Students will learn about the difference between the methods of neutrino detection – optical versus radio. This will then allow them to understand why the relative size of the detectors is so different. Students will also engage in a hands-on activity to understand scale through creating models of the two detectors.
PolarTREC, the teacher-research program run through ARCUS (Arctic Research Consortium of the United States) and the National Science Foundation is a transformative, inspirational, and highly valuable experience for science teachers. Being provided with the opportunity to engage in authentic scientific practices allows teachers to enrich their own classroom activities and inspires the next generation of young scientists to
Lesley Anderson was connected with local California radio station KSON before and during her trip to South Pole, Antarctica as part of the PolarTREC program.
1. KSON Radio Station hosts a live interview with Lesley Anderson at the food fund in Bonita, CA.:
http://www.kson.com/media/audio-channel/john-and-tammys-food-fund-friday-bonita
2. Article in John & Tammy Blog (see downloadable article).
3. Facebook post during her stay
The Star News, a Chula Vista newspaper interviews Lesley Anderson about her experience studying neutrinos at the South Pole and her plans to bring the research back into her classroom.
2017 Antarctica Day celebration with PolarTREC teacher Lesley Anderson speaking from the South Pole, and researcher Dr. Jim Madsen discussing the IceCube Neutrino Observatory and the Askaryan Radio Array. This event was held on 4 December 2017.
This Washington Post article features PolarTREC teacher Jamie Esler from Coeur d’Alene, Idaho discussing the subject of climate change with his students in his Outdoor Studies Program.
Ground Penetrating Radar (GPR):
Seeing Below the Surface While Keeping Scientists Safe
Overview
Ground Penetrating Radar (GPR) is a valuable technology that utilizes waves of low frequency electromagnetic radiation to help polar scientists understand what is beneath their feet! Using real field data from the Icelandic glacier Múlajökull, along with a small selection of short videos and web-based resources
This lesson/project/lab has students predict via multiple drawings and time lapse photography predictive Flubber flow before the placement of barriers and other obstacles in front of the Flubber. Contour lines in two directions are drawn on both the paper prediction and the Flubber for comparison purposes.
Following predictive drawing completion glacier flow (Flubber flow), with obstacles in place
Ground penetrating radar is an important tool for studying glacier dynamics. Glacier scientists use GPR images to analyze attributes of glaciers. The following research activity will familiarize students with the basics of the different types of glaciers and their dynamics along with ground penetrating radar and its use in glacier studies.