9/25/2023 0 Comments Wonders of science phenomenaAlthough models do not correspond exactly to the real world, they bring certain features into focus while obscuring others. Models include diagrams, physical replicas, mathematical representations, analogies, and computer simulations. Modeling can begin in the earliest grades, with students’ models progressing from concrete “pictures” and/or physical scale models (e.g., a toy car) to more abstract representations of relevant relationships in later grades, such as a diagram representing forces on a particular object in a system. You can now download Wonderlab AR on iOS and Android.Introduction to SEP2: Developing and Using Modelsįrom NGSS Appendix F: Science and Engineering Practices in the NGSS īringing these visualisations to the audience’s world through AR, and making science relatable and contextual through hands-on interactions and location-based play, allows its value and importance in our world to be better understood. Wonderlab AR even visualises a vast rift which engulfs your surroundings, allowing you to reach right into the depths of Space. In the app, there’s a selection of Wonders including Lights reflecting off our world, creating a beautiful effect, Electricity showing the frenetic conduction between different points in our environment and Sound waves travelling through our world. PRELOADED’s technical art team experimented with different ways of using the ARDK’s meshing capabilities to peel back the layers of the user’s space and reveal the wonders in an engaging way. With Wonderlab AR, we had the opportunity to make science more visible and bring these visualisations into the audience’s world.įunctioning as a game-like discovery tool, the app leverages Niantic’s ARDK to visualise the science through real-time AR effects. While technology strives to become more invisible in our world, science, in turn, becomes less visible. For example, a bridge now becomes a moment to consider the forces enabling its construction and ATMs are a fantastic opportunity to learn that they used to contain radioactive carbon. This representation of data transforms local points of interests into moments of scientific discovery. A bespoke content matrix, which mapped each data point to a scientific phenomena, allowed us to filter all of the hotspots on the map and scale the AR experience across the UK. Using a combination of OpenStreetMap and Mapbox data, we were able to map the location of millions of data points – from lamp posts, post boxes, wind farms, and even bike racks. To achieve this, PRELOADED worked with the Science Museum to bring a rich variety of geodata into the app. Our goal was to achieve this by drawing clear and understandable connections between the real-world and scientific phenomena. Science education has always wanted to escape the trappings of physical buildings or institutions, because it’s best demonstrated in context. Each of these discoveries is designed to move you closer to unlocking a series of playful visual effects that allow you to visualise the wonders – transforming the real world around you. At each new point of interest, you discover challenges with a cryptic clue to search and identify the subject matter in your surroundings. The core gameplay loop is designed to encourage people to head out into the world and discover the science hidden in plain sight – similar to a large-scale treasure hunt. Building on the affordances of the Lightship ARDK and inspired by Niantic’s vision for a real-world metaverse, we wanted to bring science into our world to make it more relatable, understandable and valuable.ĭesigning for a primarily younger audience, we set out to develop a location-based game that encourages kids and families to get outside and explore the world through eyes-up play. From the outset, the ambition of Wonderlab AR was to extend the Science Museum’s mission beyond their site-specific locations and help more people make sense of the science which shapes our lives.
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