Prototyped alveoli for beehives

Prototyped alveoli for beehives

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Prototyped Alveoli for Beehives Learning Goals Observe Behavior Develop Creativity and Ingenuity to Overcome Challenges Explore 3D Printing Applications in Biology Design with Solidworks Bring a Project from Concept to Completion Foster Teamwork and Relationships Skills Outside Personal Environment/ Ethnic Group Encourage Students to Discover Connections Between Bees and Other Curriculum Subjects Like Mathematics, Geometry, and Biology Time Frame: A Few Weeks Type of Education: Exploration Module - Creation and Technological Innovation (10th Grade) Education Toolbox Design Program Used: Solidworks Additional Tools and Equipment Needed: Infrared Camera, Sensors Theme/Subject: Mathematics, Biology Project Description Special Request for This Group of Students Replace the Wax Framework with 3D-Printed Alveoli Observe Bee Behavior Using an Infrared Camera Save Time in Honey Production Starting Point: The Beehive and Standard Framework Installation of a Small Group of Connected Beehives in School Enclosure Optimize Honey Production and Examine Bee Behavior Replace Wax Framework with 3D-Printed Alveoli Examine Bee Reaction Using Sensors and Infrared Camera Goal: Substitute Wax with 3D-Printed Alveoli at Different Stages to Observe Bee Response Subcontracting: Examine Bee Feedback Install Sensors and Infrared Camera by Students of Terminale Science and Technology of Industry and Sustainable Development (STI2D) Activities in Progress Analyze and Draw Lozenges and Cells on a 200 x 200 mm Area Using Different Materials Mathematics Analysis: Geometrical Shapes of Alveoli Outline of Alveoli Under Construction with Solidworks

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