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Mass Drug Administration -  Introduction to Antimalarial Drug Resistance (12:39)
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CC BY-NC-ND
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This presentation provides an introduction to antimalarial drug resistance. First we will focus on how drug resistance is observed and measured. Thereafter we will describe the historical emergence and spread of drug resistance. Third we will focus on molecular aspects of drug resistance, the so-called molecular markers and finally we will describe how we can use our knowledge regarding these molecular markers in the surveillance of drug resistance and eventually help in guide us in the decision-making when developing new drug policies.

Subject:
Applied Science
Health, Medicine and Nursing
Material Type:
Lecture
Provider:
University of Copenhagen
Provider Set:
Mass Drug Administration
Author:
Associate Professor Michael Alifrangis
Date Added:
01/07/2016
Mass Drug Administration -  Introduction to Antimalarial Drugs (13:50)
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CC BY-NC-ND
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This presentation provides an introduction to antimalarial drugs, different treatment and prophylaxis strategies and an overview of which drugs and drug combinations that are currently in use.

Subject:
Applied Science
Health, Medicine and Nursing
Material Type:
Lecture
Provider:
University of Copenhagen
Provider Set:
Mass Drug Administration
Author:
Associate Professor Michael Alifrangis
Date Added:
01/07/2016
Mass Drug Administration -  Lifecycle of the Malaria Parasite (02:58)
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CC BY-NC-ND
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In this presentation we will provide a brief overview of the life cycle of the malaria parasite, and hereby introduce the precise terms for the various phases.

Subject:
Applied Science
Health, Medicine and Nursing
Material Type:
Lecture
Provider:
University of Copenhagen
Provider Set:
Mass Drug Administration
Author:
Associate Professor Michael Alifrangis
Date Added:
01/07/2016
Masses & Springs
Unrestricted Use
CC BY
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A realistic mass and spring laboratory. Hang masses from springs and adjust the spring stiffness and damping. You can even slow time. Transport the lab to different planets. A chart shows the kinetic, potential, and thermal energy for each spring.

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Kathy Perkins
Michael Dubson
The Mortenson Family Foundation
Wendy Adams
Date Added:
04/26/2006
Masses & Springs (AR)
Unrestricted Use
CC BY
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A realistic mass and spring laboratory. Hang masses from springs and adjust the spring stiffness and damping. You can even slow time. Transport the lab to different planets. A chart shows the kinetic, potential, and thermal energy for each spring.

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Kathy Perkins
Michael Dubson
Wendy Adams
Date Added:
08/02/2009
Materials in Nuclear Engineering
Conditional Remix & Share Permitted
CC BY-NC-SA
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In this course, we will lay the foundation for understanding how materials behave in nuclear systems. In particular, we will build on a solid base of nuclear material fundamentals in order to understand radiation damage and effects in fuels and structural materials. This course consists of a series of directed readings, lectures on video, problem sets, short research projects, and class discussions with worked examples. We will start with an overview of nuclear materials, where they are found in nuclear systems, and how they fail. We will then develop the formalism in crystallography as a common language for materials scientists everywhere. This will be followed by the development of phase diagrams from thermodynamics, which predict how binary alloy systems evolve towards equilibrium. Then effects of stress, defects, and kinetics will be introduced. These will all be tied together when developing theories about how radiation, particularly neutrons and heavy charged particles, interact with solid matter to produce defects and evolve microstructure. A few applications of radiation effects will then be treated with this newfound framework, including the change of material properties under irradiation, void swelling, embrittlement, loss of ductility, and the simulation of in-reactor irradiation (neutrons) with heavy ions.

Subject:
Applied Science
Engineering
Environmental Science
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Short, Michael
Date Added:
02/01/2015
Math M15: Introduction to Statistics - Open For Antiracism (OFAR)
Unrestricted Use
CC BY
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The Open for Antiracism (OFAR) Program – co-led by CCCOER and College of the Canyons – emerged as a response to the growing awareness of structural racism in our educational systems and the realization that adoption of open educational resources (OER) and open pedagogy could be transformative at institutions seeking to improve. The program is designed to give participants a workshop experience where they can better understand anti-racist teaching and how the use of OER and open pedagogy can empower them to involve students in the co-creation of an anti-racist classroom. The capstone project involves developing an action plan for incorporating OER and open pedagogy into a course being taught in the spring semester. OFAR participants are invited to remix this template to design and share their projects and plans for moving this work forward. 

Subject:
Education
Material Type:
Assessment
Author:
Michael Nava
Date Added:
05/30/2023
Maze Game
Unrestricted Use
CC BY
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Learn about position, velocity, and acceleration in the "Arena of Pain". Use the green arrow to move the ball. Add more walls to the arena to make the game more difficult. Try to make a goal as fast as you can.

Subject:
Physical Science
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Michael Dubson
Mindy Gratny
Sam Reid
Wendy Adams
Date Added:
10/30/2006
Measuring Viscosity
Read the Fine Print
Educational Use
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Students calculate the viscosity of various household fluids by measuring the amount of time it takes marble or steel balls to fall given distances through the liquids. They experience what viscosity means, and also practice using algebra and unit conversions.

Subject:
Applied Science
Engineering
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Michael A. Soltys
Date Added:
09/18/2014
Mind, Body, World: Foundations of Cognitive Science
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CC BY-NC-ND
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Cognitive science arose in the 1950s when it became apparent that a number of disciplines, including psychology, computer science, linguistics, and philosophy, were fragmenting. Perhaps owing to the field’s immediate origins in cybernetics, as well as to the foundational assumption that cognition is information processing, cognitive science initially seemed more unified than psychology. However, as a result of differing interpretations of the foundational assumption and dramatically divergent views of the meaning of the term information processing, three separate schools emerged: classical cognitive science, connectionist cognitive science, and embodied cognitive science.

Subject:
Psychology
Social Science
Material Type:
Textbook
Provider:
Athabasca University
Author:
Michael Dawson
Date Added:
01/01/2013
The Missing Link
Conditional Remix & Share Permitted
CC BY-NC-SA
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Short Description:
Return to milneopentextbooks.org to download PDF and other versions of this textNewParaWeb development is an evolving amalgamation of languages that work in concert to receive, modify, and deliver information between parties using the Internet as a mechanism of delivery.NewParaWhile it is easy to describe conceptually, implementation is accompanied by an overwhelming variety of languages, platforms, templates, frameworks, guidelines, and standards. Navigating a project from concept to completion often requires more than mastery of one or two complementing languages, meaning today’s developers need both breadth, and depth, of knowledge to be effective.NewParaThis text provides the developer with an understanding of the various elements of web development by focusing on the concepts and fundamentals through the examples within, providing a foundation that allows easier transition to other languages and a better understanding of how to approach their work. The reader will be introduced to topics in a manner that follows most project development methods, from initial conceptualization and design through front end development, back end development, and introducing additional concepts like accessibility and security, while focusing on responsive design techniques. Each section of the text includes opportunities to practice the material and assess increased knowledge after examining the topics.

Long Description:
This text provides the developer with an understanding of the various elements of web development by focusing on the concepts and fundamentals through the examples within, providing a foundation that allows easier transition to other languages and a better understanding of how to approach their work. The reader will be introduced to topics in a manner that follows most project development methods, from initial conceptualization and design through front end development, back end development, and introducing additional concepts like accessibility and security, while focusing on responsive design techniques. Each section of the text includes opportunities to practice the material and assess increased knowledge after examining the topics.

Word Count: 87300

ISBN: 978-0-9897226-5-0

(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:
Applied Science
Computer Science
Information Science
Material Type:
Textbook
Provider:
State University of New York
Author:
Michael Mendez
Date Added:
10/11/2021
Models of the Hydrogen Atom
Unrestricted Use
CC BY
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How did scientists figure out the structure of atoms without looking at them? Try out different models by shooting light at the atom. Check how the prediction of the model matches the experimental results.

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Carl Wieman
Chris Malley
Kathy Perkins
Michael Dubson
Mindy Gratny
Sam McKagan
Wendy Adams
Date Added:
01/01/2007
Modern Blacksmithing and Physical Metallurgy
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CC BY-NC-SA
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Physical metallurgy encompasses the relationships between the composition, structure, processing history and properties of metallic materials. In this seminar you’ll be introduced to metallurgy in a particularly “physical” way. We will do blacksmithing, metal casting, machining, and welding, using both traditional and modern methods. The seminar meets once per week for an evening laboratory session, and once per week for discussion of issues in materials science and engineering that tie in to the laboratory work. Students will begin by completing some specified projects and progress to designing and fabricating one forged and one cast piece.

Subject:
Applied Science
Engineering
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Tarkanian, Michael
Date Added:
09/01/2008
Modern Music: 1900-1960
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CC BY-NC-SA
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This subject covers a specific branch of music history: Western concert music of first sixty years of the twentieth century. Although we will be listening to and studying many pieces (most of the highest caliber) the goal of the course is not solely to build up a repertory of works in our memory (though that is indeed a goal). We will be most concerned with larger questions of continuity and change in music. We will also consider questions of reception, or historiography - that is, the creation of history and our perception of it. Why do we perceive much of this music, so much closer in time to us than Mozart or Beethoven, to be so foreign? Is this music aloof and separate from popular music of the twentieth century or is there a real connection (perhaps hidden)? The subject will continue to follow some topics of central interest to music before 1960, such as serialism and aleatory, beyond the 1960 cutoff. Conversely a few topics which get their start just before 1960 but which flourish later (minimalism, computer music) will be covered only in 21M.263.

Subject:
Arts and Humanities
History
Performing Arts
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Asato Cuthbert, Michael
Date Added:
09/01/2006
Molecular Motors (AR)
Unrestricted Use
CC BY
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Discover what controls how fast tiny molecular motors in our body pull through a single strand of DNA. How hard can the motor pull in a tug of war with the optical tweezers? Discover what helps it pull harder. Do all molecular motors behave the same?

Subject:
Genetics
Life Science
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Chris Malley
Kathy Perkins
Meredith Betterton
Michael Dubson
Thomas Perkins
Wendy Adams
Date Added:
12/01/2007
Motion in 2D
Unrestricted Use
CC BY
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Try the new "Ladybug Motion 2D" simulation for the latest updated version. Learn about position, velocity, and acceleration vectors. Move the ball with the mouse or let the simulation move the ball in four types of motion (2 types of linear, simple harmonic, circle).

Subject:
Applied Science
Computing and Information
Mathematics
Physical Science
Physics
Technology
Material Type:
Activity/Lab
Interactive
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Michael Dubson
Sam Reid
Date Added:
11/15/2007
Motion in 2D (AR)
Unrestricted Use
CC BY
Rating
0.0 stars

Try the new "Ladybug Motion 2D" simulation for the latest updated version. Learn about position, velocity, and acceleration vectors. Move the ball with the mouse or let the simulation move the ball in four types of motion (2 types of linear, simple harmonic, circle).

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Michael Dubson
Sam Reid
Date Added:
07/02/2009
Multiresolution Signal and Geometry Processing: Filter Banks, Wavelets, and Subdivision (Textbook, Solutions Manual, and Lecture Slides)
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CC BY-NC-ND
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TEXTBOOK ABSTRACT:

This book is intended for use in the teaching of graduate and senior undergraduate courses on multiresolution signal and geometry processing in the engineering and related disciplines. It has been used for several years for teaching purposes in the Department of Electrical and Computer Engineering at the University of Victoria and has been well received by students.

This book provides a comprehensive introduction to multiresolution signal and geometry processing, with a focus on both theory and applications. The book has two main components, corresponding to multiresolution processing in the contexts of: 1) signal processing and 2) geometry processing.

The signal-processing component of the book studies one-dimensional and multi-dimensional multirate systems, considering multirate structures such as sampling-rate converters, filter banks, and transmultiplexers. A particularly strong emphasis is placed on filter banks. Univariate and multivariate wavelet systems are examined, with the biorthogonal and orthonormal cases both being considered. The relationship between filter banks and wavelet systems is established. Several applications of filter banks and wavelets in signal processing are covered, including signal coding, image compression, and noise reduction. For readers interested in image compression, a detailed overview of the JPEG-2000 standard is also provided. Some other applications of multirate systems are considered, such as transmultiplexers for communication systems (e.g., multicarrier modulation).

The geometry-processing component of the book studies subdivision surfaces and subdivision wavelets. Some mathematical background relating to geometry processing is provided, including topics such as homogeneous coordinate transformations, manifolds, surface representations, and polygon meshes. Several subdivision schemes are examined in detail, including the Loop, Kobbelt sqrt(3), and Catmull-Clark methods. The application of subdivision surfaces in computer graphics is considered.

A detailed introduction to functional analysis is provided, for those who would like a deeper understanding of the mathematics underlying wavelets and filter banks. For those who are interested in software applications of the material covered in the book, appendices are included that introduce the CGAL and OpenGL libraries. Also, an appendix on the SPL library (which was developed for use with this book) is included. Throughout the book, many worked-through examples are provided. Problem sets are also provided for each major topic covered.

Subject:
Applied Science
Engineering
Material Type:
Lecture Notes
Textbook
Provider:
University of Victoria
Author:
Michael D. Adams
Date Added:
06/27/2020
My Math GPS: Elementary Algebra Guided Problem Solving (2016 Edition)
Conditional Remix & Share Permitted
CC BY-NC-SA
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My Math GPS: Elementary Algebra Guided Problem Solving is a textbook that aligns to the CUNY Elementary Algebra Learning Objectives that are tested on the CUNY Elementary Algebra Final Exam (CEAFE). This book contextualizes arithmetic skills into Elementary Algebra content using a problem-solving pedagogy. Classroom assessments and online homework are available from the authors.

Subject:
Algebra
Mathematics
Material Type:
Textbook
Provider:
CUNY Academic Works
Provider Set:
Queensborough Community College
Author:
G. Michael Guy
Jonathan Cornick
Karan Puri
Date Added:
01/01/2016
My Solar System
Unrestricted Use
CC BY
Rating
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Build your own system of heavenly bodies and watch the gravitational ballet. With this orbit simulator, you can set initial positions, velocities, and masses of 2, 3, or 4 bodies, and then see them orbit each other.

Subject:
Astronomy
Physical Science
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Danielle Harlow
Michael Dubson
Mindy Gratny
Date Added:
11/15/2007