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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
Physical Sciences Scholars programme (run by Bucknell University)
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Physical Sciences Scholars programme (run by Bucknell University)

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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, Geology 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 Physical Sciences Scholars programme run by Bucknell University in the US. The programme helps students of chemistry, physics and geology make the transition to professional scientist and is specifically aimed at low-income students. This resource also contains an interview with the programme leaders, Professors JiaJia Dong, Karen Castle and Mary Beth Gray. The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on the programme and links 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!
Food science: the perfect cup of coffee
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Food science: the perfect cup of coffee

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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 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 Gabriel Keith Harris who studies food science for a living at NC State University’s Food, Bioprocessing, and Nutrition Sciences department. His current work focuses on coffee: its chemical composition, flavour and shelf life, as well as the uses for coffee grounds after brewing. This resource also contains an interview with Dr Harris. The activity sheet provides ‘talking points’ about Dr Harris’ work and prompts students to think about the science behind other food and drink. 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: Finding new renewable energy sources with theoretical chemistry
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KS4-5: Finding new renewable energy sources with theoretical chemistry

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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 15-18-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, in science/computer clubs and at home. This resource links to KS4 and KS5 Chemistry: chemical and allied industries, energy changes in chemistry, structure, bonding and the properties of matter; Computing and Maths. It is also internationally relevant. It can 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 an explanation of fuel cells and why they are a potential renewable energy source, an interview with theoretical chemist Dr Mark Tuckerman and an overview of theoretical chemistry i.e. what is it and how does it compare to synthetic chemistry? The activity sheet includes discussion points - seven questions the students can answer in groups or individually. There are also links to free lessons in computer programming, and instructions on how to make a potato clock. 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 we need to study chromosomes?
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Why do we need to study chromosomes?

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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/chemistry/biochemistry/STEM 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 Lakxmi Subramanian, of Queen Mary University of London, in investigating how chromosomes segregate during cell division. This resource also contains an interview with Dr Subramanian. The activity sheet provides ‘talking points’ to prompt students to reflect on Dr Subramanian’s work and links to other useful resources. 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!
Atmospheric science: Cloud seeding and weather modification
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Atmospheric science: Cloud seeding and weather modification

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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/environment clubs and at home. This resource links to KS4 and KS5 Chemistry 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 atmospheric scientist, Darrel Baumgardner, and looks at how cloud seeding is used to modify the weather. This resource also contains an interview with Darrel. The activity sheet provides ‘talking points’ to prompt students to reflect on Darrel’s work and tasks to ensure students consider the different issues connected to weather modification. 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!
Helping students reach their STEM potential - Chemistry
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Helping students reach their STEM potential - Chemistry

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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, 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 Nick Flynn from the West Texas A&M University, USA, who leads a programme enabling students to reach their potential in STEM. It also shares his passion for chemistry. • This resource contains an interview with Dr Flynn. 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 Flynn will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Dr Flynn’s research and challenges them to design their own STEM programme. 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!
Antimicrobial resistance and pollutants.
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Antimicrobial resistance and pollutants.

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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, chemistry/engineering/biology/STEM clubs and at home. This resource links to KS4 and KS5 Chemistry, Engineering and 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 that Dr Helen Bridle, from Heriot-Watt University, is doing on using sensors to explore the relationship between antimicrobial resistance and pollutants in India. This resource also contains an interview with Dr Bridle. The activity sheet provides ‘talking points’ to prompt students to reflect on Dr Bridle’s work and links to find out more, including contact details for Dr Bridle. 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 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!
Extraordinarily small materials with big world applications
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Extraordinarily small materials with big world applications

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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 Chemistry. 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 Professor Joshua Robinson, a materials scientist and engineer based at The Pennsylvania State University in the US. His research focuses on 2D materials, such as graphene, and he is now exploring other materials for next generation electronics. • This resource also contains an interview with Joshua and PhD students, Alex and Cindy. 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 Joshua’s research, and tasks them to imagine they are a PhD student in his lab. A Spanish translation of this resource is available through the link below. 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!
Chemical microbiology: How can we discover new antibiotics?
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Chemical microbiology: How can we discover new antibiotics?

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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 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 Professor Mohammad (Mo) Seyedsayamdost, a chemical microbiologist at Princeton University, USA. He is investigating bacterial natural products in order to discover new antibiotics. • This resource also contains an interview with Mo and offers an insight into careers in chemical microbiology. If your students have questions for Mo, 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). Mo will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Mo’s research and challenges them to summarise his research in a 60 second presentation. 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!
JAK NAUKOWCY MOGĄ USPRAWNIĆ PROCES WYTWARZANIA WODORU, ABY ROZWIĄZAĆ PROBLEM ZMIAN KLIMATYCZNYCH?
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JAK NAUKOWCY MOGĄ USPRAWNIĆ PROCES WYTWARZANIA WODORU, ABY ROZWIĄZAĆ PROBLEM ZMIAN KLIMATYCZNYCH?

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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 Polish 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 Polish language 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! 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!
What can atmospheric chemistry teach us about air pollution?
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What can atmospheric chemistry teach us about air pollution?

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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. 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 Tran Nguyen, an atmospheric chemist at the University of California Davis. She is studying chemical reactions in the atmosphere to understand their impact on air quality and climate change. • This resource also contains an interview with Tran and offers an insight into careers in atmospheric chemistry. If your students have questions for Tran, they can send them to her 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). Tran will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Tran’s research and challenges them to design a clean air action plan to reduce air pollution in their local area. • An animation about Tran’s work is available through the weblink, along with a downloadable script. • The accompanying PowerPoint reiterates the key points in the article and encourages students to reflect on their own 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 measure gases dissolved in seawater?
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How can we measure gases dissolved in seawater?

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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 and geography. 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 Anuscheh Nawaz, an ocean engineer at the University of Washinton, USA. She is developing the technology needed to measure concentrations of nitrous oxide (a potent greenhouse gas) dissolved in the ocean. • This resource also contains an interview with Anuscheh and offers an insight into careers in ocean engineering. If your students have questions for Anuscheh, they can send them to her 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). Anuscheh will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Anuscheh’s research and challenges them to design a proposal to bring life into ocean dead zones. 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!
KS3-4: Nanotechnology: when it is good (and bad) for us and society
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KS3-4: Nanotechnology: when it is good (and bad) for us and society

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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 11-18-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 Design and Technology, investigate new and emerging technologies; KS4 Chemistry, chemical analysis; KS4 Design and Technology, technical principles, 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 nanotechnology research project, an interview with the chemist Dr Andrea Holmes and an overview of nanotechnology i.e. what is it and how do you become a nanotechnologist? The activity sheet includes discussion points - six questions the students can answer in groups or individually - and ideas for activities that are relevant to nanotechnology. 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!
KS3-4: What are rare earth elements, where do we find them and how can we use them?
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KS3-4: What are rare earth elements, where do we find them and how can we use them?

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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 11-18-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 Science, Earth: Earth Resources and Climate and KS4 Chemistry, Earth and Atmospheric Science; Geography, physical geography and people and environment, 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 geoscience research project, including an explanation of rare elements such as tellurium, which is rarer than gold! Marine geoscientist Prof Bram Murton explains his fascination with marine geoscience as well as the career opportunities that are available in this field. The activity sheet includes discussion points - seven questions the students can answer in groups or individually - and ideas for activities that are relevant to geoscience, including Boaty McBoatface! 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!
KS3-4: Can chemistry solve climate change with carbon capture?
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KS3-4: Can chemistry solve climate change with carbon capture?

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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 11-18-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 Chemistry, Earth and atmosphere; Design and Technology, Evaluate; *Geography, human and physical *and KS4 Chemistry, Earth and atmospheric science, 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 carbon capture project, an interview with chemical engineer Prof Chris Jones and an overview of chemical engineering. The activity sheet includes discussion points - eight questions the students can answer in groups or individually. There are also links to other relevant resources from Science Buddies. 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!
KS3-4: How do batteries work and why is energy storage so important?
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KS3-4: How do batteries work and why is energy storage so important?

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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 11-18-year olds (secondary and high schools, and college), this article and accompanying activity sheet can be used in the classroom, chemistry/STEM clubs and at home. This resource links to KS3 and KS4 chemistry, 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 how batteries work, the chemistry behind electrolytes and electrodes, and why batteries are so important for renewable energy. There is also an interview with chemist Prof Jenny Pringle, who talks about her career path and opportunities at storENERGY, a research lab based in Australia. The activity sheet includes discussion points - seven questions the students can answer in groups or individually. There are also links to educational activities such as instructions on how to make a battery using lemons and other food stuffs. 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 computational chemistry could usher in a sustainable future
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How computational chemistry could usher in a sustainable future

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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 and Computing. 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 John Keith, a computational chemist at the University of Pittsburgh in the US, who is using advanced computer modelling to simulate catalysts that could drive reactions for removal of carbon dioxide from the atmosphere. • This resource also contains an interview with Professor Keith. 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. Professor Keith will reply! • The activity sheet provides ‘talking points’ (based on Bloom’s Taxonomy) to prompt students to reflect on Professor Keith’s research and challenges them to explore different types of catalysts. 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!