Students will explore changes in Earth's atmosphere over the past few centuries, …
Students will explore changes in Earth's atmosphere over the past few centuries, then design, build, and analyze a structure that control internal temperature without using additional energy.
Students will construct a model of the carbon cycle to explore the …
Students will construct a model of the carbon cycle to explore the cycling of matter in decomposition. Students will design a process to compost food waste and recycle products used during lunchtime to reduce the amount of garbage the school produces.
In this unit of study students learn about diversity of life by …
In this unit of study students learn about diversity of life by focusing on bats. They will learn about their habitat, structures and functions, and behaviors. This unit integrates nine STEM attributes and was developed as part of the South Metro-Salem STEM Partnership's Teacher Leadership Team. Any instructional materials are included within this unit of study.
In this unit of study students learn about energy and energy transfer. …
In this unit of study students learn about energy and energy transfer. They focus on how to use energy transfer to solve a problem. This unit integrates nine STEM attributes and was developed as part of the South Metro-Salem STEM Partnership's Teacher Leadership Team. Any instructional materials are included within this unit of study.
Students will conduct a number of investigations involving density and buoyancy to …
Students will conduct a number of investigations involving density and buoyancy to understand the forces applied to objects and the resulting interactions among them.
Students will construct a model of a cell in order to identify …
Students will construct a model of a cell in order to identify organelles and their function as they build an understanding of the increasing complexity of tissues, organs, organ systems, and organisms.
Students will compare and contrast renewable and non-renewable resources, and construct an …
Students will compare and contrast renewable and non-renewable resources, and construct an argument from evidence showing how human populations affect the consumption of natural resources.
Using the mission to land a human on the Martian surface as …
Using the mission to land a human on the Martian surface as context, students will use knowledge about energy and molecular motion to build and test a simplified heat shield.
In this unit of study students learn how to design vehicles using …
In this unit of study students learn how to design vehicles using different forms of energy to solve real-world problems. This unit integrates nine STEM attributes and was developed as part of the South Metro-Salem STEM Partnership's Teacher Leadership Team. Any instructional materials are included within this unit of study.
Students will investigate the properties of matter too small to see, as …
Students will investigate the properties of matter too small to see, as well as how it behaves when present in different quantities. Students will design a procedure to measure the thickness of a thin film of oil on the surface of water.
In this unit of study, students will research topics in nanotechnology and …
In this unit of study, students will research topics in nanotechnology and attempt to identify a mystery mixture of different powders using a scanning-electron microscope. This unit integrates nine STEM attributes and was developed as part of the South Metro-Salem STEM Partnership's Teacher Leadership Team. Any instructional materials are included within this unit of study.
Students will explain the concept of diversity and calculate various ways to …
Students will explain the concept of diversity and calculate various ways to measure diversities. Students will analyze data and factors limiting a population, and evaluate human impact on biodiversity. (Note: this unit was designed for an IB Environmental Sciences course.)
Students will investigate the efficiency of photovoltaic cells, develop a physical model …
Students will investigate the efficiency of photovoltaic cells, develop a physical model of their school, and evaluate whether placing solar panels on their school would be a cost-effective solution.
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