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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
Microbial life below the sea floor
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Microbial life below the sea floor

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. 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/Biology/Ecology/Biochemistry clubs and at home. This resource links to KS4 and KS5 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 Virginia Edgcomb, of Woods Hole Oceanographic Institution in the US, who spent three months on a ship in the middle of the Indian Ocean conducting research as part of a quest to find evidence of microbial life within the lower oceanic crust. This resource also contains an interview with Dr Edgcomb. The activity sheet provides ‘talking points’ to prompt students to reflect on Dr Edgcomb’s work and links to find out more about this fascinating expedition. 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!
Marine science - detecting harmful pathogens in wastewater.
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Marine science - detecting harmful pathogens in wastewater.

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. 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/ecology/biology 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 Karyna Rosario who is based within the Marine Genomics Laboratory at the University of South Florida in the US. Her research, focusing on viral metagenomics, has led to the discovery of a novel indicator that helps detect harmful pathogens in wastewater. This resource also contains an interview with Dr Rosario. The activity sheet provides ‘talking points’ to prompt students to reflect on Dr Rosario’s work and includes a link so students can watch her TEDx Youth Talk. 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!
Yeast genetics: student-led authentic research
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Yeast genetics: student-led authentic research

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, biology/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 authentic research project Dr Mike Wolyniak, of Hampden-Sydney College in the US, leads his biology undergraduates through. The project sees the students experimenting with yeast genetics in order to improve beer for a local brewery. This resource also contains an interview with Dr Wolyniak. The activity sheet provides ‘talking points’ to prompt students to reflect on the project and poses tasks connected to gene therapy. 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!
What can we learn from plant proteins?
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What can we learn from plant proteins?

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. 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 Charles Stewart Jr., a structural biologist and manager of the Macromolecular X-ray Crystallography Facility at Iowa State University in the US, who is seeking to improve our understanding of the function of enzymes by examining their 3D molecular structure. • This resource also contains an interview with Dr Stewart and an insight into how to become a structural biologist. If you or your students have a question for him, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. Dr Stewart will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Dr Stewart’s research and includes a challenge from Charles. • The PowerPoint reiterates the key points in the article. 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!
What if microbes could live in extreme environments beyond Earth?
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What if microbes could live in extreme environments beyond Earth?

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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/space/biology clubs and at home. This resource links to KS4 and KS5 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 Jay Nadeau from Portland State University, USA. Jay is a physicist and is using her skills to study microbes in extreme environments on Earth, including sea ice in Greenland, pools in Death Valley and Ash Meadows in the California desert, mineral springs in The Cedars in the California mountains, and permafrost in Alaska. Her findings could help scientists find life in space. • This resource also contains an interview with Jay about her career path. If your students (or you) have questions for Jay, you/they can send them to the researcher online. All you 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). Jay will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Jay’s research and challenges them to think about the impact of findng life in extreme environments. 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!
Chemistry: Detecting microplastics in a great lakes watershed
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Chemistry: Detecting microplastics in a great lakes watershed

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. 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. 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 Julie Peller, from Valparaiso University in Indiana, USA, who is assessing the microfibre pollution in surface waters of the Great Lakes with her undergraduate students. • This resource also contains an interview with Dr Peller. If you or your students have a question for her, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. Dr Peller will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Dr Peller’s research and challenges them to go plastic-free for a day. 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!
Introducing Indigenous knowledge into the classroom
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Introducing Indigenous knowledge into the classroom

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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/social science clubs and at home. This resource links to KS4 and KS5 Geography, Anthropology and PSHE and is also internationally relevant. 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 • What is anthropology? What can we learn from Indigenous knowledge? This teaching resource explains the work of Dr Darren Ranco from the University of Maine in the USA. Darren is an anthropologist and a citizen of the Penobscot Nation, a sovereign people in the Wabanaki Confederacy of Tribes. Darren is investigating ways to attract more Indigenous students into STEM – a sector that would benefit hugely from the input of Indigenous knowledge. • This resource also contains an interview with Darren about his career path. If your students (or you) have questions for Darren, you/they can send them to him online. All you 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). Darren will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Darren’s research and challenges them to think about the relevance of Indigenous science in the science curriculum. • The PPT reiterates the key points in the article and includes separate Bloom’s Taxonomy talking points. 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!
From basic quantum science to new technologies
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From basic quantum science to new technologies

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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/physics 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 Thomas Volz and the Quantum Materials and Applications Group in Australia. Thomas is engaged in a variety of quantum research projects, typically involving quantum emitters and light. His studies will help understand various materials, their fundamental behaviours and suitability for a range of technological applications that will change the world. • This resource also contains interviews with Thomas and MRes student Lyra Cronin about their career paths. If your students (or you) have questions for Thomas or Lyra, you/they can send them to the researchers online. All you 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). Thomas or Lyra will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Thomas’s research and challenges them to think about the impact of quantum science. 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!
KS4-5: Quantum physics - a look at cause and effect and quantum computers
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KS4-5: Quantum physics - a look at cause and effect and quantum computers

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, science/STEM clubs and at home. This resource links to KS4 physics: cause and effect; and KS5 physics: quantum physics. It is also internationally relevant. 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 The article explains the idea of cause and effect, and how this idea can be harnessed to develop quantum computers. There is also an interview with quantum physicist Dr Fabio Costa, plus ideas on where a career in physics might lead. The activity sheet includes discussion points - eight questions the students can answer in groups or individually. There are also links to educational activities such as Physics Girl, which explains the quantum coin toss. 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!
Worms and the ageing process in humans
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Worms and the ageing process in humans

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, biology/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 investigation Dr Jennifer Tullet, a biogerontologist based at the University of Kent, has undertaken into the lifespan and ageing process of a nematode worm and how the study can be applied to humans. By uncovering the processes that control ageing and age-related disease in these worms, biogerontologists can increase our understanding of ageing and age-related disease in people. The resource also contains an interview with Dr Tullet. The activity sheet poses ‘talking points’ to get students thinking about different aspects of Dr Tullet’s work and includes an organism investigation task. 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!
In what ways can insects be harmful and beneficial to trees and forests?
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In what ways can insects be harmful and beneficial to trees and forests?

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary, middle and high schools), this article and accompanying activity sheet can be used in the classroom, in science clubs and at home. This resource links to KS3 Biology, Interactions and Interdependencies; Geography, Physical and human and KS4 Biology, Ecosystems; Physical Geography, processes and change, but is also internationally relevant. 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 The article includes a summary of a pine research project in the USA, explanations of forest pathology and entomology i.e. what they are, how plants and insects work together (symbiosis) and the career opportunities available in these fields, plus an interview with forest pathologist Dr Lori Eckhardt. The activity sheet includes discussion points - eight questions the students can answer in groups or individually - and ideas for activities that are relevant to forest pathology and entomology (insects). 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!
Astronomy research programmes
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Astronomy research programmes

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, maths/science/technology/STEM clubs and at home. This resource links to KS4 and KS5 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 mentoring programme set up by the National Astronomy Consortium in the US and contains interviews with astronomy PhD researchers. The activity sheet provides astronomy challenges and research questions to prompt students to find out more. 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!
What lies beneath: digging Into the soil microbiome
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What lies beneath: digging Into the soil microbiome

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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 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 researchers from the University of Manchester in the UK and the University of Minnesota in the US who have teamed up to understand how the microbes found in soil interact with one another and with plants, and whether this knowledge could be harnessed to bring benefits to agriculture. • This resource also contains interviews with the researchers. If you or your students have a question for them, you can submit it it online – go to the article using the Futurum link below and scroll to the bottom of the page. The researchers will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the research, and tasks them to think about the different stages of this project. 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!
Discover the X-ray Materials Science (XMaS) project
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Discover the X-ray Materials Science (XMaS) project

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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, chemistry and 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 the XMaS (X-ray Materials Science) research project. Head up by Professor Tom Hase from the University of Warwick alongside Professor Chris Lucas from the University of Liverpool in the UK, XMaS uses a synchrotron facility, a massive doughnut-shaped structure that accelerates electrons to high velocities. These electrons emit X-ray radiation, which can be used to study the tiniest intricate structures within all kinds of materials. What does this mean for society and our future? • Through XMaS, researchers are able to examine the behaviour of minute and hidden objects. This resource contains interviews with researchers who are investigating a wide range of societal challenges from tooth decay to photovoltaics in solar panels… from the Tudor warship Mary Rose to organic electronics…and from contraceptive devices to the behaviour of catalysts. 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 researchers will reply! • You will also find details for numerous student outreach opportunities, including the XMaS Scientist Experience. This Experience is a UK competition for Year 12 female physics students aimed at encouraging female students into scientific careers where they are seriously under-represented. • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the the work being undertaken through XMaS, and tasks them to think about how materials science impacts us all. • The PowerPoint summarises the key points in the article and can be used as a standalone resource or together with the article and activity sheet. 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!
What if we understood the genetic causes of cancer?
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What if we understood the genetic causes of cancer?

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Suitable for secondary, high school and college students, this article and accompanying activity sheet can be used in the classroom, school clubs and at home. This resource links to KS4 and KS5 biology and genetics. 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 • Cancer is a disease caused by mutations in the genes within our cells. Professor Ian Prior, at the University of Liverpool in the UK, is trying to find out why some gene mutations are more likely to contribute to cancer than others. This knowledge could lead to the development of new treatments for this widespread and deadly disease. This resource introduces students to molecular oncology and how gene mutations can lead to the development of cancer. • This resource also includes an interview with Ian about his career path, as well as a section dedicated to careers in his field. If your students (or you) have questions for Ian, you/they can send them to him online. All you 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). Ian will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) and activities to prompt students to reflect on Ian research. • The PowerPoint summarises the key points in the article and includes additional ‘Talking Points’. 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!
Cleaning up hydrogen production
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Cleaning up hydrogen production

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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 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 Nicolas Boscher and his team at the Luxembourg Institute of Science and Technology who are using chemical engineering techniques – and taking inspiration from photosynthesis occurring in plants – to develop new polymers with the ability to produce hydrogen in a clean way. • This resource also contains interviews with the 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 Nicolas’ research, and challenges them to create their own multi-disciplinary ‘research team’ to tackle a global problem! • The PowerPoint reiterates the key points in the article and includes further talking points to encourage students to reflect on their own skills and aspirations. 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 make STEM subjects more engaging for students?
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How can we make STEM subjects more engaging for students?

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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 STEM 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 education researchers Dr Ginny Chambers, Dr Kamryn York and Dr Mark Marnich, at Point Park University in Pittsburgh in the US, who are helping pre-service teachers develop their skills in STEM subjects to make learning more enjoyable and effective for their future students. • This resource also contains interviews with the team and Sophie Jebose, a trainee teacher. 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 develop their own STEM teaching skills. 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!
Why do males and females have different risks of disease?
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Why do males and females have different risks of disease?

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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 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 Nora Engel, a molecular geneticist at Temple University School of Medicine in the US, who is examining sex differences in gene expression and DNA modifications to determine why this is the case. • This resource also contains an interview with Nora. If you or your students have a question for her, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. Nora will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Nora’s research, and tasks them to create an infographic on epigenetics. 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 is mathematics applied to real world problems?
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How is mathematics applied to real world problems?

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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 Mathematics. 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 Anotida Madzvamuse, an applied mathematician at the University of Sussex, in the UK, and the University of British Columbia, in Canada, whose work includes data-driven mathematical modelling, mathematical analysis of models, parameter estimation and model selection by fitting models to data. He also led the UK-Africa Postgraduate Advanced Study Institute in Mathematical Sciences. • This resource also contains an interview with Anotida. If you or your students have a question for him, you can submit it online – go to the article using the Futurum link below and scroll to the bottom of the page. Anotida will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Anotida’s research, and tasks them to explore careers in applied mathematics. 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!
Cell biology - how plants make their shapes
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Cell biology - how plants make their shapes

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Thank you for downloading this free resource. Let us know how we are doing and leave us a review. Suitable for 14-19-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, biology/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 how Dr Charlotte Kirchhelle, based at the University of Oxford, is investigating the role of cell geometry in shaping plants’ organs and looking at how this could lead to new ways of improving crops around the world. This resource also contains an interview with Dr Kirchhelle. The activity sheet provides ‘talking points’ to prompt students to reflect on Dr Kirchhelle’s research and it also outlines how students can conduct their own cell biology experiment. 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!