The objectives of this lesson are:
* Students will know that climate change is happening most quickly in Arctic regions.
* Students will know that a warming climate is causing permafrost to thaw.
* Students will know that thawing permafrost is impacting infrastructure in Alaska, including roads and buildings.
* Students will design an engineering solution to create stable
Educator Kim Young and Researcher Christina Minions from the Winter Respiration in the Arctic Team discuss permafrost in Alaska and what climate factors are affecting it. This presentation was broadcast live from Weston, Massachusetts on 8 April 2019.
This resource is a 2-minute immersive video that takes students inside the Permafrost Research Tunnel outside of Fairbanks, Alaska. It includes footage of both the new and old sections of the tunnel.
Objectives
Through watching this video, students will get to see what permafrost looks like from the inside, identifying typical features geological features (ex. ice wedges). Through the
This lesson plan transports students to two field sites outside of Fairbanks, Alaska to investigate the interconnected relationships between climate change and permafrost. Students will use authentic field data from site photographs, soil temperature, and thaw depth measurements to draw inferences. An ESRI StoryMap, faux field journal, and 360 site images are used to engage students in the inquiry
PolarTREC is a teacher professional development program funded through the Arctic Research Consortium of the United States (ARCUS) and National Science Foundation (NSF). PolarTREC pairs middle and high school teachers with scientific research teams to allow them to “study-abroad” as a scientific team member authentically integrated into polar (Arctic or Antarctic) field science. The PolarTREC experience facilitates
Video created by PolarTREC teacher Kate Miller on her experience working with researcher Dr. Jim Madsen and other teachers with the Upward Bound Program in July 2017 in Rivers Falls, Wisconsin.
This lesson was created by Rebecca Harris after being a part of the Arctic Glacial Lakes PolarTREC Expedition. She was inspired by how important suspended sediment, something so often overlooked by non scientists, was for developing paleoclimate models as well as ecosystems. Students will observe a watershed or a model of a watershed to make predictions about what might
This lesson plan was created by after being a part of the Arctic Glacial Lakes PolarTREC Expedition. I was inspired by the massive amount of data collected over the course of the research project and the complexity of hydrology in glaciated and non-glaciated basins in the Brooks Range of Alaska. Students will work together to make hypotheses about patterns
Kate Miller & Katey Shirey co-presented at the National Science Teachers Association (NSTA) Regional Conference in Milwaukee, WI. Our presentation was entitled "Living & Working at the South Pole" and was part of the "Physics Day" set of IceCube-related presentations. About 100 people attended with several questions at the end.
In August 2017, I spent two weeks at Lake Peters, in the Arctic National Wildlife Refuge. My team included Darrell Kaufman, project co-PI and Professor in the School of Earth Sciences & Environmental Sustainability, Ellie Broadman, graduate student and PolarTREC researcher, and graduate student Chris Benson, all of Northern Arizona University. Our research was part of the final