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  <title><![CDATA[MS Defense by Akash Talyan]]></title>
  <body><![CDATA[<p><strong>THE SCHOOL OF INDUSTRIAL DESIGN&nbsp;</strong></p>

<p><strong>GEORGIA INSTITUTE OF TECHNOLOGY&nbsp;</strong></p>

<p>Under the provisions of the regulations for the degree</p>

<p>&nbsp;</p>

<p><strong>MASTER OF INDUSTRIAL DESIGN&nbsp;</strong></p>

<p>&nbsp;</p>

<p><strong>on Tuesday, April 12, 2022</strong></p>

<p><strong>7:00 AM &ndash; 9:00 AM</strong></p>

<p><strong>Via&nbsp;​​<a href="https://gatech.zoom.us/j/91879899785?pwd=OVR4OFNFMUxRUTRtMW85TUtpcWZMQT09">https://gatech.zoom.us/j/91879899785?pwd=OVR4OFNFMUxRUTRtMW85TUtpcWZMQT09</a></strong>​​</p>

<p>&nbsp;</p>

<p>Meeting ID: 918 7989 9785</p>

<p>Passcode: 847234</p>

<p>&nbsp;</p>

<p><strong>will be held the&nbsp;</strong></p>

<p>&nbsp;</p>

<p><strong>THESIS DEFENSE</strong></p>

<p>&nbsp;</p>

<p><strong>for&nbsp;</strong></p>

<p>&nbsp;</p>

<p><strong>Akash Talyan</strong></p>

<p><strong>Functional Materials: Investigating ways to make rigid prototyping materials flexible and sensible leveraging with computing technologies</strong></p>

<p>&nbsp;</p>

<p><strong>Advisor:&nbsp;</strong></p>

<p><strong>Dr. Hyun Joo, Assistant Professor, Schools of Industrial Design and Interactive Computing</strong></p>

<p>&nbsp;</p>

<p><strong>Committee:&nbsp;</strong></p>

<p><strong>Dr. Wei Wang, Adjunct Professor, School of Industrial Design, Georgia Tech &amp; Professor, School of Design, Hunan University, China</strong></p>

<p><strong>Dr. Clement Zheng, Assistant Professor, School of Industrial Design, National University of Singapore</strong></p>

<p>&nbsp;</p>

<p><strong>Faculty and students are invited to attend this presentation.</strong></p>

<p>&nbsp;</p>

<p>&nbsp;</p>

<p><strong>Abstract:&nbsp;</strong></p>

<p>This thesis presents a fabrication tool-kit developed through a material-driven inquiry to make the rigid prototyping material flexible and augment their sensing capability by combining them with the conductive substrate material. In this study, we present how different&nbsp;<em>Kirigami</em>&nbsp;<em>(a Japanese term to describe cutting, folding and bending flat sheets of paper into three-dimensional forms)&nbsp;</em>patterns when applied to rigid prototyping materials like chipboard, wood and acrylic can create flexible free form surfaces. Additionally, it shows how adding the conductive substrate like carbon and nickel can add sensing behavior providing affordances for various tangible interactions.&nbsp;</p>

<p>&nbsp;</p>

<p>In this thesis, we discuss different design parameters that can be taken into consideration while using the proposed tools and techniques. Various emerging creative possibilities were explored using the tools and techniques with a group of experienced designers through a co-design workshop. From our user study, we discovered that the tool-kit supports implementing electronics at the craft level seamlessly, and this empowers designers in exploring tangible interaction design.</p>

<p>&nbsp;</p>

<p>&nbsp;</p>
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