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Showing 1 to 15 of 34 results Save | Export
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Katharine Hubbard; Marlena Birycka; Maisie-Elizabeth Britton; Joseph Coates; Isla Delphine Coxon; Chloe Hannah Jackson; Casper Leigh Nicholas; Tyler M. Priestley; J. J. Robins; Paula R. Ryczko; Talia Salisbury; Megan Shand; George Snodin; Beth Worsley – Journal of Biological Education, 2024
Providing hands-on practical education without access to laboratories during the COVID-19 pandemic has required creativity and innovation. In this paper, co-authored by academic staff and students, we describe an at-home mobile phone-based 'spectrophotometer' experiment used in an introductory undergraduate biology course. Using colour picker…
Descriptors: Hands on Science, Science Laboratories, Distance Education, Telecommunications
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de Winter, James; Millar, Robin – International Journal of Science Education, 2023
Practical work is widely seen as an integral part of school science. Research and teacher guidance have tended to consider practical work in science, rather than in individual science subjects or topics. This study used a questionnaire of selected- and open-response items to probe the views and reasoning of a sample of 43 pre-service teachers in…
Descriptors: Experiential Learning, Science Education, Preservice Teacher Education, Preservice Teachers
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Dunlop, Lynda; Turkenburg-van Diepen, Maria; Knox, Kerry J.; Bennett, Judith; Adebanjo, Aba; Moore, Simon; Hampshire, Martin; Hunt, Tanya; Poliakoff, Simon – School Science Review, 2021
The Gatsby "Good Practical Science" report (Gatsby, 2017) identified opportunities to carry out open-ended investigative projects as one of ten benchmarks for good practical science. However, there is currently no requirement for post-16 students in England to have access to such opportunities as this is not required by A-level…
Descriptors: Foreign Countries, Hands on Science, Inquiry, Active Learning
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Alistair M. Moore; Peter Fairhurst; Judith M. Bennett; Christine Harrison; Catarina F. Correia; Jessie Durk – International Journal of Science Education, 2024
High-stakes assessments prominently influence what is done in secondary school science lessons ('washback' effects). It is therefore important that assessments of knowledge and understanding gained from practical work are constructed to reward and incentivise effective practices in practical work. To do that, they must differentiate between pupils…
Descriptors: High Stakes Tests, Science Tests, Writing Tests, Secondary School Science
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Mitchener, Nick – Physics Education, 2020
A simple, cheap, and easy to make ionisation chamber to investigate the decay of Radon-220. Requires no expensive meters, experiment is carried out using thoriated gas mantles to produce the Radon-220, and the chambers are used with low cost digital multimeters. An opportunity for 16-18 students to carry out a hands-on experiment with an ionising…
Descriptors: Science Instruction, Physics, Laboratory Equipment, Laboratory Experiments
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Erduran, Sibel; Wooding, Stephen J. – School Science Review, 2021
Many school practical activities focus on scientific methods such as hypothesis testing. Yet science is more than hypothesis testing: it includes other methods. This article presents a framework called 'Brandon's Matrix' that illustrates the diversity of scientific methods. The matrix has been used as part of Project Calibrate based at the…
Descriptors: Summative Evaluation, Science Process Skills, Foreign Countries, Secondary School Students
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Clegg, Amanda; Collins, Karen – School Science Review, 2022
A pilot study, funded by the Gatsby Charitable Foundation, supported 10 secondary schools across England to plan and deliver open-ended investigative practical work within science curriculum time. This enabled all students to experience the benefits of investigative work, rather than just those attending extracurricular STEM enrichment activities.…
Descriptors: Foreign Countries, Secondary School Science, Science Education, Science Curriculum
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Sutton, Kate – Primary Science, 2021
The author became aware of Children Challenging Industry (CCI) whilst undertaking the Primary Science Quality Mark (PSQM) in 2017 was really impressed. The author came to understand the pivotal role in primary education that careers learning has and the vital element of children learning about local industry and being 'hands-on' to make their…
Descriptors: Science Instruction, Elementary School Science, Hands on Science, Experiential Learning
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Dale Tunnicliffe, Sue; Gkouskou, Eirini – Early Child Development and Care, 2020
Children are born to play and are born as intuitive scientists and use numeracy and literacy in their play. Playing is an essential apprenticeship for developing scientific (STEM) literacy. Observing children spontaneously playing reveals that they are experiencing STEM in action. They are observing phenomena, asking questions, solving problems,…
Descriptors: Play, Preschool Children, Preschool Education, STEM Education
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Moore, Alistair M.; Fairhurst, Peter; Correia, Catarina F.; Harrison, Christine; Bennett, Judith M. – School Science Review, 2020
Practical work and experimental science are at the heart of teaching and learning in science classrooms. The COVID-19 pandemic forces secondary school science teachers to make difficult decisions about how best to facilitate practical work safely. We present empirical evidence of the effectiveness of teacher demonstrations and videos in preparing…
Descriptors: Hands on Science, Science Activities, COVID-19, Pandemics
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Rushworth, Christine – Primary Science, 2020
In this article, the author, a teacher at Cookridge Primary School in Leeds, West Yorkshire, reflects on the teaching of science from reception across the year groups. To really compare and understand the differences of teaching science in early years, the author looks at its place in the progression of science throughout primary school. The…
Descriptors: Foreign Countries, Elementary School Students, Elementary School Science, Science Process Skills
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Wilkinson, Deborah; Stallard, Wayne – Primary Science, 2017
Materials are all around us and the importance of supporting children to understand the vast array of different types of materials is recognised at all key stages in the science National Curriculum for England. Ensuring that children connect concepts taught in key stages 1 and 2 (ages 5-11) is the starting point in helping children to comprehend…
Descriptors: Science Instruction, National Curriculum, Foreign Countries, Elementary School Science
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Hoath, Leigh – Primary Science, 2018
Often unheard of unless you are of a certain age and remember audio and video cassettes, BASF are a multinational business with a large chemical site in Bradford, West Yorkshire. On the BASF site is a 'Kids' Lab' that forms part of BASF's educational outreach work. In this article, Leigh Hoath and five teachers from Bradford schools outline a…
Descriptors: Inquiry, Science Instruction, Foreign Countries, Outreach Programs
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Kent, Harry R.; Bacon, Jonathan P. – School Science Review, 2016
It is well known that schools and colleges often have budget limitations that can hamper the effectiveness of practical education. This article looks at how cheap, off-the-shelf components can be used to produce a simple DIY digital microscope, and how this provides novel opportunities to integrate biology, physics, design technology and computer…
Descriptors: Biology, Laboratory Equipment, Cost Effectiveness, Hands on Science
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Bianchi, Lynne – Primary Science, 2017
Tinker Tailor Robot Pi (TTRP) is an innovative curriculum development project, which started in September 2014. It involves in-service primary and secondary teachers, university academic engineers, business partners and pupils at Key Stages 1, 2 and 3 (ages 5-14). The focus of the work has been to explore how a pedagogy for primary engineering…
Descriptors: Curriculum Development, Elementary School Teachers, Secondary School Teachers, Partnerships in Education
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