Through a teacher demonstration using water, heat and food coloring, students see …
Through a teacher demonstration using water, heat and food coloring, students see how convection moves the energy of the Sun from its core outwards. Students learn about the three different modes of heat transfer (convection, conduction, radiation) and how they are related to the Sun and life on our planet.
This NASA site hosts a composite image of the southern lights Aurora …
This NASA site hosts a composite image of the southern lights Aurora over the South Pole. A link enables visitors to view a video of this aurora. The image of the Aurora is overlaid on a NASA ‰ÛÏBlue Marble‰Û� image also captured by satellite. Text describes the distortion of Earth‰Ûªs magnetic field by the stream of protons and electrons from the sun.
Students use scaling from real-world data to obtain an idea of the …
Students use scaling from real-world data to obtain an idea of the immense size of Mars in relation to the Earth and the Moon, as well as the distances between them. Students calculate dimensions of the scaled versions of the planets, and then use balloons to represent their relative sizes and locations.
"Callysto is a free, multimodal learning program for grades 5-12 students in …
"Callysto is a free, multimodal learning program for grades 5-12 students in Canada. The program is part of a two-year pilot project by Cybera and the Pacific Institute for Mathematical Sciences (PIMS), who received funding from the federal government’s CanCode program to build and employ new technologies that promote digital literacy and help Canada’s youth develop the foundational skills required to become the future drivers of innovation."
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Students are introduced to the International Space Station (ISS) with information about …
Students are introduced to the International Space Station (ISS) with information about its structure, operation and key experiments. The ISS itself is an experiment in international cooperation to explore the potential for humans to live in space. The space station features state-of-the-art science and engineering laboratories to conduct research in medicine, materials and fundamental science to benefit people on Earth as well as people who will live in space in the future.
Win the chance for your class to operate a Lunar Rover in …
Win the chance for your class to operate a Lunar Rover in a simulated mission. There will be Canadian rovers on the Moon by the end of this decade. Let’s Talk Science, Canadensys Aerospace, and Avalon Space have teamed up to give Canadian youth in Grades 6-9 the opportunity to learn about rover technology and how to plan missions on the Moon.
The Lunar Rover Research Challenge invites teams of students to pitch their mission plans for the chance to remotely operate a Canadensys rover in a lunar-like environment.
Welcome to the Lunar Rover Research Challenge!
The challenge is for students to design a rover mission to find frozen water at the South Pole of the Moon. The activity is structured as a collaborative board game or digital game where students are guided through the design process. They equip their rover with scientific instruments, choose a target, then determine where to take measurements.
The experience is designed around 5 lessons:
1: Learn about Canada’s role in the upcoming lunar missions and the benefits of space exploration to life on Earth 2: Review the mission brief and learn how to plan a rover mission on the Moon 3: Plan the mission using an iterative design process scaffolded as a collaborative board game 4: Communicate ideas and prepare for submission 5: Reflect on the team’s experience and the impact of space exploration on society
Set in the context of space exploration, this project develops students’ design thinking, teamwork, and communication skills. Students must design their research mission by considering pros and cons, and weighing risks and rewards.
This challenge can be completed without a submission to the competition.
Students explore Mars and Jupiter, the fourth and fifth planets from the …
Students explore Mars and Jupiter, the fourth and fifth planets from the Sun. They learn some of the unique characteristics of these planets. They also learn how engineers help us learn about these planets with the design and development of telescopes, deep space antennas, spacecraft and planetary rovers.
Students explore Mercury and Venus, the first and second planets nearest the …
Students explore Mercury and Venus, the first and second planets nearest the Sun. They learn about the planets' characteristics, including their differences from Earth. Students also learn how engineers are involved in the study of planets by designing equipment and spacecraft to go where it is too dangerous for humans.
The Mission to Mars curricular unit introduces students to Mars the Red …
The Mission to Mars curricular unit introduces students to Mars the Red Planet. Students discover why scientists are so interested in studying this mysterious planet. Many interesting facts about Mars are revealed, and the history of Martian exploration is reviewed. Students will learn about the development of robotics and how robots are beneficial to science, society and the exploration of space. Details on engineers' involvement in space exploration are presented. Furthermore, students will learn how orbits allow astronauts to move from planet to planet and what type of equipment is used by scientists and engineers to safely explore space. Lastly, the specific details on and human risks for a possible future manned mission to Mars (and back to Earth again!) are discussed.
Students learn about the Earth's only natural satellite, the Moon. They discuss …
Students learn about the Earth's only natural satellite, the Moon. They discuss the Moon's surface features and human exploration. They also learn about how engineers develop technologies to study and explore the Moon, which also helps us learn more about the Earth.
CLICK Tours & Resources to get started. Plan your visit and explore …
CLICK Tours & Resources to get started.
Plan your visit and explore tours and resources! Resources include: *downtown Saskatoon fossil tour *Birds *meteorites *Kahoot games *Science Videos *Science activities *Colouring *On Safari tour
Embark on an exhilarating journey across the cosmos as you unravel the …
Embark on an exhilarating journey across the cosmos as you unravel the intricate dance of planets, delving into the profound effects of position, mass, velocity, and distance on their celestial motions and orbits!
• Predict how the position, mass, velocity, and distance between planetary bodies affect their motion and orbits.
• Illustrate how the gravitational force controls the motions of the planets.
• Explore the different motions that a group of planetary bodies can have.
• Describe the behavior of the planet's velocity in different moments of its orbit.
Build your own system of heavenly bodies and watch the gravitational ballet. …
Build your own system of heavenly bodies and watch the gravitational ballet. With this orbit simulator, you can set initial positions, velocities, and masses of 2, 3, or 4 bodies, and then see them orbit each other.
Students learn how engineers navigate satellites in orbit around the Earth and …
Students learn how engineers navigate satellites in orbit around the Earth and on their way to other planets in the solar system. In accompanying activities, they explore how ground-based tracking and onboard measurements are performed. Also provided is an overview of orbits and spacecraft trajectories from Earth to other planets, and how spacecraft are tracked from the ground using the Deep Space Network (DSN). DSN measurements are the primary means for navigating unmanned vehicles in space. Onboard spacecraft instruments might include optical sensors and an inertial measurement unit (IMU).
The purpose of this lesson is to introduce the students to the …
The purpose of this lesson is to introduce the students to the Sun. They explore various aspects of the Sun including its composition, its interior workings, and its relationship to the Earth.
Students are introduced to the fabulous planet on which they live. Even …
Students are introduced to the fabulous planet on which they live. Even though we spend our entire lives on Earth, we still do not always understand how it fits into the rest of the solar system. Students learn about the Earth's position in the solar system and what makes it unique. They learn how engineers study human interactions with the Earth and design technologies and systems to monitor, use and care for our planet's resources wisely to preserve life on Earth.
Students explore the outermost planets of our solar system: Saturn, Uranus and …
Students explore the outermost planets of our solar system: Saturn, Uranus and Neptune. They also learn about characteristics of Pluto and its interactions with Neptune. Students learn a little about the history of space travel as well as the different technologies that engineers develop to make space travel and scientific discovery possible.
PhET Sims are now available in HTML5 as well! Simulations can be …
PhET Sims are now available in HTML5 as well!
Simulations can be sorted by subject area or grade. This is very helpful.
PhET is a collection of interactive computer simulations for teaching and learning physics, chemistry, math, and other sciences.
Simulations can be used directly on the site or downloaded and used that way.
The simulations are animated, interactive, and game-like environments where students learn through exploration. They emphasize the connections between real-life and the underlying science. These great activities help students visualize abstract concepts!
This informational, nonfiction text introduces the solar system and its many parts …
This informational, nonfiction text introduces the solar system and its many parts the sun, the eight planets, the satellites of the planets, asteroids, comets, and meteoroids. It includes models that show sizes of the planets relative to the Earth and their distances from the Sun.
The objectives of this lesson are to understand the characteristics of the …
The objectives of this lesson are to understand the characteristics of the data that is collected using the Radio JOVE antenna/receiver system. Using calibrations for the equipment, one can determine a proper measure of the peak intensity of the output, identify the duration of the solar or Jovian radio activity, and calculate the approximate total power emitted by the source. Master these concepts by completing example problems.
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