WEBVTT

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[music]

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<v Sheryl Burgstahler> I'm Sheryl Burgstahler
at the University of Washington in Seattle.

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We on our campus,
like other campuses,

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produce tons of documents
to share with our students.

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Copies of PowerPoint presentations,

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of journal articles, of book chapters,
you name it.

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<v Krista Greear> If we
extrapolate heavily,

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UW offered about 13,000 courses
in fall quarter.

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And doing the math of 600 pages
per each of those classes,

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it was about 7.8 million
pages of content.

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<v Melinda McRae> This is the course pack
for one of our courses

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so these are all the collected readings
that the students have

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for the quarter.

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<v Sheryl> It can be a massive
amount of reading for any student.

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It's even more of a challenge
for students with disabilities.

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[Sound of documents
coming out of copy machine]

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<v Terrill Thompson> Everybody
creates documents

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and most people don't realize
that all documents are not <i>equal</i>,

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that some are more accessible
than others.

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<v Sheryl> Students who are blind use
screen readers and speech synthesis

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to read the contents aloud to them
that appears on the screen.

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Students with dyslexia and other
conditions that impact their reading,

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they use screen readers, too.

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Even though they can see
the content on the screen,

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the voice output helps them
comprehend that content.

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But assistive technology benefits
many other students as well.

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<v Krista> Perhaps they have arthritis
where they can't manipulate a physical book.

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Or they can't carry the weight
of the books on their back

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so they're really just looking
for an electronic-only version.

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Perhaps the student
might also have low vision

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where they need to have an
electronic version that can be enlarged.

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<v Melinda> Say you have a class
of a hundred students

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and you give out the course materials
to 90 of those students

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and the other 10 students
you just say

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“Oh, too bad, you can't
read these materials.”

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And that's really how bad
it can be in some classes

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if the materials haven't
been made accessible.

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[Music]

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<v Sheryl> The most inaccessible
documents are scanned in or photocopied.

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Because they are essentially images,
screen readers can't access the text.

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<v Melinda> Here's an example
of a really bad photocopy.

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You can see it's got underlines,
there's been notations made on it.

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<v Sheryl> Our
disability services office

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provides accommodations for
students with disabilities.

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But some departments and colleges,
like our School of Social Work,

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have stepped up to be proactive

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in providing accessibly designed
documents to their students.

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<v Melinda> It's
actually converting this,

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which is technically an image,
into a piece of text.

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<v Sheryl> A scanner, accompanied by
optical character recognition or OCR,

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can turn a document into one that is
accessible to a screen reader.

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It also benefits other students,
for instance,

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somebody using a mobile device
to access the content,

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or someone who wants to
search through the content

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to find the content
that they're interested in.

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<v Melinda> The one,
I think, really good thing

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that is coming out of this
is as we're developing

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these old image files
into text files,

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I think it actually helps
all the students

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because some of these things
were pretty unreadable

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just as they were.

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<v Shelby> My name
is Shelby Keith.

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This is my senior year at
the University of Washington.

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I have dyslexia and dysgraphia and
I was diagnosed at the age of seven

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so I've always had a challenge with it
but I've learned to overcome it.

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<v Sheryl> Shelby uses a screen reader
to access documents in her courses,

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even a Turkish language course.

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[screen reader reading Turkish language]

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<v Shelby> When I'm
just reading it myself,

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it takes me a lot longer.

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I get lost in the text.

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I have trouble paying attention,
so it really does help

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and it makes it so that I can
complete the task at hand.

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<v Krista> She's in a program
that requires a lot of reading

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like every quarter she's
reading 10 books on average

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-- a ton of reading.

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So for her volume is huge.

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And so she really utilizes
the audio components

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where she has a file,
pulls it up on her computer,

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says computer, read this part
of the file or read the whole thing

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and then the computer will
speak the words to her.

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So for that, that helps her
to have access to the content

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and it also helps her to get
through the amount of content

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that she needs to read.

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<v Shelby> There was another quarter where
actually all of the documents that I wanted,

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that I needed to use,
were inaccessible.

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And it was to the point
where I would OCR them

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but then they wouldn't
be OCR’d correctly

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because there was some sort of
lock on the files.

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So then I would have to go online,

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figure out something or talk to
some of the support staff here

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to figure out how do I
unlock the files

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so that it’s in a legible format
where all of the paragraphs are intact.

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<v Glynis Weaver> Previously
in my career

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I studied public health

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at the Master’s level

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and that's when I was
diagnosed with ADHD.

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<v Sheryl> Even after obtaining her
physician's assistant degree,

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Glynis Weaver continues to
use accessible documents.

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Krista Greear early
on was the one

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who helped her find assistive
technology to do so.

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<v Krista> And what about using
electronic books like on a Kindle?

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Are there additional benefits
from that?

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<v Glynis> There are
additional benefits.

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The fact that you can
highlight a word

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that you are unclear on
the definition or the context

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and it populates the
information right there.

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It prevents you from going on a
fruitless search for the definition.

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<v Sheryl> Posting inaccessible documents

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can create a real challenge
to students who are blind.

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[Music]

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<v Cynthia> It's very frustrating
when I need to read an article for a class

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or for my research and I'm trying
three or four different methods

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to make a PDF accessible and
sometimes it just doesn't work.

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<v Sheryl> Additional
steps are needed

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to make documents accessible
to people who are blind.

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For example, you need text alternatives
for graphic images.

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And you need to format
the headings.

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This would be in PowerPoint presentations,
in documents created in Microsoft Word, etc.

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[Music]

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In order for a document to be accessible

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to a person who is blind
and using a screen reader,

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it's important that the heading structure
be used.

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For example, in Microsoft Word

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you should use the heading styles.

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<v Terrill> Headings serve
a couple of important functions

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for a screen reader user.

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One is that they can navigate
through a document by its headings,

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so they can jump from heading
to heading to heading

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and their assistive technology
will inform them

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that they're on a heading
of a particular level

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so they know this
is a Heading Level 2.

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That then is a subheading
underneath a Heading Level 1

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and so that helps them to develop a
kind of a mental outline

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of the structure of the document.

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With most screen readers they can do that
just by pressing the ‘H’ key

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to jump to the first heading.

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<v screen reader> Introduction to Physics
Course Syllabus Heading Level 1.

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<v Terrill> And if I press ‘H’ again…

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<v screen reader> Textbook
Heading Level 2.

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<v Terrill> And again.

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<v screen reader> Course Objectives
Heading Level 2.

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Class schedule,
Heading Level 2.

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Grades,
Heading Level 2.

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<v Hadi Rangin> My name
is Hadi Rangin.

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I am the information technology
accessibility specialist

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at the University of Washington.

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<v Sheryl> Hadi’s an expert,
but he's also a user of accessible technology.

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<v Hadi> For a few seconds
you skim through the document,

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you just want to know what is in
this document.

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How is it built?

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What are the major components
of this article that you are reading?

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This helps you to focus on the desired section
that you would like to study further.

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Without that you have to read top to bottom
because everything has the same weight.

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<v Sheryl> Sighted users use visual cues
like bold headings to navigate a document.

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But for someone using a screen reader,
if the heading structure is not used,

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they will just get a big string of text.

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Nothing stands out.

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[Music]

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<v Sheryl> Diagrams and photos can be
made accessible in a variety of ways.

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<v Cynthia> Alternative text actually tells

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a person who can't see the image
exactly what is in the image.

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<v Sheryl> Nearly all authoring tools

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provide options for providing
alternative text.

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If that's not provided, then a person
who's blind and using a screen reader

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will not be able to access the content
presented in that image.

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<v Terrill> Here’s what we hear.

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<v screen reader> Graphic photo.

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<v Terrill> So it identifies it as a graphic,
and the only alt text is "photo"

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which obviously doesn’t communicate
the essence of this image.

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The sighted user gets a lot more out of this
than a screen reader user does.

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<v Sheryl> An example of a way
to do this in Microsoft Word

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is to right-click on the image
and then select format picture

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and then under alternative text, to type in
the text that would fully describe that image

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for someone who can't actually see it.

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<v Terrill> Now I press arrow
to go to the image.

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<v screen reader> Graphic: side by side comparison
of two photos of McCarty Glacier in Alaska.

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In 1909 the massive glacier stretched to the
horizon.

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<v Sheryl> Making a document accessible
does not affect its visual appeal or its integrity.

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<v Terrill> Anybody
who's creating a document

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really needs to do that legwork upfront
to be sure the document is accessible.

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<v Melinda> The percentage of students

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who actually request an accommodation
is much, much, much lower

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than the actual number of students
who have a disability of some sort

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so we may have a request
from one student for a class

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and you can almost guess

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that there's probably two
other students in that class

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who will benefit
from the accommodation.

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<v Sheryl> It's easier
to build in accessibility

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when a document’s being created
than waiting until after the fact.

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And if you build in accessibility,
it will diminish the need

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for accommodations
for students with disabilities.

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For more information on IT accessibility, consult

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www.uw.edu/accessibility

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This video was created with funding from UW Information Technology.

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Copyright 2016 University of Washington

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Permission is granted to copy these materials for noncommercial educational purposes

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provided the source is acknowledged.

