Science Fusion Curriculum
Students should be comfortable with basic math formulas using radicals, exponents, and fractions. The tests are only 5 questions long and generally make the child think and apply the concepts presented in the lesson. I have a 7yo with cerebral palsy and autism spectrum disorder and the interactive curriculums seems to work well for him.
This course focuses on the interactions between matter and energy found in Earth systems, and how different systems affect the biosphere. Students learn the foundation of most scientific topics, such the periodic table, atomic structure, and types of energy. They apply those principles to study the composition of the Earth, particularly properties of rocks and minerals.
While lessons deal with the same concept, they each present the material in a different context. Students can read, write, view pictures, listen to audio presentations, watch videos, engage in activities, work independently, or work collaboratively. Students will learn the basics behind core ideas in the physical sciences – physics, chemistry, astronomy, and life sciences. Each year of the middle school Integrated Science sequence covers topics in Earth, Life, and Physical science, as well as integrates technology and computer skills. Students learn about our solar system and space, life processes, and basic chemistry principles in their third year of middle school lab science.
Robust STEM opportunities include real-world challenges, hands-on activities, and Video-based Projects, and Careers in Science or People in Science profiles get students thinking about pursuing their own STEM careers. Lab Manuals (6–8) support the full range of labs with data sheets, safety notes, tips for modification, and more. Digital lessons offer technology-enhanced questions with interactivity like drag and drop, match, and more.
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It is very important to us that he has an education that meets NGSS and this does it and does it well. ScienceFusion is a comprehensive print and digital curriculum solution that provides multimodal options for teachers to engage students in exciting, investigation-based learning. This effective, research-based program is easy to implement and fun for teachers and for students.
For example, magnetic confinement research facilities in the United States and United Kingdom have helped researchers better understand how to sustain fusion reactions and even generate power from them. This progress motivated the international collaboration on the ITER experiment, which aims to build and operate a burning plasma experiment based on a magnetic confinement concept called a tokamak. The U.S. contribution to ITER is managed by the Fusion Energy Sciences program within the Office of Science. Once built, ITER will be the world’s largest international scientific research facility. A new spiraled curriculum on Technology and Coding has been added for Grades 1–8, and Kindergarten has a new Technology and Engineering section.
Support for fusion continues in the Department of Energy Office of Science, which directs continuing research on the scientific basis for plasma confinement and other fusion-energy-related areas. The DOE fusion energy program helps researchers coordinate across the many fundamental sciences that are involved with fusion, including plasma physics, nuclear engineering, and advanced scientific computing. Scientists can create conditions for fusion with various techniques that use a variety of magnetic, electrical, and other methods to shape and control plasma.