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Why Model?

Posted May 15, 2017 by sgibbs

A paper describing the author's reasons why modeling is essential to science.

Implementation Planning Guide

Posted December 2, 2016 by ilee

This is a guide used by teachers when planning their classroom implementation. The guide prompts teachers to work through details of the implementation that teachers have found to be important.

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.

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.

Models in the Classroom

Posted December 2, 2016 by turtle

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

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.

Project GUTS' Learners to Leaders

Posted December 2, 2016 by turtle

This is the Project GUTS Facilitator's Guide. Both the 2016 version (for Code.org 3-day workshops) and the updated 2018 version for CS in Science are linked below.

Project GUTS' Club Leader Handbook

Posted December 2, 2016 by turtle

This handbook was developed to help teachers and others interested in starting a Project GUTS afterschool club.

Feedback loops

Posted May 15, 2017 by sgibbs

This document provides background information on feedback loops in complex adaptive systems.

Project GUTS MOOC

Posted December 7, 2016 by turtle

Project GUTS presented the CS in Science curriculum modules in a Massive Open Online Course (MOOC). The links below will allow you access to the original MOOC site, to see not only the written curriculum but also screencasts of building the related StarLogo Nova models and other background information for teachers and facilitators. The MOOC was also translated in Spanish (see link below).

For the 2017 course, please go to guts-2017.appspot.com

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.

BCSC 5e Instructional Model

Posted April 5, 2017 by turtle

BSCS (Biological Sciences Curriculum Study) paper explaining the 5e instructional model. The model describes a teaching sequence that can be used for entire programs, specific units, and individual lessons. The BSCS 5E Instructional Model plays a significant role in the curriculum development process as well as the enactment of curricular materials in science classrooms.

Code.org and SLNova Computer Science Concepts

Posted May 13, 2017 by kristico

This is a 4 week unit for a Computer Technology class in a middle school. Students are introduced to computer science concepts through lessons in Code.org's Course 3. Students then apply those concepts in SLNova projects.

An Example of CT in the Workplace

Posted May 15, 2017 by ilee

This is an example of how a computer modeler uses various aspect of computational thinking while designing, creating and using a computer model as a tool to think with.

Crosswalks

Posted May 15, 2017 by ilee

These documents are crosswalks between the National Research Council's Framework for K-12 Science Education and CSTA K-12 Computer Science Standards. They are designed to show the relationship between modeling and simulation and the scientific practices elucidated in the Standards.

Computational Thinking

Posted December 2, 2016 by turtle

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

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