This interactive workshop introduces a proof-of-concept student toolkit for using spatial computing to support climate change education in primary-aged multicultural settings. The session draws on my doctoral research at the University of Leeds, which examines how spatial computing can be co-developed within a climate change play curriculum with Indonesian and Malaysian children living in the UK.
The aim of the session is to share a research-informed and practice-facing approach to climate change education that is child-centred, culturally responsive and suitable for primary-aged learners. Rather than presenting technology as a novelty, the session considers how virtual reality, augmented reality, digital mapping, LEGO robotics and 3D modelling can help children explore climate change causes, impacts, mitigation and adaptation through active, visual and playful learning.
The session will begin with a short introduction to the research context and the meaning of spatial computing in primary climate change education. I will then share examples from six participatory workshops, showing how children’s discussions, drawings, digital artefacts, mapping activities and reflections shaped the toolkit’s content, learning approaches and activity design. These examples will include children’s use of VR to explore climate-affected environments, digital maps to compare climate issues across countries, LEGO sensors to model environmental systems, and AR/3D modelling to design climate solutions.
The main focus will be the student toolkit developed from the research. By the time of the conference, this toolkit will have been reviewed with children through a co-review workshop. This is not presented as a final validation exercise, but as part of the wider co-development process, where children’s responses help refine the clarity, relevance and usability of the resource.
Participants will examine selected toolkit activities and consider how they might work in primary classrooms, after-school clubs, teacher education or informal learning settings. Using a short feedback template, they will reflect on the toolkit’s climate change content, use of spatial computing, opportunities for children’s participation, cultural responsiveness and practical classroom feasibility.
By the end of the session, participants will be able to identify ways of using spatial computing to support climate change learning, explain how children’s contributions can inform curriculum development, and critically consider how a proof-of-concept toolkit can be adapted for their own educational context.
Biology teaching, from global biomes to the regulation of metabolism, has the power to inspire students about the natural world. Since the publication of The Economics of Biodiversity: The Dasgupta Review (2021) and the National Security Assessment on global ecosystems (2026) there is a strong argument for biology teaching having a duty to inspire students and play a role in creating a society fit for the challenges humanity faces.
This session will explore what we can do as members of the biology education community to instil a lifelong love of life in our students. Themes will include inter-relationships between topics, the wonder of biology, scientific thinking skills, and connection to the biology around us.
You will leave with ideas that you can use when planning lessons, developing teaching resources, organising schemes of work, or when influencing the national curriculum and exam specifications.
Session Outcomes: •Apply at least one new idea to their own lesson planning, resource development or curriculum influence. •Identify ways to bring wonder, curiosity and real world relevance into everyday lessons or resources. •Explain why inspiring biology teaching matters for students and society.
Please feel free to attend the sponsored tea/coffee available for Biology educators available after this session on Learning Hub Level 2 foyer outside of rooms 231.
Head of Gatsby Plant Education Programme, Science and Plants for Schools (SAPS)
Dan is Head of the Gatsby Plant Science Education Programme and directs the Science and Plants for Schools project. For over 10 years Dan has developed practicals and resources for SAPS and is a dab hand at getting any plant to behave in the school lab. Dan’s background in plant... Read More →
Sustainability Lead and Teacher of Biology, Hills Road Sixth Form College / SAPS
I am the Sustainability Lead, a teacher of OCR's Level 3 Certificate in Sustainability, and a Biology teacher at Hills Road Sixth Form College as well as the visiting teacher at Science and Plants for Schools (SAPS). I have over 20 years experience as a teacher and have been leading... Read More →
Science & Plants for Schools (SAPS) creates opportunities for teachers, technicians and students to find out more about plants and to become more interested in plant science.
We know that good teachers and technicians can bring plant science alive and we want to help them. We are doing this by working with curriculum developers, producing useful teaching resources, enabling teachers to share ideas through our website, and encouraging plant scientists to... Read More →
This session aims to inspire and equip teachers to think beyond the science curriculum to integrate ways of knowing from science with those from other disciplines, which include philosophy, ethics and worldviews to tackle the challenge of climate change. This supports the intention of the recent curriculum and assessment review, which aims to help learners understand that global challenges, both social and environmental require attention to scientific knowledge and cultural skills.
I have taken this approach because as a science teacher of 20 years I realised we give children the scientific skills to tackle problems, but most challenges they will face are not ones that science alone can solve. I now work at the Faraday Institute for Science and Religion, a Cambridge based research and educational institute, where we take the approach that integrating ways of knowing from science with those that consider worldviews, philosophy, ethics helps respond to big questions in a more holistic manner enabling a more effective response. Using this approach, I developed this classroom resource on climate change to help children understand why not everyone is doing everything they can to combat it, as I have taught so many children the science of climate change and they don’t then understand why everyone is not doing everything they can to combat it. It draws on ideas from journals like national geographic and discussion with colleagues.
It will explore the nature of science, through a presentation helping teachers consider the power of science with their learners, but also the limits of science; like those of instruments, timelines, complex systems and the human element and how other ways of knowing, like those from RE, which considers world views, can be helpful for tackling our big questions, like climate change. It will then review the classroom resource on climate change and this will lead into a discussion of the opportunities and challenges of this approach.
It will give you ideas and resources to help learners to consider how an individual's world view can be more important in motivating them to act or not act in response to climate change than being presented with the science and how to respond to this constructively. This will help you manage topics that can open discussions that can be emotive and challenging, encouraging you to embrace this aspect of science learning and develop wider skills in your students; It will help learners to develop oracy and debating skills. It is suitable for learners from all phases, but specifically those at KS2 and 3, covering key parts of the curriculum, but will also appeal to teachers supporting students in extracurricular activities, like science debating clubs.
Training Lead of the Youth and Schools Team, Faraday Institute for Science and Religion
I taught secondary school science for 20 years in the UK and abroad and led KS4, Biology and Physics departments. I now work at the Faraday Institute for Science and Religion as the training lead in the youth and schools' team, developing and delivering CPD for in service and trainee... Read More →
Climate change is one of the most significant challenges that humankind has ever faced and providing high quality climate change and sustainability education is imperative. The session will explore the interdisciplinary nature of climate change within the primary curriculum. It will consider how learning might be best sequenced and connected to instil in pupils an understanding of the science, geographical impacts, possible mitigations and adaptations of climate change.
The government’s response to the Curriculum and Assessment Review clearly positions climate change and sustainability education within the remit of science and geography. Through a range of practical activities the session will demonstrate how to plan and implement a coherent approach to the teaching and learning of climate change. Delegates will be prompted to discuss the specific elements that are to be taught within and across the two subjects as well as the possible connections with other foundation subjects such as citizenship and DT. Ofsted outline the importance that learning does not occur in silos and this is particularly pertinent for global issues such as climate change where pupils need to gain an in-depth understanding of the processes that underpin anthropogenic climate change as well as the wide range of impacts. The session will explore how to ensure that climate change education is relevant, hopeful and accessible in part be focusing in on small scale local impacts as well as the large scale global affects of climate change.
There will be the chance to discuss how geographical thinking can be used to interpret scientific data and imagine a range of possible futures, empowering pupils to be part of the solution as informed and active global citizens.
Outcomes: > Understanding of how to effectively embed climate change content across the primary curriculum > Make connections between the causes and effects of climate change
The CAR and Shadow CAR reports both highlighted the importance of teaching not just about the causes and impacts of global warming, but also the solutions. Climate change solutions cover both mitigation (reducing the amount of warming) and adaptation to the impacts of the warming. Teaching about solutions links well to green careers, demonstrates the relevance of core curriculum science to real-world issues and can reduce climate anxiety.
In this talk, we will explore a wide range of technological and nature-based solutions to climate change which have clear links to 11-16 biology, chemistry and physics. In particular, we will promote a synoptic teaching approach - climate change is a multi-disciplinary problem that requires a multi-disciplinary approach to both learning and solutions. Systems thinking is key, as the climate system spans school science topics and disciplines, and can be enabled through an awareness of topic sequencing.
We will explore a broad range of solutions, including but not limited to Direct Air Capture, enhanced chemical weathering, the carbon cycle impacts of protecting sea-otters, whales and elephants, using physics to cool urban areas, as well as exploring why air conditioning is a maladaptation to climate change and tree planting may be a panacea.
The aim of this session is to invite science teachers practising ESD to honestly examine their inner relationship to change-making, and discover what the IDG framework offers in response. Also to equip participants with practical, IDG-grounded techniques to help pupils experience sustainability as a way of living, not merely a body of knowledge.
"ESD is more than knowledge and skills — it is a way of living." If this is true: Are we living it? And what might quietly prevent us?
This workshop holds space for both. You'll be invited to notice — honestly and without judgement — how your own sustainability work feels from the inside: the urgency, the satisfaction, the fatigue, and perhaps the subtle resistance when genuine progress appears. You'll encounter the identity trap: the deeply human tendency to become so invested in change-making as a source of meaning that we unknowingly slow our own progress.
Far from a counsel of despair, this is an opening. The IDG framework offers a practical map of the inner capacities that ESD actually demands — and techniques for cultivating them, in yourself and in your pupils.
You'll leave knowing which IDG dimensions your teaching currently develops and which remain untouched — and with a few concrete techniques to help yourself and your pupils experience sustainability as lived reality rather than distant abstraction.
Participants should be able to: > Recognise the identity trap in their own ESD practice and approach it with curiosity rather than resistance > Identify which IDG dimensions their current teaching cultivates and which remain underdevelope > Apply at least one embodied, IDG-grounded technique to help pupils experience sustainability as a way of living
Background: A 2010 School Science Review article observed that ESD requires "tenacity and a specific way of working — it is a way of living." Yet years working across sustainability groups revealed a paradox for me: the more committed the change-maker, the more likely they were to have lost felt, embodied connection to what a sustainable future actually looks like to inhabit. Busy change-making had quietly replaced the lived experience of the change itself. A second, more confronting pattern emerged: we often unknowingly derive identity, purpose, and meaning from the change-making process. When genuine solutions surface, they are subtly resisted — completing the work would require reinventing ourselves. Kegan and Lahey (2009) name this the immunity to change: competing commitments operating largely beneath awareness.
The Inner Development Goals framework (IDG Foundation, 2021), co-created with over 1,000 researchers and practitioners, maps 23 inner skills across five dimensions — Being, Thinking, Relating, Collaborating, and Acting — as the missing complement to the SDGs, and offers a rigorous developmental path for the inner work ESD actually demands.
In this session attendees will be introduced to Model-Evidence-Link (MEL) instructional materials designed to assist American learners as they construct arguments to evaluate the plausibility of evidence connected to models and the research base that supports using these scaffolds. These MEL diagrams allow students to think critically about socio-scientific issues by evaluating connections between lines of evidence and alternative explanatory claims.
Explorations that utilize the MEL scaffold promote changes in epistemic judgments, including claim plausibility, and help students move toward a more civically minded and scientific stance. Student discourse is a critical part of these activities and include negotiation toward scientific consensus.
MEL activities for available for teaching about socio-scientific issues include climate change, dead zones, energy, extreme weather, fracking, freshwater resources, fossils, moon formation, nuclear energy, origins of the universe, soil and food security and wetlands. All materials are freely available under a Creative Commons license. Participants receive access to all instructional materials and instructional guides, found here:
This session will walk participants through what we learned from Adapt-Ed about teaching climate adaptation effectively at primary level. We will share key findings on what worked, what surprised us and what the children and teachers told us about the experience. Participants will have hands-on time with the curriculum resources and materials developed through the project, all of which are freely available to download and use. There will be space to discuss how the approaches might translate to your own school context and ask questions about the research and delivery model.
Outcomes: By the end of the session, participants will be able to: • Explain the difference between climate mitigation and adaptation and why both matter in primary education • Access and use Adapt-Ed curriculum resources and teacher CPD materials in their own setting • Identify at least two place-based or experiential approaches to teaching climate adaptation that are realistic for a primary classroom • Reflect on how climate adaptation themes can connect to existing curriculum areas in science and beyond
Background: Climate change education in schools has tended to focus on mitigation - reducing emissions - while adaptation, preparing children and communities for the impacts already underway, has received far less attention. Yet UK schools are already experiencing those impacts directly, from overheating classrooms to local flooding, and children in disadvantaged areas are disproportionately affected. Adapt-Ed was a collaborative research project led by Sheffield Hallam University with The Green Estate, Sheffield City Council and Let's Go Zero, working with primary schools in disadvantaged Sheffield neighbourhoods. The project developed and delivered teacher CPD, curriculum resources and immersive outdoor learning experiences focused on flood risk, drought, overheating, food security and nature-based solutions. Robust evaluation tracked changes in children's ecological literacy, connectedness to nature and pro-environmental attitudes using the 2-MEV (Two Major Environmental Values) scale.
How can chemistry lessons help learners make sense of climate change and sustainability?
In this session, we explore how sustainability contexts can bring chemical concepts to life and connect them to the global challenges of climate change.
We use examples from historical developments and current research to show how chemistry underpins a range of climate solutions. We will look at how chemists and scientists tackle these issues, helping learners see the relevance of their studies beyond the classroom.
We will explore ready-to-use resources and approaches, and reflect on how teachers could adapt these for their own settings. We will also draw on findings from the Green Shoots report to show how teachers can embed climate change and sustainability more consistently and meaningfully into chemistry teaching.
This session explores how EarthLearn and EarthTogether are supporting schools to develop a coherent, future-facing approach to environmental science education, Moving beyond single-issue topics, these initiatives connect themes such as air quality, climate and biodiversity through real-world student-driven enquiry. Drawing on the Air We Breathe programme as a case study from King's Group Academies, we will demonstrate how local contexts can be used to engage students with global challenges, build data literacy and foster meaningful action. We will also introduce Minibeasts and Me, a new biodiversity-focused programme that extends this model into the study of ecosystems and the natural world.
Participants will gain insight into how authentic contexts, collaboration across schools and partners, and a strong emphasis on student agency can transform science learning. Through interactive discussion and practical examples, the session will consider how these approaches can be adapted across different settings and phases. Aligned with the conference theme, this session highlights how working together can support the development of connected, relevant and empowering science education that equips young people to understand and shape their world.
From global to local - learning that connects communities. One of the most powerful aspects of our learning platform is its' ability to bridge the global and the local. As well as presenting global programmes, we bring together community-centres stories from around the world and weave meaningful connects between them - helping learners understand... Read More →
Climate change is now part of everyday classroom conversation, yet many primary teachers still feel uncertain about how best to explain complex climate topics in a balanced, age-appropriate and scientifically confident way.
This highly practical and interactive workshop draws on lessons learned through delivering climate workshops to KS2 pupils in primary schools across the Midlands, together with the development of The Climate Classroom educational podcast and companion educational materials.
The session will focus on practical, classroom-tested approaches for helping children understand key climate ideas clearly: what greenhouse gases do, why the planet is warming, how food, transport and materials connect to climate, and how solutions and innovation can be discussed without creating fear or confusion.
Participants will experience adaptable techniques including role play, discussion prompts, short quizzes, visual imagery and simple explanation frameworks designed for KS2 and early KS3 pupils.
The session will also consider how teachers can prepare well using reliable materials and trusted scientific sources, while still responding honestly to unexpected pupil questions that may need follow-up after the lesson.
Sources discussed will include NASA, NOAA, the IPCC, the WMO and the UK Met Office.
Participants will leave with practical classroom strategies, classroom-tested activity ideas, greater confidence in discussing climate change, and examples of freely accessible climate literacy resources suitable for KS2 and early KS3 classrooms.
Climate change education is becoming increasingly important within secondary science education. However, biodiversity, ecosystems, and climate change are often taught separately, limiting opportunities for students to develop connected understanding of environmental issues and sustainability challenges.
This session introduces an integrated curriculum framework developed to support the teaching of climate change through biodiversity and ecosystems in Malaysian secondary schools. The curriculum was developed as part of a PhD project using a design-based research approach informed by curriculum analysis, teacher perspectives, and iterative refinement.
The session aims to support secondary science teachers and curriculum developers in exploring practical approaches for integrating climate change concepts within existing science and geography topics. Participants will be introduced to the structure of the curriculum framework, including integrated learning objectives, inquiry-based learning approaches, differentiated learning strategies, and examples of classroom activities.
Examples from selected lesson plans and teaching materials will be shared to demonstrate how biodiversity and ecosystems can be connected meaningfully to climate change using local environmental contexts and real-world environmental issues. The session will also discuss practical considerations identified during teacher piloting and curriculum refinement, including curriculum alignment, classroom feasibility, and interdisciplinary integration.
Participants will have opportunities for brief reflection and discussion on how similar approaches could be adapted within their own educational contexts.
Participants will:
- identify practical approaches for integrating biodiversity and climate change concepts within secondary science education - explore curriculum integration strategies and lesson design approaches - reflect on teacher-informed approaches to climate change education - consider how curriculum materials could be adapted for their own contexts
Every child deserves to see themselves and their cultures reflected in science. This interactive session offers a practical framework for doing that, without adding pressure to an already full curriculum. We'll introduce "two-eyed seeing" and share six dimensions of holistic science learning, then move quickly into short hands-on tasks. You'll sit briefly in a yarning-circle-inspired opener, try a story-to-science mapping using the emu life-cycle example, sketch a seasonal plan around a "class tree", audit a familiar lesson using nature-as-teacher prompts (symbiosis, hedgehog foraging, squirrels storing acorns), and rewrite a paragraph of planning language to shift from "resources" towards respect, reciprocity and responsibility. You'll leave with an A4 planning mat, a sensitivity checklist, and at least one concrete change you can make to next week's science lesson.
The aims of this session are to: •Explain the principle of ‘two-eyed seeing’ and why it strengthens primary science. •Explore six dimensions of holistic scientific literacy. •Participate in practical activities to showcase how six dimensions of scientific literacy can be embedded in the primary science curriculum. •Apply a simple cultural-sensitivity checklist when planning.
Outcomes: Participants will leave able to articulate two-eyed seeing to a colleague, integrate at least one Indigenous or local knowledge example into an existing science unit, apply a cultural-sensitivity checklist when planning, and use relational language that positions children as part of, not separate from, nature.
Background This session draws on our work at UCL and experience working in Jamaica, Singapore, The Gambia, Japan, Senegal and Australia, synthesised in our recent research in planetary-conscious pedagogy (Strachan & Markwick, 2025). It has been shaped by classroom practice, conversations with community knowledge holders, and research on science capital (Godec et al., 2017), storytelling in science (Salehjee, 2020; Fishman, 2020), and two-eyed seeing (Hatcher et al., 2009). We approach the examples with humility, acknowledging that all knowledge, including modern science, is interpreted through a cultural lens.
If you are a science technician, come along to the "Meet the Technicians Committee" session at the end of Friday of Annual Conference 2027.
Got a question? Ever wondered about what goes on behind the scenes? Ever thought about getting involved in Committee activities? Are you wanting to know more about Professional Registration or writing an article for one of the ASE journals or webpages, or presenting at one of our events and sharing your practice?
We look forward to meeting you and helping with your queries!
Chair of ASE Technicians Committe / Senior Science Technician, The Orme Academy
I've been a school science technician since 2010, currently a senior science technician at The Orme Academy part of Shaw Education Trust, previous to this I was a senior analytical chemist in the pharmaceutical industry.
I have also worked alongside STEM learning as a lead PDL... Read More →
How can we teach primary science in ways that are both rigorous and genuinely meaningful?
This interactive session explores how cross-curricular topics such as energy, climate, and sustainability can be taught through enquiry-driven, real-world contexts. Grounded in the primary science curriculum, it demonstrates how linking to geographical understanding—such as rocks and soils, water systems, habitats, environments, and human impact—can strengthen, rather than dilute, disciplinary knowledge.
Participants will take part in a practical renewable energy investigation, modelling how pupils can ask questions, test ideas, and interpret results. The session also introduces free, adaptable resources and shows how they can be used to support substantive and disciplinary knowledge and skills.
We will also explore how initiatives like the Great Science Share for Schools and Practical Action projects can provide purpose and audience for pupil learning, raising engagement and science capital. You will leave with clear, classroom-ready approaches that combine strong science pedagogy with meaningful context—without increasing workload.
By the end of the session, participants will: • Explore enquiry-based science lessons using real-world energy and sustainability contexts • Apply strategies to support pupils in asking questions, investigating, and communicating findings • Integrate opportunities for purposeful talk to strengthen scientific reasoning • Be ready to implement at least one practical, evidence-informed strategy in their classroom
Background: This session draws on classroom practice and cross-curricular curriculum development, with a focus on improving how pupils engage with complex scientific ideas such as energy and climate. My work has been shaped by integrating science and geography to provide meaningful, real-world contexts that support both conceptual understanding and pupil motivation.
I have collated, developed and trialled classroom approaches where pupils ask their own questions, investigate renewable energy systems, and communicate their findings—leading to improved engagement, confidence, and scientific reasoning.
Primary Science Education Consultant, Dr Jo Science Solutions
RSC Excellence in Primary Education Prize 2024. With both a teaching and science background, Dr. Jo Montgomery has more than 20 years’ experience working with children and schools to support science education from Early Years to university. Passionate about encouraging curiosity... Read More →
Photosynthesis and respiration are the chemical reactions that enable solar energy to fuel life on this planet. Photosynthesis is also where almost all living substances start their life.
• The energy pathway from solar to respiration underpins life on earth • It helps students understand the origin of fossil fuels and our climate concerns • It is made far too complex and complicated when part of the biology curriculum • I argue that they need a place in the chemistry and physics curriculum not only in biology.
I have written and produced many resources to help students understand the associated physics (energy) and chemistry, which address misconceptions and simplify what are very complex biochemical pathways:
• FuseSchool short video which has had half a million views https://www.youtube.com/watch?v=3XIyweZg6Sw • SSR articles https://www.ase.org.uk/resources/school-science-review/issue-382/model-respiration-and-photosynthesis-in-which-oxygen-plays https://www.ase.org.uk/resources/school-science-review/issue-349/fuel-and-food-are-not-made-energy-constructive-view
• Science issues resource. Www.scienceissues.org.uk The talk will start with some questions teachers can use on their students to identify misconceptions. Participants will discuss their ideas in pairs (“Tell Each Other”)
I will show the FuseSchool Video and my simple “stretched oxides” photosynthesis model together with this very simple global diagram to show cross-curricular importance. [Can't attach pictue - it shows the degradation ove energy from sunlight to waste heat driving the cycling of matter: fuel+oxygen = carbon dioxide + water
We then debate how we can give these reactions more importance in future science curricula, linking it all with the need to help students understand the science behind climate change (specifically the origin of the extra carbon dioxide we are putting into the atmosphere).
Join fellow teachers to spark ideas, share challenges and solutions, and develop new classroom resources. Come along with your enthusiasm and experience – no resources necessary!
This fast-paced, hands-on session is designed to strengthen primary and secondary climate change teaching. Delegates will work in small groups so that by the end of the Hackathon, you will have:
designed engaging ways to tackle common misconceptions; identified existing resources that can be repurposed in alternative ways; developed new resources and ideas for the classroom.
You will be supported by climate change experts and curriculum developers to create ideas and resources that can be used by teachers across the country.
An author and CPD presenter, I was a teacher for 20 years, 12 of them as team leader. I then worked as a consultant, supporting teachers and science teams, training teachers and developing curriculum materials. I am now a Series Editor for Collins, CPD Trainer for AQA and Development... Read More →
Join us to relax and unwind during lunchtime at the ASE Annual Conference. Enjoy three stunning short films showcasing fascinating wildlife and their ecosystems.
‘The Caretakers’ is a journey into the weird, wonderful and truly astonishing lives of the small yet mighty creatures who keep the world turning – beetles. They have been successful for millions of years, but they’re in serious trouble; what does the future hold for these incredibly important animals, and for us if they disappear? 21 minutes. Director – Tom Hanner
‘Creatures of the Kaleidoscope’ Explore one of natures most magical creatures, the Cuttlefish. Embark on a mesmerising journey of nature’s living kaleidoscopes. Follow these elusive creatures as this documentary delves deep into the extraordinary lives of these remarkable cephalopods, see their unique abilities as they morph into a stunning array of colours and shapes in a blink of an eye. Witness the incredible transformation from vulnerable prey to cunning predators, navigating the vast oceans ever changing surroundings and dangers. 18 minutes. Director – Hannah Jodie Alexander
‘Fascinating World of Wood Ants’ This film visualizes the lifecycle of Wood Ants and emphasizes their vital ecological role in the ecosystem. It showcases their journey, social dynamics, and ecological contributions, highlighting the importance of preserving their habitats in the face of environmental challenges. 11 minutes. Director – Siddique Salim Khan
These short films are kindly made available for viewing at ASE’s Annual Conference through ASE’s long-standing collaboration with the Museo de Ciencias of the Universidad de Navarra.
The Office for National Statistics published estimates of green jobs in July 2025. 61% of these were STEM-based, especially in engineering and tech and only 3% were nature-based. The Intergovernmental Panel on Climate Change has estimated up to 725,000 new roles could be created in low-carbon sectors like renewable energy generation and electric vehicle manufacture.
EngineeringUK has developed a set of curriculum resources, the Climate Schools Programme, in several Key Stage 3 subjects and a simple model for how to use the subject of environmental sustainability to engage students in thinking about engineering and tech careers.
The resources and model are based on solutions to environmental problems, rather than the problems themselves, and naturally extends to the current and future careers associated with those solutions. Attendees will have a chance to explore how they might put these ideas into practice in their setting.
Young people have extraordinary ideas for tackling climate change and biodiversity loss. Too often, those ideas never get beyond the classroom. Project Earth is changing that.
This talk explores how teachers can help young people move from learning science to using science to solve real problems — connecting their ideas with experts, opportunities and the support to take them further.
Don't just teach young people about the future. Give them the tools to help shape it.
Young people have extraordinary potential. Project Earth helps turn it into impact — now..
This workshop will bring together two urgent agendas in science education: helping students make sense of climate and media-based claims, and ensuring they can see clear, meaningful progression into green and vocational futures. It will explore how science curriculum and qualification design can better connect scientific knowledge, evidence evaluation, real-world relevance and future pathways.
Participants will explore how science education can connect disciplinary knowledge with climate literacy, media literacy and green skills; consider how qualification design can make science more relevant and future-facing; and think about how curriculum, assessment and pathways can work together to support informed, motivated and aspirational learners.
Participants will leave with practical ideas for linking science teaching to climate and media literacy, a clearer understanding of how green skills and progression routes can be surfaced within KS4 science, and a stronger framework for thinking about relevance, engagement and future-facing qualification design.
Gardens and other ecosystems depend on pollinators, including bees. As the number of bees and other insects are declining at alarming rates worldwide (e.g., The number of recorded flying insects in the UK fell by 62.5% between 2021 and 2024 [Ball et al., 2024]; Australia is losing up to three species of native insects and other terrestrial invertebrates to extinction every week [Woinarski et al., 2024]), one in four native bee species faces extinction (Kopek & Burd, 2017). Since two-thirds of crops depend on insect pollination, these declines pose serious threats to food security and biodiversity (Feuerbacher et al., 2025).
Teachers can raise awareness of these issues and engage students with pollinators through GBL, which creates a context where students can experience and explore nature, and it offers many benefits to students (e.g., increased physical, cognitive, social-emotional, and self-care skills) (Taşçı & Keleş, 2021). As a matter of ecojustice, GBL also provides equitable access to green spaces, particularly for students from underserved communities (Authors, 2026; Schönfelder & Bogner, 2018; Taşçı & Keleş, 2021).
This presentation will showcase a new K-12 STEAM garden-based learning (GBL) curriculum that focuses on biodiversity and sustainability and was co-developed by an interdisciplinary team of classroom teachers, STEM education researchers, and scientists. We will disseminate evidence of the curriculum’s efficacy from our research with teachers and students. There will be space for questions and answers towards the end of the session.
This presentation involves sharing a new STEAM GBL curriculum with support materials and research results on the efficacy of implementation.
Outcomes: Participants will learn about and explore free, online resources that integrate social and emotional learning through the 3-H learning model (Hearts-on, Hands-on, Heads-on). Resources include 135 integrated K-12 STEAM GBL lessons, recommended children’s literature and reference books, 24 teacher and family resource sheets for sustainable gardens, citizen science projects, and 18 STEM career videos. A limited number of native bee colouring books will be available to the first arriving attendees, with online access for all participants.
Background: As a science educator and researcher with more than 40 years of experience in science education leadership, including 10 years of public-school teaching, I have led 4 transdisciplinary teams in developing curricula for K-12 students and PreK teachers, including work with National Geographic, Primrose Schools, the Ohio Department of Education, and USDA-NIFA. This session will focus on our most recent project.