synthesise and critically analyse …

Representation of General capabilities | Science | Senior secondary curriculum

Unit 2: Earth processes – energy transfers and transformations Earth and Environmental Science

Earth system processes require energy. In this unit, students explore how the transfer and transformation of energy from the sun and Earth’s interior enable and control processes within and between the geosphere, atmosphere, hydrosphere and biosphere. …

Unit 2 | Earth and Environmental Science | Science | Senior secondary curriculum

Unit 4: Revolutions in modern physics Physics

The development of quantum theory and the theory of relativity fundamentally changed our understanding of how nature operates and led to the development of a wide range of new technologies, including technologies that revolutionised the storage, processing …

Unit 4 | Physics | Science | Senior secondary curriculum

Unit 1: Thermal, nuclear and electrical physics Physics

An understanding of heating processes, nuclear reactions and electricity is essential to appreciate how global energy needs are met. In this unit, students explore the ways physics is used to describe, explain and predict the energy transfers and transformations …

Unit 1 | Physics | Science | Senior secondary curriculum

Unit 2: Linear Motion and Waves Physics

In this unit, students develop an appreciation of how an understanding of motion and waves can be used to describe, explain and predict a wide range of phenomena. Students describe linear motion in terms of position and time data, and examine the relationships …

Unit 2 | Physics | Science | Senior secondary curriculum

Unit 3: Gravity and electromagnetism Physics

Field theories have enabled physicists to explain a vast array of natural phenomena and have contributed to the development of technologies that have changed the world, including electrical power generation and distribution systems, artificial satellites …

Unit 3 | Physics | Science | Senior secondary curriculum

Unit 1: Chemical fundamentals: structure, properties and reactions Chemistry

Chemists design and produce a vast range of materials for many purposes, including for fuels, cosmetics, building materials and pharmaceuticals. As the science of chemistry has developed over time, there has been an increasing realisation that the properties …

Unit 1 | Chemistry | Science | Senior secondary curriculum

Rationale/Aims Earth and Environmental Science

Rationale Earth and Environmental Science is a multifaceted field of inquiry that focuses on interactions between the solid Earth, its water, its air and its living organisms, and on dynamic, interdependent relationships that have developed between these …

Rationale/Aims | Earth and Environmental Science | Science | Senior secondary curriculum

Rationale/Aims Physics

Rationale Physics is a fundamental science that endeavours to explain all the natural phenomena that occur in the universe. Its power lies in the use of a comparatively small number of assumptions, models, laws and theories to explain a wide range of …

Rationale/Aims | Physics | Science | Senior secondary curriculum

Representation of Cross-curriculum priorities Earth and Environmental Science

While the significance of the cross-curriculum priorities for Earth and Environmental Science varies, there are opportunities for teachers to select contexts that incorporate the key concepts from each priority. The Earth and Environmental Science curriculum …

Representation of Cross-curriculum priorities | Earth and Environmental Science | 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

Structure of Physics Physics

Units In Physics, students develop their understanding of the core concepts, models and theories that describe, explain and predict physical phenomena. There are four units: Unit 1: Thermal, nuclear and electrical physics Unit 2: Linear motion and waves Unit …

Structure of Physics | Physics | Science | Senior secondary curriculum

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

ACSES045

Processes within and between Earth systems require energy that originates either from the sun or the interior of Earth

ACSES045 | Content Descriptions | Unit 2 | Earth and Environmental Science | Science | Senior secondary curriculum

ACSES047

Transfers and transformations of heat and gravitational energy in Earth's interior drives the movement of tectonic plates through processes including mantle convection, plume formation and slab sinking

ACSES047 | Content Descriptions | Unit 2 | Earth and Environmental Science | Science | Senior secondary curriculum

ACSPH076

A wave model explains a wide range of light-related phenomena including reflection, refraction, total internal reflection, dispersion, diffraction and interference; a transverse wave model is required to explain polarisation

ACSPH076 | Content Descriptions | Unit 2 | Physics | Science | 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

ACSPH075

A ray model of light may be used to describe reflection, refraction and image formation from lenses and mirrors

ACSPH075 | Content Descriptions | Unit 2 | Physics | Science | Senior secondary curriculum

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