Teaching Activities
Earth education activities from across all of the sites within the Teach the Earth portal.
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- College Introductory 10 matches
College Lower (13-14)
8 matches General/OtherOnline Readiness
Resource Type: Activities
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Geoscience > Geology > Geochemistry > Radioisotopes
18 matchesActivity Review
Results 1 - 10 of 18 matches
"ZirChron" Virtual Zircon Analysis App part of Petrology:Teaching Examples
Mark Schmitz, Boise State University
This web-based app is designed to help students evaluate a radioisotopic age and its uncertainty based upon the collection of data, the application of statistics, and the interpretation of geological and analytical ...
Resource Type: Activities: Computer Applications, Activities:Lab Activity, Classroom Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Geochemistry, Volcanology, Igneous Processes, Igneous Associations and Tectonic Settings, Metamorphic Processes, Geoscience:Geology:Geochemistry:Radioisotopes, Geoscience:Geology:Tectonics
Activity Review: Peer Reviewed as Exemplary
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Calculating Rb-Sr Isochrons part of Petrology:Teaching Examples
Andy Barth, Indiana University-Purdue University-Indianapolis
This is a spreadsheet that I use in petrology to walk students through calculating Rb-Sr isochrons and talking about isotope heterogeneity and sampling at various scales. The example exercise is the Tuolumne ...
Resource Type: Activities: Activities:Lab Activity, Datasets and Tools:Datasets, Activities:Problem Set, Computer Applications
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Igneous Rocks, Geoscience:Geology:Geochemistry:Radioisotopes, Geochemical Analysis, Geoscience:Geology:Igneous and Metamorphic Petrology:Geochemistry
Activity Review: Passed Peer Review
Modeling U-Series Concordia/Discordia Using STELLA part of Rates and Time:GSA Activity Posters
Kirsten Menking, Vassar College
U-Series dating techniques are widely used to determine the absolute ages of some of Earth's oldest rocks, but the concordia/discordia diagram can be quite difficult for students to grasp. I have produced a STELLA-based lab exercise to develop students' understanding of this important chronologic technique. Students create models of the two isotopic decay systems and run these models to create the concordia diagram. They then carry out experiments in which they "add" or "remove" varying amounts of lead or uranium in simulation of metamorphism. In the course of the lab, students are introduced to the concepts of exponential decay and secular equilibrium as well as modeling concepts such as the creation of if-then statements.
Resource Type: Activities: Activities
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Metamorphic Processes, Geoscience:Geology:Historical Geology, Geochemistry:Radioisotopes
Half Life Model part of Starting Point-Teaching Entry Level Geoscience:Interactive Lecture Demonstrations:Examples
David N. Steer (steer@uakron.edu)and Kyle Gray (krg10@uakron.edu), University of Akron
This material is based upon work supported by the National Science Foundation under Grant No. GEO-0506518.
While working in groups to facilitate peer tutoring, students manipulate a hands-on, physical model to better comprehend the nature of half life. Students use the model to simulate the decay of radionuclides. The ...
Resource Type: Activities: Activities, Classroom Activity:Short Activity:Demonstration
Subject: Geoscience:Geology:Geochemistry:Radioisotopes, Geoscience:Geology:Geochemistry
Activity Review: Peer Reviewed as Exemplary
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Understanding Radioactivity in Geology: The Basics of Decay part of Quantitative Skills:Activity Collection
Christina Stringer—University of South Florida, Tampa FL 33620
This activity was developed for Spreadsheets Across the Curriculum. National Science Foundation, DUE 0442629.
PowerPoint module leading students through creation and manipulation of spreadsheet to forward model an example of exponential decay—the number of remaining unpopped kernels of popcorn in a bag of popping popcorn.
Resource Type: Activities: Activities:Lab Activity, Classroom Activity, Problem Set
Subject: Geoscience:Geology:Geochemistry:Radioisotopes, Education, Geoscience:Geology:Historical Geology
Activity Review: Peer Reviewed as Exemplary
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Exploring Radiometric Dating with Dice part of Quantitative Skills:Activity Collection
Carla Whittington derived from Baer (1999)
Related Links Radioactive Decay ProbabilityExponential Growth and Decay
An activity in which students use dice to explore radioactive decay and dating and make simple calculations.
Resource Type: Activities: Activities:Classroom Activity:Short Activity:Demonstration, Activities:Lab Activity
Subject: Mathematics, Geoscience:Geology:Geochemistry:Radioisotopes
Activity Review: Passed Peer Review
Demonstration of radioactive decay using pennies part of Quantitative Skills:Activity Collection
Jennifer Wenner, University of Wisconsin-Oshkosh
A demonstration (with full class participation) to illustrate radioactive decay by flipping coins. Shows students visually the concepts of exponential decay, half-life and randomness. Works best in large classes -- the more people, the better.
Resource Type: Activities: Activities:Classroom Activity:Short Activity:Demonstration
Subject: Geoscience:Geology:Historical Geology, Geochemistry:Radioisotopes
Activity Review: Passed Peer Review
Application of Sr Isotopic Data to Tuolumne Intrusive Series, Sierra Nevada, CA part of Petrology:Teaching Examples
Jeff Tepper, University of Puget Sound
In this problem set students are given Rb/Sr and 87Sr/86Sr data for whole rock and mineral samples from three granitic intrusions in the Sierra Nevada. They use these data (in EXCEL) to calculate isochron ages and ...
Resource Type: Activities: Activities:Problem Set, Lab Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Geochemistry, Igneous Processes, Geoscience:Geology:Igneous and Metamorphic Petrology, Geochemistry:Radioisotopes, Geoscience:Geology
Activity Review: Passed Peer Review
Rb-Sr isotope in-class exercise part of Petrology:Teaching Examples
Allen Glazner
This set of problems involves calculations of changes in radiogenic isotope ratios. It requires students to understand the concept of an isochron and how isotope ratios change (or do not change) during magma mixing ...
Resource Type: Activities: Activities:Lab Activity, Classroom Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Geochemistry, Thermodynamics and Phase Equilibria, PTt Relationships, Geoscience:Geology:Geochemistry:Radioisotopes, Geoscience:Geology
Activity Review: Passed Peer Review
Using Dynamic Digital Maps to Teach Petrology part of Petrology:Teaching Examples
Christopher D. Condit
In this session we will examine how to utilize Dynamic Digital Maps (DDMs) in undergraduate petrology courses to bring inaccessible and exciting volcanic field areas to the students in the classroom and to engage ...
Resource Type: Activities: Audio/Visual:Maps, Datasets and Tools:Datasets with Tools, Computer Applications, Datasets and Tools:Datasets with Teaching Activities, Activities:Lab Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Geochemistry, Volcanology, Geoscience:Geology:Geochemistry:Radioisotopes, Geoscience:Geology:Igneous and Metamorphic Petrology:Igneous Processes, Igneous Associations and Tectonic Settings, Geoscience:Geology, Geology:Tectonics, Geochemistry:Elements, Geochemical Analysis
Activity Review: Peer Reviewed as Exemplary
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