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Understanding by Design

Posted April 5, 2017 by turtle

Understanding by Design (UbD) curriculum offers a 3-stage “backward design” framework for developing units of study. The same process guides larger-scale curriculum development for courses and
programs (macro level). The UbD curriculum structure for building a coherent curriculum spirals around “big ideas,” essential questions, and core assessments.

Teacher encouragement

Posted December 2, 2016 by turtle

In this video, Corinna Low give teachers words of encouragement to try the Project GUTS CS in Science curriculum.

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.

Traffic Patterns for StarLogo TNG

Posted November 24, 2016 by turtle

Why do traffic jams form?

Each year the number of paved miles grows by roughly 20,000 miles. When traffic gets too congested, traffic engineers must consider changes to existing roads or intersections. This unit engages students in interactive activities to explore pattern formation in complex systems, and in the use, modification, and creation of agent-based models to conduct experiments on simple virtual traffic systems, to study whether proposed road changes will the desired effect.

Complex Adaptive Systems

Posted December 2, 2016 by turtle

This video was produced by Project GUTS and Code.org to introduce Complex Adaptive Systems.

Agent Based Modeling

Posted December 2, 2016 by turtle

This video was produced by Project GUTS and Code.org to introduce agent based modeling.

Computational Thinking

Posted December 2, 2016 by turtle

This video introduces computational thinking. It was produced by Project GUTS with Code.org.

Teacher testimonial: Corinna Low

Posted December 2, 2016 by turtle

This video shows an interview of Corinna Low, a middle school science teacher from South San Francisco.

Models in the Classroom

Posted December 2, 2016 by turtle

In this video, GUTS teachers talk about using models within science classrooms.

Segregation Model

Posted April 3, 2017 by turtle

This model shows how a small preference for looking like one's neighbors can lead to a segregated society. The unit so far includes the model as a mystery model to be discussed and decoded by students, a partial piece of code with to use for decoding practice, a finished model, some background information, and a link to an on-line resource demonstrating these concepts. We are developing an off-line activity and other curriculum for this module -- stay tuned!

Dispositions and Classroom Culture

Posted December 2, 2016 by turtle

In this video, GUTS teachers talk about instilling dispositions and classroom culture that supports scientific inquiry and the development of computational thinking.

Archived Material: CS in Science Module 1 (for StarLogo Nova 1.0)

Posted December 2, 2016 by turtle

Archived Material: Module 1 introduces basic concepts in modeling complex systems through hands-on activities and participatory simulations. A scaffolded series of highly-engaging design and build activities guide students through developing their first computer model in StarLogo Nova 1.0, a modeling and simulation environment developed at the Massachusetts Institute of Technology.

Computational science project rubric

Posted December 2, 2016 by turtle

This rubric is based on one used by the Supercomputing Challenge for judging student projects and presentations during competition.

Archived Material: CS in Science Module 2: Water as a Shared Resource (for StarLogo Nova 1.0)

Posted December 2, 2016 by turtle

Archived material for CS in Science: Module 2 for StarLogo Nova 1.0 (flash version, updated in 2015). In this module, students will investigate the importance of ground water and the impacts of water usage on aquifer levels. They will also explore how to model important parts of the water cycle, including evaporation and infiltration of water into different types of soils to recharge the aquifers.

Archived Material: CS in Science Module 3 - Ecosystems as complex systems (for StarLogo Nova 1.0)

Posted December 2, 2016 by turtle

Archived Material: CS in Science Module 3 (for StarLogo Nova 1.0, Flash version updated 2015). This Life Science module begins with an exploration of a simple predator-prey model to consider who eats whom—and what happens when one population grows faster than another. Students develop their own model of a local ecosystem and learn about ecosystem dynamics, producers and consumers, and interdependent relationships within an ecosystem.

Archived Material: CS in Science Module 4 Chemical Reactions for StarLogo Nova 1.0 (Flash version)

Posted December 2, 2016 by turtle

Archived Material: CS in Science Module 4: Chemical Reactions for StarLogo Nova 1.0 (Flash version, updated 2015). This Physical Science module explores chemical reactions: the conditions under which they occur, the evidence that a chemical reaction has taken place, limiting reactants versus reactants in excess, and when chemical reactions stop. The base model for this unit simulates the chemical reaction between silver nitrate and copper.

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.

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