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The Efficient Science Teacher

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Bringing you quality resources to save you time in and out of the classroom.
Bundle 1 - History of STEM Practicals -  Science, Mathematics and History
TheEfficientScienceTeacherTheEfficientScienceTeacher

Bundle 1 - History of STEM Practicals - Science, Mathematics and History

10 Resources
More about the History in STEM practical Series This series is designed to bring quality cross-curricula material to STEM subjects, that help students to explore and discover phenomena normally taught, while getting a glimpse into the history of its development. In addition, a number of the practicals give the students the opportunity to play “Mythbusters”, looking at a number of different methods and having to reason why one or the other was the more likely or useful method. From Ancient Greece to Vikings, China to the Golden age of the Muslim empire and beyond to India, the series takes a look at some of the most important STEM achievements throughout history. There is a plan for 40 of these such practicals in this series, so, if you liked this one, consider looking at some of the others, or check out some of the bundles available. What’s included: Similar Triangles - History of STEM practicals - How Far Is That Boat? Water Alarm Clock - History of STEM practicals - Pressure and Displacement Viking Sunstones - History of STEM practicals - Refraction and Birefringence Pythagoras’ Cup - History of STEM practicals - Siphon Archimedes’ Eureka - History of STEM practicals - Density Measuring the World - History of STEM Practicals - Circumference of Circles Chemical Reactions - History of STEM practicals - Invisible Ink Practical Statistics and Cryptography - History of STEM practicals - Crack the Code Force and Tensile Strength - History of STEM practicals - Paper Part 1 Barometer - History of STEM Practicals - Pressure + Climate - Distance Learning
Similar Triangles - History of STEM practicals - How Far Is That Boat?
TheEfficientScienceTeacherTheEfficientScienceTeacher

Similar Triangles - History of STEM practicals - How Far Is That Boat?

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Practical 6 in the History in STEM practical series. In this practical, you will be using similar triangles to measure how far off distant objects are. This technique is believed to have been used in Ancient Greece and other locations for a number of reasons and is a very simple to conduct, group work activity where each member has defined roles, ensuring that participation is high. It can be used and adapted to teach a number of aspects of similar triangles, but as it is set up, would be a great introduction to the topic. More about the History in STEM practical Series This series is designed to bring quality cross-curricula material to STEM subjects, that help students to explore and discover phenomena normally taught, while getting a glimpse into the history of its development. In addition, a number of the practicals give the students the opportunity to play “Mythbusters”, looking at a number of different methods and having to reason why one or the other was the more likely or useful method. From Ancient Greece to Vikings, China to the Golden age of the Muslim empire and beyond to India, the series takes a look at some of the most important STEM achievements throughout history. There is a plan for 40 of these such practicals in this series, so, if you liked this one, consider looking at some of the others, or check out some of the bundles available. Other practicals in the series: Similar Triangles - History of STEM practicals - How Far Is That Boat? Water Alarm Clock - History of STEM practicals - Pressure and Displacement Viking Sunstones - History of STEM practicals - Refraction and Birefringence Pythagoras’ Cup - History of STEM practicals - Siphon Archimedes’ Eureka - History of STEM practicals - Density Measuring the World - History of STEM Practicals - Circumference of Circles
Archimedes' Eureka - History of STEM practicals
TheEfficientScienceTeacherTheEfficientScienceTeacher

Archimedes' Eureka - History of STEM practicals

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Part 2 in the History in STEM practical series. This time we are taking a look at the famous experiment regarding the link between an objects volume and water displacement, in order to calculate the density of a dodgy crown by that eccentric scientist Archimedes. Note: The “Crown” in the practical can be anything you want. However, it will link better to the story if it is a crown. More about the History in STEM practical Series This series is designed to bring quality cross-curricula material to STEM subjects, that help students to explore and discover phenomena normally taught, while getting a glimpse into the history of its development. In addition, a number of the practicals give the students the opportunity to play “Mythbusters”, looking at a number of different methods and having to reason why one or the other was the more likely or useful method. From Ancient Greece to Vikings, China to the Golden age of the Muslim empire and beyond to India, the series takes a look at some of the most important STEM achievements throughout history. There is a plan for 40 of these such practicals in this series, so, if you liked this one, consider looking at some of the others, or check out some of the bundles available.
Measuring the World - History of STEM Practicals
TheEfficientScienceTeacherTheEfficientScienceTeacher

Measuring the World - History of STEM Practicals

(1)
Practical 1 in the History in STEM practical series, looking at how students can do an experiment completed over 2000 years ago to get their own reasonably accurate value for the circumference of the Earth. Requires minimal equipment and very little time to get the data, however, does need you to be able to work with another school in a** different city** to get all the data points required to complete the calculation. Good for schools with a “sister school” in another state or country. More about the History in STEM practical Series This free sample is a preview of the History in STEM practical series, a set of practicals designed to bring quality cross-curricula material to STEM subjects, that help students to explore and discover phenomena normally taught, while getting a glimpse into the history of its development. In addition, a number of the practicals give the students the opportunity to play “Mythbusters”, looking at a number of different methods and having to reason why one or the other was the more likely or useful method. From Ancient Greece to Vikings, China to the Golden age of the Muslim empire and beyond to India, the series takes a look at some of the most important STEM achievements throughout history. There is a plan for 40 of these such practicals in this series, so, if you liked this one, consider looking at some of the others, or check out some of the bundles available.