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Futurum Careers

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Whether you’re a teacher of STEM, information technology, humanities, careers or social studies, we want to help you with all of these challenges and put the ‘wow’ into classrooms. We want to support you with resources that aim to engage all students regardless of their gender, ethnicity or background. There are multiple organisations and global initiatives that are focused on this mission, and our aim is to bring these resources together so that you can access them quickly and easily – For Free

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Whether you’re a teacher of STEM, information technology, humanities, careers or social studies, we want to help you with all of these challenges and put the ‘wow’ into classrooms. We want to support you with resources that aim to engage all students regardless of their gender, ethnicity or background. There are multiple organisations and global initiatives that are focused on this mission, and our aim is to bring these resources together so that you can access them quickly and easily – For Free
Making metals: how are engineers developing new composite materials and manufacturing processes?
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Making metals: how are engineers developing new composite materials and manufacturing processes?

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Suitable for 14-to-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5/Grade 9-10 and Grade 11-12 engineering and physics. It can also be used as a careers resource and links to Gatsby Benchmarks (UK): Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Distinguished Professor Zhengyi Jiang, a materials and manufacturing engineer at the University of Wollongong in Australia. He is creating new metallic composite materials and improving metal manufacturing processes. • This resource also contains an interview with Zhengyi and offers an insight into careers in materials and manufacturing engineering. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Zhengyi’s research and challenges them to imagine they are trying to persuade a manufacturing company to fund research into a new composite material or manufacturing process. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-to-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
Environmentally friendly heating: what’s the solution?
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Environmentally friendly heating: what’s the solution?

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Engineering and Physics. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Marilyn Lightstone, Professor of Mechanical Engineering at McMaster University in Canada, who is researching how to reduce greenhouse gas emissions caused by the existing buildings and homes in Canada. Since energy use in buildings generates about 18% of the country’s emissions, this work is critical if Canada is to reach its goal of being net-zero by 2050. Could ground source heat pumps be the solution? • This resource also contains an interview with Marilyn, providing an insight into careers in mechanical engineering. • The activity sheet provides Marilyn’s research, and includes a heating game! This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Harnessing DNA to make cutting-edge nanoscale semiconductors
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Harnessing DNA to make cutting-edge nanoscale semiconductors

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Physics and Engineering. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Professor David Estrada, of Boise State University, and Associate Professor Francis Cartieri, of the Community College of Allegheny County, in the US, who are investigating the unique properties of DNA, and how they could be harnessed to usher in groundbreaking nanotechnology techniques. • This resource also contains interviews with David and Francis, providing insights into careers in nanotechnology engineering. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the team’s research, and tasks them to research how nanotechnology is being used in different industries. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
How can tiny holes detect DNA and generate electricity?
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How can tiny holes detect DNA and generate electricity?

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Suitable for 14-to-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 subject. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Professor Jean-Pierre Leburton, a nanoscientist at the University of Illinois Champaign-Urbana. He is investigating how nanopores can detect DNA and generate electricity. • This resource also contains an interview with Jean-Pierre and offers an insight into careers in nanotechnology. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Jean-Pierre’s research and challenges them to explore the applications of nanopores. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
How can wearable sensors help monitor health and tailor drug treatments?
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How can wearable sensors help monitor health and tailor drug treatments?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5/Grade 9-10 and Grade 11-12 Biology. It can also be used as a careers resource and links to Gatsby Benchmarks (UK): Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Netz Arroyo from the Johns Hopskins School of Medicine, USA. He is developing wearable continuous molecular monitors that can help us track our health and manage diseases. • This resource also contains an interview with Netz, and offers an insight into careers in biomedical engineering. If your students have questions for Netz, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Netz’s research and challenges them to practice their science communication skills by imagining themselves in different scenarios. • The animation summarises Netz’s research and is accompanied by a script. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
The CCAC Makerspace: helping students’ innovative ideas become reality
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The CCAC Makerspace: helping students’ innovative ideas become reality

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 design technology and engineering… It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource introduces the Community College of Allegheny County (CCAC) Makerspace led by Professor Justin Starr and Assistant Professor Francis Cartieri. This stimulating teaching and learning space is providing the tools and facilities for students to imagine, create and perfect innovative products that solve real-world issues. • This resource also contains interviews with their colleagues, Michael and Ellie, and provides insights into careers in entrepreneurial design and manufacturing. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the team’s work, and tasks them to design a product that solves an everyday problem. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
How can the transistors in your smartphone form quantum dots?
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How can the transistors in your smartphone form quantum dots?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 physics, engineering and computer science. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This resource introduces the work of Professor Sorin Voinigescu, a quantum engineer at the University of Toronto. He is investigating how commercial transistors can create quantum dots. • This resource also contains an interview with Sorin’s students and offers an insight into careers in quantum engineering. If your students have questions for the team, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the team’s research and challenges them to create a beginners guide to quantum dots. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
How are flexible electronic devices solving healthcare challenges?
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How are flexible electronic devices solving healthcare challenges?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5/Grade 9-10 and Grade 11-12 engineering and physics. It can also be used as a careers resource and links to Gatsby Benchmarks (UK): Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Radu Sporea, an electronics engineer. He is leading a team of electronics engineers and surgeons at the University of Surrey in the UK and Gachon University in South Korea as they develop a wearable electronic device to monitor a patient’s blood flow as they recover from an operation. • This resource also contains interviews with team members and offers an insight into careers in electronics engineering. If your students have questions for the team, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Radu’s research and challenges them to design a new flexible electronic device that could solve a healthcare challenge. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
Can brain cooling revolutionise stroke treatment?
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Can brain cooling revolutionise stroke treatment?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 engineering, biology and physics. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Ting-Yim Lee (a biomedical engineer) and Dr Marat Slessarev (a clinical doctor). They have developed a new device that can cool a patient’s brain to help them recover from a stroke. • This resource also contains an interview with Ting and Marat and offers an insight into careers in biomedical engineering. If your students have questions for Ting and Marat, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Ting and Marat’s research and challenges them to debate the ethical issues of using animals in medical research. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
Can chemistry make beer taste better?
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Can chemistry make beer taste better?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs, food tech clubs and at home. This resource links to KS4 and KS5 chemistry and food technology. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Ron Quinlan, an analytical chemist at Christopher Newport University. He is analysing the chemistry of beer and beer ingredients to help brewers brew the perfect pint. • This resource also contains an interview with Ron and offers an insight into careers in analytical chemistry. If your students have questions for Ron, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Ron’s research and challenges them to conduct their own chromatography experiment to separate out the colours in inks and dyes. • The accompanying PowerPoint reiterates the key points in the article and encourages students to reflect on their own aspirations. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
What happens when plastics break down into microplastics and nanoplastics?
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What happens when plastics break down into microplastics and nanoplastics?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 chemistry and environmental science. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Jeffrey Farner and Dr Olubukola Alimi, environmental engineers at the FAMU-FSU College of Engineering in Florida, USA, and the University of Alberta in Canada. They are investigating what happens when plastics break down into microplastics and nanoplastics. • This resource also contains an interview with Jeff and Bukola and offers an insight into careers in environmental chemistry. If your students have questions for Jeff and Bukola, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Jeff and Bukola’s research and challenges them to design an engineering solution to an environmental problem in their area. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
How can physics help us study the brain?
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How can physics help us study the brain?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 physics. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Orang Alem, an atomic physicist who has applied his physics knowledge to develop new magnetoencephalography technology to improve the diagnosis and monitoring of brain conditions. • This resource also contains an interview with Orang and offers an insight into careers in applied physics. If your students have questions for Orang, they can send them through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Orang’s research and challenges them to explore the many uses of optically pumped magnetometers. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
How can genuine scientific experiences inspire future scientists?
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How can genuine scientific experiences inspire future scientists?

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Science and Engineering. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Ying Gao, assistant professor from Nantong University, Xinglin College, in China and currently based at Jackson State University in the US, who is investigating how course-based undergraduate research experiences (CUREs) can transform the learning experience and encourage students to think like real scientists. • This resource also contains an interview with Ying, providing an insight into careers in education research. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Ying’s research, and tasks them to design their own CURE. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Power to the people: how electrical engineering can empower the Navajo Nation
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Power to the people: how electrical engineering can empower the Navajo Nation

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 engineering. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource introduces the work of Dr Peter Romine, an electrical engineer who has established a graduate programme at Navajo Technical University. This will train Navajo students to become electrical engineering faculty who can inspire the next generation of Navajo engineers. • This resource also contains an interview with electrical engineering students at Navajo Technical University and offers an insight into careers in electrical engineering. If your students have questions for the team, they can send them online through the Futurum Careers website. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the role of electrical engineering for the Navajo Nation and challenges them to consider how they could benefit from studying electrical engineering. This resource was first published by Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources, or have suggestions for improvements, please let us know and leave us some feedback. Thank you!
How can we reduce fat in fried foods?
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How can we reduce fat in fried foods?

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Chemistry, Biology and Food Technology. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Reza Tahergorabi, an associate professor at North Carolina Agriculture & Technical State University in the US, who is exploring oleogel as a new frying medium to reduce the fat content in fried foods. • This resource also contains interviews with members of Reza’s team. If you or your students have a question for them, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. Reza and the team will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Reza’s research, and tasks them to think about what they would research as a food scientist. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Flying high with careers in aviation
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Flying high with careers in aviation

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs, careers fairs and at home. This resource links to KS4 and KS5 engineering and careers. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of members of Cranfield University, who highlight the diverse range of career opportunities available in the aviation industry. • This resource also contains interviews with team members and offers an insight into careers in aviation. If your students have questions for the team, they can send them to them online. All they need to do is to go to the article online (see the Futurum link below), scroll down to the end and type in the question(s). The team will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the team member’s roles in the aviation industry and challenges them to design a stall to promote careers in aviation for a school careers fair. • In the accompanying podcast, team members discuss careers in aviation. • The accompanying PowerPoint highlights the key aspects of the article. • There is also an animation (and script) about careers in aviation. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Urban farming for urban families
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Urban farming for urban families

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Anthropology, Agriculture and Food Technology. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Emmanuel Roux and Professor David Himmelgreen who, at 15th Street Farm in Florida, in the US, run an education project to help local families learn about their local food systems and make healthier food choices. • This resource also contains interviews with Emmanuel, David and their team. If you or your students have a question for them, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. The team will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the team’s research, and tasks them to devise a food-based community event. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Can we engineer bacteria to regenerate tissues?
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Can we engineer bacteria to regenerate tissues?

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 biology. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Chris Contag, a biomedical engineer and microbiologist at Michigan State University. He is developing engineered endosymbionts that can repair tissues in the body. • This resource also contains an interview with Chris and offers an insight into careers in biomedical engineering. If your students have questions for Chris, they can send them to him online. All they need to do is to go to the article online (see the Futurum link below), scroll down to the end and type in the question(s). Chris will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Chris’ research and challenges them to persuade patients waiting for a heart transplant that engineered endosymbionts could be an alternative treatment option. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
Engaging with the science behind food
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Engaging with the science behind food

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Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, STEM clubs and at home. This resource links to KS4 and KS5 food technology, biology and chemistry. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Dr Salam A Ibrahim, a food microbiologist at North Carolina Agricultural and Technical University. He has established the Food Microbiology and Biotechnology Lab, where researchers and students collaborate with food industry professionals to address real-world challenges in food production and safety. • This resource also contains interviews with members of the lab and offers an insight into careers in food microbiology. If your students have questions for the team, they can send them to them online. All they need to do is to go to the article online (see the Futurum link below), scroll down to the end and type in the question(s). The team will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Dr Ibrahim’s research and challenges them to use microorganisms to create their own food. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!
How can we detect and prevent brain injuries?
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How can we detect and prevent brain injuries?

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Suitable for 14 to 19-year-olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom or shared with students online. This resource links to KS4 and KS5 Engineering, Biology and Physics. It can also be used as a careers resource and links to Gatsby Benchmarks: Gatsby Benchmark 2: Learning from career and labour market information Gatsby Benchmark 4: Linking curriculum learning to careers • This teaching resource explains the work of Professor Christian Franck, from the University of Wisconsin-Madison in the US, who leads the PANTHER programme, researching new ways of detecting and preventing traumatic brain injuries. • This resource also contains interviews with Christian and members of the PANTHER team, providing insights into their areas of research. If you or your students have a question for them, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. The team will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on PANTHER’s research, and tasks them to design a device that could solve a societal issue. • The animation summarises the team’s research and is accompanied by a script. This resource was first published on Futurum Careers, a free online resource and magazine aimed at encouraging 14-19-year-olds worldwide to pursue careers in science, tech, engineering, maths, medicine (STEM) and social sciences, humanities and the arts for people and the economy (SHAPE). If you like these free resources – or have suggestions for improvements –, please let us know and leave us some feedback. Thank you!