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Random Walks with code blocks for StarLogo Nova

Posted August 30, 2016 by turtle

Modeling the movement of agents (people,molecules, cars or ideas) is an important part of modeling systems. Different agents will have varying amount of randomness in their “walks” which can have an impact on systems. In this activity, students will apply the concept of randomness to a simple StarLogo program in which the agents will use ‘random’ blocks to ‘wiggle’ as they move around SpaceLand. This programming activity follows the ‘What are the Chances?" activity.

What are the chances?

Posted August 30, 2016 by turtle

This activity to explore randomness and how to program percent chance in StarLogo Nova.

Spring Introductory Unit for Project GUTS after-school clubs

Posted August 25, 2016 by turtle

The Project GUTS after-school clubs were structured to have 10-12 week units in the Fall and Spring Semesters, with a 4-5 weeks Introduction to StarLogo Nova and computer science concepts, followed by a 5-6 week content unit. This is the curriculum page for the Spring Semester Unit introductory weeks. It assumes students had participated in the Project GUTS club during the Fall Semester, so might require building some background knowledge and skills for students new to StarLogo Nova.

Fall Introductory Unit for Project GUTS after-school clubs

Posted August 25, 2016 by turtle

The Project GUTS after-school clubs were structured to have 10-12 week units in the Fall and Spring Semesters, with a 4-6 weeks Introduction to StarLogo Nova and computer science concepts, followed by a 4-6 week content unit. This is the curriculum page for the Fall Semester Unit introductory weeks. It assumes students are new to Project GUTS and to StarLogo Nova. If you have repeating students, see the Resources Link to Other activities to Introduce Project GUTS for additional ideas.

Geothermal Energy for StarLogo Nova

Posted August 15, 2016 by turtle

This unit was developed as a Project GUTS after-school club unit. Students learn about geology topics relating to hot springs with mineral deposits, as well as geothermal energy with hot water being heated underground and rising to the surface. Students decode a base model and add their own enhancements.

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