This paper describes how individualized photobooks were used to support 3- and 4-year-old children in demonstrating their science learning and developing their science identity through participation in a science outreach program. Photographic images stimulate children’s visual thinking and allow them to provide explanations of complex concepts using their language, thus supporting children at their level of understanding. Twenty child/parent dyads were video-recorded interacting with the exhibits during a Science Outreach program into Western Australian community playgroups. Screen shots from the video-recordings were used to develop individual printed photobooks for each child. One week after the program, the photobooks were used in a photo-elicitation conversation with the children (accompanied by their parents) about how the exhibits worked. Children took their photobooks home and 7 weeks after the program parents were interviewed about how the photobooks were used. The photobooks were found to assist the children in demonstrating their science understandings by providing a context for conversation and allowing the children to show their competence, use multiple forms of communication (verbal, non-verbal and through parent), and participate or withdraw on their terms. At home, the photobooks were found to be a focus for the children to share their knowledge of the Outreach program with family members, give the children a voice, and provide them with time to express their understandings. Having the child as narrator of his/her story and the adult as listener empowered the child’s sense of identity. The use of individualized photobooks was found to contribute to the development of the children’s identity and increase their agency in science and enhanced the parents’ perceptions of their children as young scientists.
The book Controversy in Science Museums: Re-imagining Exhibition Spaces and Practice by Erminia Pedretti and Ana Maria Navas Iannini presents a masterful analysis of the nature of science museums and their exhibitions. Critical exhibitions challenge how science is represented traditionally and can be transformative by inspiring visitors to grapple intelligently with the serious socio-scientific issues encountered in their everyday lives. The book is an elegant exposition of theory, practice, and research, compiled by authors who know and understand this genre of science museum exhibitions. This review explores the themes that enable the authors to provide a thought-provoking, practical analysis that can assist the leaders of science museums to further the successful evolution of transformative and critical exhibitions.
The Children's Engagement Behaviour Framework was developed to describe young children's engagement with science exhibits and how their behaviour is related to learning about the exhibits. The Framework was synthesised from frameworks in research literature related to family learning and the nature of play. It describes three categories of epistemic behaviour and two categories of ludic play behaviour. Field-testing in a playgroup environment where young children engaged with science exhibits revealed that its five categories effectively captured the range of engagement behaviours children displayed. The Framework was used to code video-recordings of 20 children in five further playgroups, categorising 89 child-exhibit interactions lasting at least 30 s. The inter-coder agreement was 93% and differences were easily resolved. The highest level of epistemic behaviour was recorded at each exhibit and 29 instances of ludic behaviour occurred. Children were interviewed using stills from their video-recording to stimulate discussion about exhibits. Epistemic behaviour was strongly related to learning about how the exhibit worked but ludic behaviour had no relationship with such learning. This research has demonstrated the relationship between observable epistemic behaviour and learning and provided a Framework for research into the engagement behaviour of young children. Practical applications of the Framework arediscussed.
Science centers, zoos, and aquariums share the common goal of engaging visitors in learning about the physical and natural world. Exhibits in zoos and aquariums, however, focus primarily on living organisms. Interactive exhibits are less common in these institutions and this differentiates the way visitors engage with exhibits from that of a typical science center visit. Based on the usefulness of the Visitor-Based Learning Framework (Barriault & Pearson, 2010) as an exhibit assessment tool in science centers, the purpose of this research was to develop a similar tool that assesses the potential learning impact of live animal exhibits in zoos and aquariums. A comprehensive framework of learning-related behaviors was developed and field-tested with a total of 900 visitors. The resulting Visitor-Based Assessment Framework for Animal Exhibits provides zoo and aquarium researchers and practitioners with a valuable tool to assess exhibits through observable behavioral indicators.
This chapter examines earthquakes as a real-world, socioscientific issue to explore how schools, school curricula, school systems, and communities respond to the learning opportunities created by a natural disaster in the local or global community. We identified some of the issues that determine how different countries deal with earthquake preparation, response, and the factors that affect recovery. We then reviewed school-based, curriculum, and community responses to the Canterbury earthquakes in New Zealand as a case study. In the immediate aftermath, attention focused on the emotional support of students, teachers, and families, and efforts were made in combination with the community to return to normal schooling and curriculum stability in students’ lives. We suggest that recovery from such natural disasters must be both flexible and integrated across curriculum and the community, drawing widely on available resources.
While much has been written about science education from pre-K through to postgraduate study, interaction with science and technology does not stop when schooling ends. Moving beyond scholarship on conventional education, this book extends the research and provides an original in-depth look at adult and lifelong learning in science and technology. By identifying the knowledge and skills that individuals need to engage in self-directed learning, the book highlights how educators can best support adult learners beyond the years of formal schooling. Through case studies and empirical analysis, the authors offer a research-based exploration of adults’ self-directed learning and provide tools to support adults’ learning experiences in a wide range of environments while being inclusive of all educational backgrounds.
This paper introduces a hierarchical model of children's (3- to 8-year olds) research participation rights that builds on work by Roger Hart and integrates key participation rights drawn from UNCRC Article 12: information, understanding, voice, and influence. It provides insight into the various levels of information that can be provided to children, the understanding that results, the scope given to them to express their views, and the degree to which their voices ultimately exert influence in research contexts. Each of these four elements plays a unique role in upholding and enhancing children's rights in research and emphasises the need for rights to be woven into the fabric of a research project from its conception. Considering children's rights of research participation in a more integrated manner, as suggested by the hierarchy, has the potential to improve participation experiences for children and to value them as citizens with meaningful rights.