28130 research outputs found
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WNBA Island
Created by a 6th grade student from York Middle School in York.https://digitalcommons.usm.maine.edu/mapmaking-contest-2025/1265/thumbnail.jp
Duggan Isle
Created by a 6th grade student from York Middle School in York.https://digitalcommons.usm.maine.edu/mapmaking-contest-2025/1285/thumbnail.jp
Rock Island
Created by a 5th grade student from Great Salt Bay School in Damariscotta.https://digitalcommons.usm.maine.edu/mapmaking-contest-2025/1296/thumbnail.jp
Fairy Island
Created by a 4th grade student from Harriett Beecher Stowe School in Brunswick, ME in Brunswick.https://digitalcommons.usm.maine.edu/mapmaking-contest-2025/1325/thumbnail.jp
USM Teaching Symposium 2025_03
https://digitalcommons.usm.maine.edu/usm-faculty-teaching-symposium-gallery-2025/1002/thumbnail.jp
Comparing Medicaid Enrolment Death Data to State-Wide Death Records in Maine
(1) To compare the date of death of Medicaid enrollees in Maine according to the Medicaid enrolment data to the date of death obtained through an ongoing quarterly death certificate-Medicaid linkage for 2016–2023; and (2) using the death certificate-Medicaid linkage data, to perform an analysis of the risk of drug overdose death in 2023 by opioid use disorder (OUD) status in 2023, as part of monitoring activities required for one of Maine\u27s new approaches to delivering Medicaid services
Maxwell\u27s Third Equation: the Faraday\u27s Law
Faraday\u27s Law states that the voltage induced in a closed loop is equal to the rate of change of magnetic flux through that loop. As we know, when there is no fluctuating magnetic flux, there is no voltage difference across a closed loop. But when there is a changing magnetic field, a voltage is induced within a closed loop known as the electromotive force or the EMF. There are two types of electromotive forces: the motional EMF and the transformer EMF. In motional EMF the magnetic field is kept steady while the loop is moved such that it cuts the magnetic field varying the total magnetic flux through the coil, similar to a dynamo. In transformer EMF, the loop or the coil is kept stationary while an alternating current is run through the coils to generating a time-varying magnetic field. The Faraday\u27s Law has the most number of applications out of all Maxwell\u27s Equations. The applications of the Faraday\u27s Law include, induction cooking, wireless power transfer, metal detectors, electromagnetic breaks and all forms of eddy current applications. The eddy currents are current loops formed on metalic surfaces when exposed to a time-varying magnetic field. In the following video Dr. Maxworth explains the Faraday\u27s Law and and the point form of Maxwell\u27s equations. Then you may proceed to the worksheets on mutually coupled transmission lines and wireless power transfer.https://digitalcommons.usm.maine.edu/oer_engineering_maxworth_emfields/1003/thumbnail.jp
[A group photo of men with a wall of deer heads taxidermized]
Copy of photograph 54322.0003https://digitalcommons.usm.maine.edu/hamilton-thayer-photographs/1006/thumbnail.jp
John Richards, Ed. Lowell Warden
Two men posing behind a deer carcass in a woodland area. Man on the left is holding a canehttps://digitalcommons.usm.maine.edu/hamilton-thayer-photographs/1020/thumbnail.jp
[Photograph of a deer]
Photograph of a deer standing in front of evergreenhttps://digitalcommons.usm.maine.edu/hamilton-thayer-photographs/1027/thumbnail.jp