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Atlas of the Central Metasedimentary Belt Bedrock Geology in Southern Ontario: LiDAR-Derived Digital Outcrops, 3D Hand Samples, Petrography, and Geochemistry
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LiDAR-Derived Digital Outcrops, 3D Hand Samples, Petrography, and Geochemistry

Short Description:
Classic Central Metasedimentary Belt of the Grenville outcrops are revealed in this image-dense geological reference book. Each site is complete with 3D models of outcrops, rock samples, and virtual thin sections. Geochemical data is also available for some samples. High resolution images of thin sections and more detailed descriptions are available to post-secondary instructors upon request.

Word Count: 5365

(Note: This resource's metadata has been created automatically by reformatting and/or combining the information that the author initially provided as part of a bulk import process.)

Subject:
Geology
Physical Science
Material Type:
Textbook
Provider:
University of Toronto
Provider Set:
U. Toronto Scarborough Department of Physical and Environmental Sciences
Date Added:
02/28/2022
Atlas of the Pacific Northwest
Unrestricted Use
Public Domain
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This 2018 edition is the first to be released in a digital, fully-interactive format, designed to highlight facets of the Pacific Northwest landscape with novel approaches to data presentation. Where previous editions of the atlas were designed to ask and answer questions, this atlas serves as a platform for the geographically curious to explore the region, providing as many critical questions as it does critical answers.

Beyond this page are maps of the familiar and the unfamiliar. Migration maps highlight human movement between the Pacific Northwest and the rest of the United States; a wildfire timeline chronicles the year-to-year spread of modern and historical fires; and the watershed guide abandons traditional political boundaries in favor of natural, hydrological borders. All data in the atlas were gathered from publically accessible sources, compiled using open-source software and coding libraries. This is an atlas designed to be open, responsive, and to satisfy the geographic curiosity of any and all interested.

Subject:
Physical Geography
Physical Science
Material Type:
Data Set
Author:
Institute for Natural Resources
Oregon State University Libraries and Press
Date Added:
10/30/2018
Atmosphere, Ocean and Climate Dynamics
Conditional Remix & Share Permitted
CC BY-NC-SA
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This undergraduate class is designed to introduce students to the physics that govern the circulation of the ocean and atmosphere. The focus of the course is on the processes that control the climate of the planet.
Acknowledgments
Prof. Ferrari wishes to acknowledge that this course was originally designed and taught by Prof. John Marshall.

Subject:
Applied Science
Atmospheric Science
Engineering
Environmental Science
Oceanography
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Ferrari, Raffaele
Date Added:
09/01/2008
Atmosphere, Ocean and Climate Dynamics
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

"This undergraduate class is designed to introduce students to the physics that govern the circulation of the ocean and atmosphere. The focus of the course is on the processes that control the climate of the planet.AcknowledgmentsProf. Ferrari wishes to acknowledge that this course was originally designed and taught by Prof. John Marshall."

Subject:
Atmospheric Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Raffaele Ferrari
Date Added:
01/01/2008
The Atmosphere, the Ocean, and Environmental Change
Conditional Remix & Share Permitted
CC BY-NC-SA
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0.0 stars

This course explores the physical processes that control Earth's atmosphere, ocean, and climate. Quantitative methods for constructing mass and energy budgets. Topics include clouds, rain, severe storms, regional climate, the ozone layer, air pollution, ocean currents and productivity, the seasons, El Ni–o, the history of Earth's climate, global warming, energy, and water resources.

Subject:
Atmospheric Science
Physical Science
Material Type:
Full Course
Provider:
Yale University
Provider Set:
Open Yale Courses
Author:
Ronald B. Smith
Date Added:
04/30/2012
Atmospheric CO2 at Mauna Loa Observatory
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These graphs show carbon dioxide measurements at the Mauna Loa Observatory, Hawaii. The graphs display recent measurements as well as historical long term measurements. The related website summarizes in graphs the recent monthly CO2, the full CO2 Record, the annual Mean CO2 Growth Rate, and gives links to detailed CO2 data for this location, which is one of the most important CO2 tracking sites in the world.

Subject:
Applied Science
Career and Technical Education
Environmental Science
Environmental Studies
Physical Science
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
NOAA
Date Added:
09/24/2018
Atmospheric Carbon: Can We Offset the Increase?
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This is a multi-step activity that helps students measure, investigate, and understand the increase in atmospheric CO2 and the utility of carbon offsets. It also enables students to understand that carbon offsets, through reforestation, are not sufficient to balance increases in atmospheric C02 concentration.

Subject:
Atmospheric Science
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Jocelyn Boucher
Maine Maritime Academy
On the Cutting Edge
Date Added:
09/24/2018
Atmospheric Chemistry
Conditional Remix & Share Permitted
CC BY-NC-SA
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0.0 stars

This course provides a detailed overview of the chemical transformations that control the abundances of key trace species in the Earth’s atmosphere. Emphasizes the effects of human activity on air quality and climate. Topics include photochemistry, kinetics, and thermodynamics important to the chemistry of the atmosphere; stratospheric ozone depletion; oxidation chemistry of the troposphere; photochemical smog; aerosol chemistry; and sources and sinks of greenhouse gases and other climate forcers.

Subject:
Atmospheric Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Author:
Jesse Kroll
Date Added:
06/06/2022
Atmospheric Chemistry
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

This course provides a detailed overview of the chemical transformations that control the abundances of key trace species in the Earth's atmosphere. Emphasizes the effects of human activity on air quality and climate. Topics include photochemistry, kinetics, and thermodynamics important to the chemistry of the atmosphere; stratospheric ozone depletion; oxidation chemistry of the troposphere; photochemical smog; aerosol chemistry; and sources and sinks of greenhouse gases and other climate forcers.

Subject:
Applied Science
Atmospheric Science
Career and Technical Education
Environmental Science
Environmental Studies
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Kroll, Jesse
Date Added:
09/01/2013
Atmospheric Oxygen
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Educational Use
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0.0 stars

In this feature, adapted from Interactive NOVA: "Earth," students explore the relationship between oxygen concentration and the well-being of various organisms by simulating a change in oxygen levels and observing what happens.

Subject:
Geoscience
Life Science
Physical Science
Material Type:
Activity/Lab
Interactive
Provider:
PBS LearningMedia
Provider Set:
PBS Learning Media: Multimedia Resources for the Classroom and Professional Development
Author:
National Science Foundation
WGBH Educational Foundation
Date Added:
09/26/2003
Atmospheric Physics and Chemistry
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

This course provides an introduction to the physics and chemistry of the atmosphere, including experience with computer codes. It is intended for undergraduates and first year graduate students.

Subject:
Atmospheric Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
McRae, Gregory
Prinn, Ronald
Date Added:
02/01/2006
Atmospheric Processes
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This image depicts a representative subset of the atmospheric processes related to aerosol lifecycles, cloud lifecycles, and aerosol-cloud-precipitation interactions that must be understood to improve future climate predictions.

Subject:
Physical Science
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Climate Placemat: Energy-Climate Nexus
US Department of Energy
US Department of Energy Office of Science
Date Added:
10/27/2014
Atmospheric Processes and Phenomenon
Rating
0.0 stars

This textbook serves as an introduction to atmospheric science for undergraduate students and is the primary textbook for the ATMO 200: Atmospheric Processes and Phenomenon course at the University of Hawai’i at Mānoa. The book covers basic atmospheric science, weather, and climate in a descriptive and quantitative way.

Subject:
Atmospheric Science
Physical Science
Material Type:
Textbook
Author:
Alison Nugent
Christina Karamperidou
David Decou
Shintaro Russell
Date Added:
04/14/2022
Atmospheric Radiation
Conditional Remix & Share Permitted
CC BY-NC-SA
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This is an introduction to the physics of atmospheric radiation and remote sensing including use of computer codes. Subjects covered include: radiative transfer equation including emission and scattering, spectroscopy, Mie theory, and numerical solutions. We examine the solution of inverse problems in remote sensing of atmospheric temperature and composition.

Subject:
Atmospheric Science
Physical Science
Physics
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
McClatchey, Robert
Seager, Sara
Date Added:
09/01/2008
Atmospheric Radiation
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

This is an introduction to the physics of atmospheric radiation and remote sensing including use of computer codes. Subjects covered include: radiative transfer equation including emission and scattering, spectroscopy, Mie theory, and numerical solutions. We examine the solution of inverse problems in remote sensing of atmospheric temperature and composition.

Subject:
Atmospheric Science
Physical Science
Physics
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
McClatchey, Robert
Prinn, Ronald
Date Added:
09/01/2006
Atmospheric and Ocean Circulations
Conditional Remix & Share Permitted
CC BY-NC-SA
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In this course, we will look at many important aspects of the circulation of the atmosphere and ocean, from length scales of meters to thousands of km and time scales ranging from seconds to years. We will assume familiarity with concepts covered in course 12.003 (Physics of the Fluid Earth). In the early stages of the present course, we will make somewhat greater use of math than did 12.003, but the math we will use is no more than that encountered in elementary electromagnetic field theory, for example. The focus of the course is on the physics of the phenomena which we will discuss.

Subject:
Atmospheric Science
Oceanography
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Plumb, R.
Date Added:
02/01/2004
Atmospheric and Ocean Circulations
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

Survey of atmospheric and oceanic phenomena including the discussion of observations and theoretical interpretations. Topics covered include: monsoons; El Nino; planetary waves; atmospheric synoptic eddies and fronts; gulf stream rings; hurricanes; surface and internal gravity waves; and tides. In this course, we will look at many important aspects of the circulation of the atmosphere and ocean, from length scales of meters to thousands of km and time scales ranging from seconds to years. We will assume familiarity with concepts covered in course 12.003 (Physics of the Fluid Earth). In the early stages of the present course, we will make somewhat greater use of math than did 12.003, but the math we will use is no more than that encountered in elementary electromagnetic field theory, for example. The focus of the course is on the physics of the phenomena which we will discuss.

Subject:
Atmospheric Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
R. Alan Plumb
Date Added:
01/01/2004
Atmospheric and Oceanic Modeling
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

The numerical methods, formulation and parameterizations used in models of the circulation of the atmosphere and ocean will be described in detail. Widely used numerical methods will be the focus but we will also review emerging concepts and new methods. The numerics underlying a hierarchy of models will be discussed, ranging from simple GFD models to the high-end GCMs. In the context of ocean GCMs, we will describe parameterization of geostrophic eddies, mixing and the surface and bottom boundary layers. In the atmosphere, we will review parameterizations of convection and large scale condensation, the planetary boundary layer and radiative transfer.

Subject:
Applied Science
Atmospheric Science
Engineering
Mathematics
Oceanography
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Adcroft, Alistair
Emanuel, Kerry
Marshall, John
Date Added:
02/01/2004
Atmospheric concentrations of carbon dioxide, methane and nitrous oxide
Unrestricted Use
CC BY
Rating
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This is a figure from the 2007 IPCC Assessment Report 4 on atmospheric concentrations of carbon dioxide, methane and nitrous oxide over the last 10,000 years (large panels) and since 1750 (inset panels).

Subject:
Physical Science
Material Type:
Diagram/Illustration
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
IPCC (Intergovernmental Panel of Climate Change)
Date Added:
06/19/2012
Atmospheric methyl chloroform: a leaky water tank example
Conditional Remix & Share Permitted
CC BY-NC-SA
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Atmospheric methyl chloroform concentration is modeled as an extension of the generic water tank structure. Simulated and observed concentrations are used to estimate the global atmospheric lifetime of methyl chloroform and its 1989 to 2009 emission history.

(Note: this resource was added to OER Commons as part of a batch upload of over 2,200 records. If you notice an issue with the quality of the metadata, please let us know by using the 'report' button and we will flag it for consideration.)

Subject:
Atmospheric Science
Biology
Career and Technical Education
Environmental Studies
Life Science
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Bob Mackay
Date Added:
08/31/2019