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Engineering and Empathy: Teaching the Engineering Design Process through Assistive Devices
Read the Fine Print
Educational Use
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Students follow the steps of the engineering design process (EDP) while learning about assistive devices and biomedical engineering. They first go through a design-build-test activity to learn the steps of the cyclical engineering design process. Then, during the three main activities (7 x 55 minutes each) student teams are given a fictional client statement and follow the EDP steps to design products an off-road wheelchair, a portable wheelchair ramp, and an automatic floor sweeper computer program. Students brainstorm ideas, identify suitable materials and demonstrate different methods of representing solutions to their design problems scale drawings or programming descriptions, and simple models or classroom prototypes.

Subject:
Applied Science
Engineering
Health, Medicine and Nursing
Material Type:
Full Course
Unit of Study
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Jared R. Quinn
Kristen Billiar
Terri Camesano
Date Added:
09/18/2014
Ethical Use of Technology in Digital Learning Environments: Graduate Student Perspectives
Unrestricted Use
CC BY
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Short Description:
This book is the result of a co-design project in a class in the Masters of Education program at the University of Calgary. The course, and the resulting book, focus primarily on the safe and ethical use of technology in digital learning environments. The course was organized according to four topics based on Farrow’s (2016) Framework for the Ethics of Open Education.This is the first of 2 Versions of this pressbook. Click on Volume 2 for information.

Long Description:
This book is the result of a co-design project in a class in the Masters of Education program at the University of Calgary. The course, and the resulting book, focus primarily on the safe and ethical use of technology in digital learning environments. The course was organized according to four topics based on Farrow’s (2016) Framework for the Ethics of Open Education. Students were asked to review, analyze, and synthesize each topic from three meta-ethical theoretical positions: deontological, consequentialist, and virtue ethical (Farrow, 2016). The chapters in this open educational resource (OER) were co-designed using a participatory pedagogy with the intention to share and mobilize knowledge with a broader audience. The first three chapters in the book discuss specific ethical considerations related to technologies such as Artificial Intelligence (AI) , social networking services (SNS), and 3D printing. The next four chapters shift to a broader discussion of resource sharing, adaptive learning systems, STEM, and assistive technologies. The final two chapters discuss admissions and communications that need to be considered from an institutional perspective. In each of the nine chapters, the authors discuss the connection to the value of technology in education, and practical possibilities of learning technologies for inclusive, participatory, democratic, and pluralistic educational paradigms.

Word Count: 56853

ISBN: 0-88953-438-1

(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
Arts and Humanities
Business and Communication
Communication
Computer Science
Education
Higher Education
Philosophy
Special Education
Visual Arts
Material Type:
Textbook
Provider:
University of Calgary
Author:
Barbara Brown
Michele Jacobsen
Verena Roberts
Date Added:
12/28/2020
Ethical Use of Technology in Digital Learning Environments: Graduate Student Perspectives, Volume 2
Unrestricted Use
CC BY
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Short Description:
This book is the result of a co-design project in a class in the Masters of Education program at the University of Calgary. The course, and the resulting book, focus primarily on the safe and ethical use of technology in digital learning environments. The course was organized according to four topics based on Farrow’s (2016) Framework for the Ethics of Open Education.

Long Description:
Click on Volume 1 to read the first book in this series.

This book is the result of a co-design project in a class in the Masters of Education program at the University of Calgary. The course, and the resulting book, focus primarily on the safe and ethical use of technology in digital learning environments, and is the second volume in the series. The course was organized according to four topics based on Farrow’s (2016) Framework for the Ethics of Open Education. Students were asked to review, analyze, and synthesize each topic from three meta-ethical theoretical positions: deontological, consequentialist, and virtue ethical (Farrow, 2016). The chapters in this open educational resource (OER) were co-designed using a participatory pedagogy with the intention to share and mobilize knowledge with a broader audience. The first section, comprised of four chapters, focuses on topics relating to well-being in technology-enabled learning environments, including the use of web cameras, eproctoring software, video games, and access to broadband connectivity. The second section focuses on privacy and autonomy of learners and citizens in a variety of contexts from schools to clinical settings. In each of the seven chapters, the authors discuss the connection to the value of technology in education, and practical possibilities of learning technologies for inclusive, participatory, democratic, and pluralistic educational paradigms. The book concludes with reflections from the course instructor gained over two iterations of teaching the course.

Word Count: 40312

ISBN: 978-0-88953-472-8

(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
Arts and Humanities
Business and Communication
Communication
Computer Science
Education
Higher Education
Philosophy
Special Education
Visual Arts
Material Type:
Textbook
Provider:
University of Calgary
Author:
Christie Hurrell
David Luinstra
Dr Barbara Brown Dr Verena Roberts Dr Michele Jacobsen Christie Hurrell Nicole Neutzling Mia Travers-hayward
Dr Michele Jacobsen
Dr Verena Roberts
Lindsay Humphreys
Mia Travers-hayward
Michael Maciach
Nicole Neutzling
Rob Hendrickson
Date Added:
12/23/2021
Framing the Future of Learning with Technology
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Framing the Future of Learning with Technology
The goal of the Center on Inclusive Technology & Education Systems (CITES) is to empower school districts to create and sustain inclusive technology systems that serve all students, including students with disabilities who require assistive technology or accessible educational materials. To do this work, we are creating and disseminating a framework of evidence-based practices to enhance the successful use of technology by all students. We provide technical assistance to districts, educators, and families to ensure that students with disabilities are able to use the technology tools they need to foster learning and life success.

Subject:
Education
Special Education
Material Type:
Primary Source
Author:
Center on Inclusive Technology and Education System
CAST
Date Added:
08/15/2022
ICT-AID Competency Framework
Conditional Remix & Share Permitted
CC BY-SA
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The main objective of the MADA ICT-AID competency framework is to provide the community with a framework that can be used as a template to assist educational institutions, organizations and individuals in delimiting the required relevant competencies in the ICT accessibility and inclusive design field. This framework can help in creating learning resources and teaching materials on ICT accessibility and inclusive design, and also to make other courses accessible.

Subject:
Special Education
Material Type:
Lesson Plan
Student Guide
Syllabus
Author:
Mohamed Koutheair Khribi
Date Added:
10/19/2021
IEP Teams' Guide to AEM in Oregon
Conditional Remix & Share Permitted
CC BY-NC-SA
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0.0 stars

Inclusion of all learners in classrooms begins with access to curriculum. Diverse learners include those who have a perceptual or reading disability, are blind, visually impaired or are unable to hold or manipulate a printed book. Federal and Oregon regulations require all materials for these eligible persons to be made available in alternative formats such as digital or recorded text, braille, or large print, captioning and video description to ensure Accessible Educational Materials (AEM) are provided in a timely manner and at the same time as non-disabled peers. Accessible versions of educational materials can turn learning barriers into learning opportunities. This guide was developed to assist IEP, 504 and other student support teams in Oregon to determine whether a student requires accessible formats of their educational materials, ways to acquire and provide them and strategies for their use across educational environments.

Subject:
Special Education
Material Type:
Primary Source
Author:
OTAP-RSOI Programs
Gayl Bowser
Oregon Open Learning
Date Added:
04/08/2024
The Importance for Families to Understand How AEM Can Create Possibilities in Education
Only Sharing Permitted
CC BY-NC-ND
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This interactive and conversational session will focus on increasing awareness of AEM to families of students who receive special education. We’ll talk about barriers that can impede access, such as ableism and bias, and how increasing their knowledge can support their advocacy so their youth receive access and accommodations that create opportunities and possibilities!

Subject:
Special Education
Material Type:
Primary Source
Author:
OTAP-RSOI Programs
Date Added:
05/09/2024
Inclusive Educational Practices-Creation of a Lesson Plan
Conditional Remix & Share Permitted
CC BY-NC-SA
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This module is part of a course on Inclusive Educational Practices that offers professional development for educators who aspire to provide a supportive learning environment for dyslexic and with learning difficulties learners.Students have different needs, interests, and abilities. In order to effectively teach them and provide them with rich learning experiences, lesson plans need to be as diverse as they are. This module aims to help educators analyze different learning styles and accordingly build  their lesson plans as to embrace and support not only the needs of specific learners but provide quality education for all students. To this end, tools, articles, guidelines, videos, and examples are provided. Planning a lesson for an inclusive classroom entails less modifications for future use in a different learning context, facilitates a substitute to take over the class, and ensures learning for every child."It is not the disabilities of the students that prevent the implementation of a long effective instructional model, but the environment that is disabling"                               Katz, 2015 

Subject:
Education
Material Type:
Module
Author:
Chrysoula Lazou
Date Added:
11/07/2018
Inclusive Education in Oregon: Exploring Resources to Empower Access for All Learners
Conditional Remix & Share Permitted
CC BY-NC-SA
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This eighth and final session takes a look at the materials developed by the Oregon AEM Cohort. We will dive into the archived resources in the cohort OER Commons communications page. Join us as we explore the IEP Teams’ Guide to Accessible Educational Materials in Oregon and Advocating for My Accessible Educational Materials: An AEM Guide for Students. You too can be an AEM evangelist as we partner to dismantle barriers and empower learners across the lifespan through access to their education and their dreams.

Subject:
Education
Special Education
Material Type:
Primary Source
Author:
OTAP-RSOI Programs
Debra Fitzgibbons
Toni Nickell
Date Added:
05/22/2024
Inclusive Spectrums
Unrestricted Use
CC BY
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Preliminary Research Exhibition

Short Description:
This exhibition presents the preliminary major research project ideas of OCAD University’s Inclusive Design 2019/2021 cohort. These projects explore a spectrum of themes, ranging from healthcare, to sensory experiences, to storytelling and services for cultural communities, to neurodiversity, and finally, to design practices and processes themselves.

Word Count: 28442

(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
Architecture and Design
Arts and Humanities
Business and Communication
Career and Technical Education
Computer Science
Education
English Language Arts
Film and Music Production
Graphic Arts
Graphic Design
History
Information Science
Social Science
Special Education
Material Type:
Textbook
Date Added:
08/09/2020
Introduction to Assistive Technologies
Conditional Remix & Share Permitted
CC BY-SA
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This course entitled “Introduction to Assitive Technology Typesand Categories" was prepared and designed by Mada Center, Qatar. It is part of the program : "Introduction to ICT Accessibility and Inclusive Design".

Subject:
Applied Science
Career and Technical Education
Computing and Information
Education
Engineering
Social Science
Social Work
Technology
Material Type:
Lesson
Author:
Mada center
Date Added:
05/01/2023
Introduction to Technology Integration
Conditional Remix & Share Permitted
CC BY-NC
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The goal of this module is to give teachers an overview of the basic considerations concerning integrating technology in the classroom to meet the needs of all learners.
Users:
Higher Education Instructors: This module could be integrated into a content area course or used as a mini course on technology integration.
Librarians: This module could be used as an in-service tool to introduce teachers to technology integration, library resources and how the librarian and teacher can work together to select, implement, and assess technology to enhance student learning.
Self-Paced Study: Anyone can work through the module at their own pace for professional development.

The goal of this module is to give teachers an overview of the basic considerations concerning integrating technology in the classroom to meet the needs of all learners.

The learner will assess their access to technology and their personal beliefs and attitudes about technology.
Learning Objectives

The learner will examine two models of technology integration.

TPACK - Technological Pedagogical Content Knowledge

SAMR Model of Technology Integration

The Common Core Standards that are related to technology and digital media will be examined.

Learners will choose a common core standard that suggests using technology and/or digital sources of information and identify technology(s) that will support the standard and enhance the learning environment. The focus will be on selecting technology for the content area (TK and CK) and determine the level of SAMR addressed in the application of the technology

Learners will reflect on best practices for maximizing using technology

Learners will use a technology evaluation rubric to evaluate a technology tool selected to meet a specific learning goal.

Learners will examine the important considerations regarding ethical and safe use of technology and Internet use.

Learners will examine and evaluate the “Privacy Policy” of two educational game companies.

Learners will develop a Technology Integration Professional Development Plan that will include their areas of need and a timeline and resources (network/PLC).

Subject:
Educational Technology
Elementary Education
Higher Education
Special Education
Material Type:
Module
Author:
Paula Lombardi
Date Added:
09/21/2015
Mada ICT-AID Competency Framework
Conditional Remix & Share Permitted
CC BY-SA
Rating
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ICT accessibility and inclusive design is considered as a relevant and essential topic that needs to be well covered and integrated within capacity building, training and education curricula and programmes. Despite this urgent need, there is a lack of integration of ICT-AID aligned courses in educational institutions and professional development services based on a comprehensive Global competency framework delimiting all required relevant competencies and capabilities in the field of ICT accessibility and Inclusive Design. It is in this context that Mada center has developed an open competency framework in a bid to guide globally training of students and workers on ICT accessibility and inclusive design, so that they will be well prepared to excel in their accessibility professions and contribute in the creation of accessible products, contents and services.

Subject:
Education
Material Type:
Lesson Plan
Syllabus
Author:
Mohamed Koutheair Khribi
Date Added:
02/12/2023
Off-Road Wheelchair Challenge
Read the Fine Print
Educational Use
Rating
0.0 stars

Students further their understanding of the engineering design process (EDP) while being introduced to assistive technology devices and biomedical engineering. They are given a fictional client statement and are tasked to follow the steps of the EDP to design and build small-scale, off-road wheelchair prototypes. As part of the EDP, students identify appropriate materials and demonstrate two methods of representing solutions to their design problem (scale drawings and simple scale models). They test the scale model off-road wheelchairs using spring scales to pull the prototypes across three different simulated off-road surfaces.

Subject:
Applied Science
Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Jared R. Quinn
Kristen Billiar
Terri Camesano
Date Added:
09/18/2014
Partnering with Oregon's Statewide Assistive Technology Program for Successful Outcomes
Only Sharing Permitted
CC BY-NC-ND
Rating
0.0 stars

The process of leaving the support systems put in place by our high school can sometimes be difficult to navigate. As AT Specialists, we have a wealth of experience in assisting and witnessing the varied paths people take to find meaningful work and/or post-high school education after leaving high school. This presentation focuses on the technology that has opened doors for people that have successfully transitioned to the adult world.

Subject:
Special Education
Material Type:
Primary Source
Author:
OTAP-RSOI Programs
Date Added:
05/09/2024
Personlizing the Reading Experience
Conditional Remix & Share Permitted
CC BY-SA
Rating
0.0 stars

Information and video tutorials to help teachers and students take advantage of built-in features, apps and extensions on a variety of devices to support a personalized and accessible reading experience for everyone.

Subject:
Education
Educational Technology
Material Type:
Module
Provider:
CAST
Author:
National AEM Center at CAST
Date Added:
07/22/2020
Portable Wheelchair Ramp Challenge
Read the Fine Print
Educational Use
Rating
0.0 stars

Students follow the steps of the engineering design process while learning more about assistive devices and biomedical engineering applied to basic structural engineering concepts. Their engineering challenge is to design, build and test small-scale portable wheelchair ramp prototypes for fictional clients. They identify suitable materials and demonstrate two methods of representing design solutions (scale drawings and simple models or classroom prototypes). Students test the ramp prototypes using a weighted bucket; successful prototypes meet all the student-generated design requirements, including support of a predetermined weight.

Subject:
Applied Science
Engineering
Health, Medicine and Nursing
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Jared R. Quinn
Kristen Billiar
Terri Camesano
Date Added:
09/18/2014