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Listed under:  Technologies  >  Engineering
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Engineering is futures-focused and multidisciplinary

In this lesson, students explore the multidisciplinary nature of contemporary engineering, and how engineering is pivotal to solving future challenges such as climate change, renewable energy and food security.

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Walking on Crushed Glass

This is an illustrated story of a real-life engineering solution designed to recycle glass waste and reuse it as reinforcement for concrete used in footpaths. The book explains the process of innovation to reach a viable solution. It shows the creativity, innovation and collaboration required to provide a solution that ...

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I am an inventor lesson

In this lesson, students explore the life, work and times of Rube Goldberg. The lesson uses Rube Goldberg’s work to teach students about simple machines, how they function and their design principles. Working in groups, the students then design and create a Rube Goldberg machine that can complete a simple task. Students ...

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Engineering from farm to table lesson

In this lesson students are invited to become food and fibre engineers to research how wheat, the largest agricultural crop in Australia, gets from the farm to the table. Students take an in-depth look at the wheat industry in Australia exploring how wheat is grown, harvested, processed, utilised, and exported. Students ...

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How do solar panels work?

The Earth intercepts a lot of solar power: 173,000 terawatts. That’s 10,000 times more power than the planet’s population uses. So is it possible that one day the world could be completely reliant on solar energy? Richard Komp examines how solar panels convert solar energy to electrical energy. This TedEd animation (4:58 ...

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Use your creative thinking skills!

Ashwini Ranjithabalan from Women in Engineering and IT at the University of Technology Sydney (UTS) sees engineering as the business of solving future problems. What are some of the challenges we (and our societies) might face in the future? Get some friends together and see if you can brainstorm a list. Now choose one ...

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Spark: A better way to predict the spread of bushfires

In recent years, new technologies have helped us respond to natural disasters more quickly by providing up-to-date information as it becomes available. What if we could take this one step further with new technologies that can also predict disasters? Learn how Spark, which uses our existing knowledge of bushfire behaviours ...

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Benefits of teamwork in robotics

It takes team work to build robots! Oliver talks about how he didn't know too much about building robots when he first joined  3132 'Thunder Down Under', but by being in a team with others learned a lot of skills. He also talks about sharing ideas, and how valuable it is to make and learn from mistakes with others. Why ...

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How to design and build a robot in six weeks!

Evan, a mechanical mentor for FIRST Robotic Competition's 3132 'Thunder Down Under', outlines the processes involved in designing, building and testing a robot in six weeks. What influences the team in their design and building processes? Can you think of anything else that might influence the design and build of the robot ...

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What makes these paper planes fly?

Have you ever wondered what makes a paper plane fly? Think about the design of the paper plane as well as external factors like the various forces that are at play, then make a list of the design considerations and a list of the different forces.

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Thinking about the design process

Watch as UNSW student and Blusat member William Frohlich talks about the design process. What are some of the important things to consider before you start to make a project? Why does William say it's important to be flexible with your designs? Design your own obstacle course for your family using objects from around your ...

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Investigating technologies in agriculture: producer video

This is a video about how facial tissues, kitchen towels and toilet paper are made at Kimberley-Clark's South Australian mill. Mill Manager Scott Wicker describes how the mill takes base wood pulp and turns it into finished products. He outlines the differences between long and short wood pulp fibres and where they are ...

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Telling robots what to do

If you were programming a robot to play a competitive game of soccer, what are some of the things you would consider? Think about some of the most basic functions of a robot, like walking, stopping and turning, to more complicated functions like recognising objects and reacting to them in a specific way.

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Engineering is not just for maths geniuses!

You don't need to be a big maths brain to become an engineer. Listen as Ashwini Ranjithabalan from Women in Engineering and IT at the University of Technology Sydney (UTS) describes how her understanding of maths grew from her interest in engineering. Sometimes understanding how maths can provide solutions to problems in ...

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Engineering clean rivers

Figuring out how to clean up contaminated rivers is a big challenge. It's also tricky to work out where the most contaminated parts of a river system are and whether its fish are safe to eat. Watch this video and learn how engineering has helped to solve these problems. Why do you think engineers looked to the bottom of ...

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How to become a NASA engineer

Do you know what you want to be when you grow up? Debora Fairbrother, a NASA engineer, didn't know what career path she was on. Watch this clip as she talks about the importance of education and of following your passion.

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All about engines

What does 'horsepower' really mean? And how do engines work? Join Luke and Abhi from MIT to find out! As Abhi explains, engines produce power by forcing a mixture of fuel and air into a tight space and then burning it. Piston engines and turbine engines do this in similar, yet different ways. After watching this video, ...

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Bringing Engineering to Life: STEM careers

This is a unit of work on engineering, the range of possible occupations in engineering and the future and ethics of engineering. The resource includes: An introduction with teacher notes, student tasks, embedded videos and links to additional resources. The resource aims that students learn broadly about engineering and ...

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Waste and materials – sustainability action process (Years 3–6)

This resource guides students through an extended school-based or local investigation focussed on waste and materials using the five-step sustainability action process. The resource supports the investigation of a real-world issue or problem. Students develop and implement a chosen sustainability action and then evaluate ...

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Thermal comfort – sustainability action process (Years 3–6)

This thermal comfort learning resource will guide students through an extended school based investigation. Students will develop and implement a chosen sustainability action and then evaluate and reflect on their success and their learning.