<?xml version='1.0' encoding='UTF-8'?><rss xmlns:dc='http://purl.org/dc/elements/1.1/' xmlns:geo='http://www.w3.org/2003/01/geo/wgs84_pos#' xmlns:media='http://search.yahoo.com/mrss/' version='2.0' xmlns:xCal='urn:ietf:params:xml:ns:xcal'><channel><title>Harvard SEAS Calendar</title><link>https://events.seas.harvard.edu/applied_physics_events/calendar</link><description>Harvard SEAS Calendar</description><lastBuildDate>Mon, 14 Sep 2026 16:25:46 -0400</lastBuildDate><ttl>120</ttl><language>en-us</language><generator>Localist</generator><item><title>Sep 18, 2026: Greg Olson: Genomic Materials Design: Making CyberSteels Fly at Maxwell Dworkin</title><description><![CDATA[<p>Sixty years of academic collaboration and thirty years of commercialization by a network of small businesses have delivered a mature technology of computational materials design and accelerated qualification grounded in the CALPHAD system of fundamental databases now known as the Materials Genome. The national Materials Genome Initiative acknowledging the reality of this technology has spurred global interest and rapid adoption by US apex corporations. Designed materials with broad market impact now span a range from consumer electronics to space exploration. Ongoing design addresses the new alloys enabling new manufacturing methods such as 3D printing as well as the materials supporting affordable approaches to sustainability. The extreme compression of the materials development cycle has already enabled materials to participate in a new level of concurrent engineering with dramatic impact in manufacturing technologies.</p>

<p> </p>

<p>Bio:</p>

<p>Greg Olson is Professor of the Practice in the Department of Materials Science &amp; Engineering at MIT. He is a co-founder of the multi-institutional NIST-supported CHiMaD Center for Hierarchical Materials Design, Director of its SRG Design Consortium, and a founder of QuesTek Innovations LLC. A member of the National Academy of Engineering, the American Academy of Arts and Sciences, the Royal Swedish Academy of Engineering Sciences, and a fellow of ASM and TMS, he has authored more than 300 publications. He received a BS and MS in 1970 and ScD in 1974 in materials science from MIT and remained there in a series of senior research positions before joining Northwestern University as Professor in 1988, where he was appointed Wilson-Cook Professor of Engineering Design in 1999, W. P. Murphy Professor in 2010, and Professor Emeritus in 2019, before returning to MIT in 2020. Recent awards include the ASM Campbell Memorial Lectureship, the Cambridge University Kelly Lectureship, the ASM Gold Medal, the TMS Morris Cohen Award, the TMS Cyril Smith Award, the TMS Weertman Educator Award, and an honorary doctorate from KTH-Stockholm.</p>

<p><a href="https://events.seas.harvard.edu/event/greg-olson-genomic-materials-design-making-cybersteels-fly">View on site</a> | <a href="mailto:?subject=I+found+an+interesting+event%3A+Greg+Olson%3A+Genomic+Materials+Design%3A+Making+CyberSteels+Fly&amp;body=I+found+an+interesting+event+you+may+like%3A%0A%0A%0ADate%3A+Sep+18%2C+2026%0A%0ADescription%3A%0ASixty+years+of+academic+collaboration+and+thirty+years+of+commercialization+by+a+network+of+small+businesses+have+delivered+a+mature+technology+of+computational+materials+design+and+accelerated+qualification+grounded+in+the+CALPHAD+system+of+fundamental+databases+now+known+as+the+Materials+Genome.+The+national+Materials+Genome+Initiative+acknowledging+the+reality+of+this+technology+has+spurred+global+interest+and+rapid+adoption+by+US+apex+corporations.+Designed+materials+with+broad+market+impact+now+span+a+range+from+consumer+electronics+to+space+exploration.+Ongoing+design+addresses+the+new+alloys+enabling+new+manufacturing+methods+such+as+3D+printing+as+well+as+the+materials+supporting+affordable+approaches+to+sustainability.+The+extreme+compression+of+the+materials+development+cycle+has+already+enabled+materials+to+participate+in+a+new+level+of+concurrent+engineering+with+dramatic+impact+in+manufacturing+technologies.%0A%0A+%0A%0ABio%3A%0A%0AGreg+Olson+is+Professor+of+the+Practice+in+the+Department+of+Materials+Science+%26+Engineering+at+MIT.+He+is+a+co-founder+of+the+multi-institutional+NIST-supported+CHiMaD+Center+for+Hierarchical+Materials+Design%2C+Director+of+its+SRG+Design+Consortium%2C+and+a+founder+of+QuesTek+Innovations+LLC.+A+member+of+the+National+Academy+of+Engineering%2C+the+American+Academy+of+Arts+and+Sciences%2C+the+Royal+Swedish+Academy+of+Engineering+Sciences%2C+and+a+fellow+of+ASM+and+TMS%2C+he+has+authored+more+than+300+publications.+He+received+a+BS+and+MS+in+1970+and+ScD+in+1974+in+materials+science+from+MIT+and+remained+there+in+a+series+of+senior+research+positions+before+joining+Northwestern+University+as+Professor+in+1988%2C+where+he+was+appointed+Wilson-Cook+Professor+of+Engineering+Design+in+1999%2C+W.+P.+Murphy+Professor+in+2010%2C+and+Professor+Emeritus+in+2019%2C+before+returning+to+MIT+in+2020.+Recent+awards+include+the+ASM+Campbell+Memorial+Lectureship%2C+the+Cambridge+University+Kelly+Lectureship%2C+the+ASM+Gold+Medal%2C+the+TMS+Morris+Cohen+Award%2C+the+TMS+Cyril+Smith+Award%2C+the+TMS+Weertman+Educator+Award%2C+and+an+honorary+doctorate+from+KTH-Stockholm.%0A%0Ahttps%3A%2F%2Fevents.seas.harvard.edu%2Fevent%2Fgreg-olson-genomic-materials-design-making-cybersteels-fly%0A">Email this event</a></p>]]></description><guid isPermaLink='false'>tag:localist.com,2008:EventInstance_53887578468335</guid><geo:lat>42.378796</geo:lat><geo:long>-71.117354</geo:long><pubDate>Fri, 18 Sep 2026 12:00:00 -0400</pubDate><dc:date>2026-09-18T12:00:00-04:00</dc:date><link>https://events.seas.harvard.edu/event/greg-olson-genomic-materials-design-making-cybersteels-fly</link><media:content medium='image' url='https://localist-images.azureedge.net/photos/53887578511353/huge/c446b12fba83329c1c08e99c7c9db5ae58753448.jpg'/><category>Colloquia / Seminar / Lecture</category></item><item><title>Sep 25, 2026: Sung Hoon Kang: Materials That Learn from Load:  Growing and Architecting Matter That Improves Under Stress at Cruft</title><description><![CDATA[<p>Engineering materials are selected for fixed properties and then protected with safety factors, because repeated loading degrades them. Living structural materials do the opposite: bone senses mechanical loading and converts it into mineral deposition where stiffness is needed, while coral self-stiffens as waves cement its skeleton. This talk asks whether synthetic materials can likewise use mechanical loading itself as the signal that improves them and presents two complementary routes toward that goal.</p>

<p> </p>

<p>The first route grows material in response to load. Cyclic loading of piezoelectric scaffolds in an electrolyte generates surface charges that drive mineralization in proportion to stress. The resulting composites gain both stiffness and energy-dissipation capacity under the very cyclic loading that would normally fatigue them, and the growth is self-limiting, with a saturation thickness set by the applied force. Recent results show that force also controls the nucleation density, crystallization kinetics, and hardness of the mineral, pointing to mechanical energy as a general lever for directing crystallization.</p>

<p> </p>

<p>The second route architects the response to load. Lattices built from liquid crystal elastomers couple snap-through buckling of tilted beams with the rate-dependent soft elasticity of mesogen rotation. The result is a reusable energy-absorbing metamaterial whose dissipation rises with strain rate by a power law and reaches densities comparable to those of plastically deforming metals.</p>

<p> </p>

<p>Together, these results outline a path toward structural materials that adapt, reinforce, and protect autonomously, with implications ranging from orthopedic implants and marine structures to protective equipment and soft robotics.</p>

<p> </p>

<p>Biography</p>

<p> </p>

<p>Sung Hoon Kang is an Associate Professor in the Department of Materials Science and Engineering at the Korea Advanced Institute of Science and Technology (KAIST), where he directs the Bioinspired Extreme Materials Laboratory, the NRF-Korea Center for Variable-Property Material-Based Neural Interface Robotics, and the NRF-Korea Center for AI-Designed Biomimetic Self-Concentrating Rare Earth Selective Recovery Platform. He is a Brain Pool Plus Fellow of the National Research Foundation of Korea. Before joining KAIST, he was an Assistant Professor in the Department of Mechanical Engineering at Johns Hopkins University, with appointments in the Hopkins Extreme Materials Institute and the Institute for NanoBioTechnology. He received his Ph.D. in Applied Physics from Harvard University, his M.S. in Materials Science and Engineering from MIT, and his B.S. in Materials Science and Engineering from Seoul National University.</p>

<p> </p>

<p>His research addresses current challenges in engineering materials, structures, and devices for resilience, sensing, energy, and healthcare, with a focus on coupled material–mechanical systems. His group combines numerical modeling, nano-to-macroscale fabrication and 3D printing, three-dimensional structural, material, and mechanical characterization, and in vitro and in vivo testing. His work has been supported by AFOSR, NSF, NIH, ARO, ONR, the National Research Foundation of Korea, the State of Maryland, Hyundai Motor Group, and private foundations. He has co-authored 75 papers, holds eight U.S. patents, and has given more than 270 presentations, including over 190 invited talks.</p>

<p> </p>

<p>His honors include the National Research Foundation of Korea Brain Pool Plus Fellowship (2024), the Nano Research Young Innovator Award (2023), the Hanwha Non-Tenured Faculty Award (2022), Air Force Summer Faculty Fellowships (2020 and 2021), the Johns Hopkins University Catalyst Award (2020), the Johns Hopkins Whiting School of Engineering Research Lab Excellence Award (2019), the Air Force Office of Scientific Research Young Investigator Program Award (FY2018), and the Materials Research Society Graduate Student Gold Award (2011). He has been invited to the National Academies' U.S. Frontiers of Engineering (2016), China-America Frontiers of Engineering (2019), and inaugural U.S.-Africa Frontiers of Science, Engineering, and Medicine symposia.</p>

<p> </p>

<p>He is a member of MRS, APS, ASME, SPIE, ECS, and SES, and has served as Chair, Vice Chair, Secretary, and Editor of the ASME Technical Committee on Mechanics of Soft Materials.</p>

<p><a href="https://events.seas.harvard.edu/event/sung-hoon-kang-materials-that-learn-from-load-growing-and-architecting-matter-that-improves-under-stress">View on site</a> | <a href="mailto:?subject=I+found+an+interesting+event%3A+Sung+Hoon+Kang%3A+Materials+That+Learn+from+Load%3A++Growing+and+Architecting+Matter+That+Improves+Under+Stress&amp;body=I+found+an+interesting+event+you+may+like%3A%0A%0A%0ADate%3A+Sep+25%2C+2026%0A%0ADescription%3A%0AEngineering+materials+are+selected+for+fixed+properties+and+then+protected+with+safety+factors%2C+because+repeated+loading+degrades+them.+Living+structural+materials+do+the+opposite%3A+bone+senses+mechanical+loading+and+converts+it+into+mineral+deposition+where+stiffness+is+needed%2C+while+coral+self-stiffens+as+waves+cement+its+skeleton.+This+talk+asks+whether+synthetic+materials+can+likewise+use+mechanical+loading+itself+as+the+signal+that+improves+them+and+presents+two+complementary+routes+toward+that+goal.%0A%0A+%0A%0AThe+first+route+grows+material+in+response+to+load.+Cyclic+loading+of+piezoelectric+scaffolds+in+an+electrolyte+generates+surface+charges+that+drive+mineralization+in+proportion+to+stress.+The+resulting+composites+gain+both+stiffness+and+energy-dissipation+capacity+under+the+very+cyclic+loading+that+would+normally+fatigue+them%2C+and+the+growth+is+self-limiting%2C+with+a+saturation+thickness+set+by+the+applied+force.+Recent+results+show+that+force+also+controls+the+nucleation+density%2C+crystallization+kinetics%2C+and+hardness+of+the+mineral%2C+pointing+to+mechanical+energy+as+a+general+lever+for+directing+crystallization.%0A%0A+%0A%0AThe+second+route+architects+the+response+to+load.+Lattices+built+from+liquid+crystal+elastomers+couple+snap-through+buckling+of+tilted+beams+with+the+rate-dependent+soft+elasticity+of+mesogen+rotation.+The+result+is+a+reusable+energy-absorbing+metamaterial+whose+dissipation+rises+with+strain+rate+by+a+power+law+and+reaches+densities+comparable+to+those+of+plastically+deforming+metals.%0A%0A+%0A%0ATogether%2C+these+results+outline+a+path+toward+structural+materials+that+adapt%2C+reinforce%2C+and+protect+autonomously%2C+with+implications+ranging+from+orthopedic+implants+and+marine+structures+to+protective+equipment+and+soft+robotics.%0A%0A+%0A%0ABiography%0A%0A+%0A%0ASung+Hoon+Kang+is+an+Associate+Professor+in+the+Department+of+Materials+Science+and+Engineering+at+the+Korea+Advanced+Institute+of+Science+and+Technology+%28KAIST%29%2C+where+he+directs+the+Bioinspired+Extreme+Materials+Laboratory%2C+the+NRF-Korea+Center+for+Variable-Property+Material-Based+Neural+Interface+Robotics%2C+and+the+NRF-Korea+Center+for+AI-Designed+Biomimetic+Self-Concentrating+Rare+Earth+Selective+Recovery+Platform.+He+is+a+Brain+Pool+Plus+Fellow+of+the+National+Research+Foundation+of+Korea.+Before+joining+KAIST%2C+he+was+an+Assistant+Professor+in+the+Department+of+Mechanical+Engineering+at+Johns+Hopkins+University%2C+with+appointments+in+the+Hopkins+Extreme+Materials+Institute+and+the+Institute+for+NanoBioTechnology.+He+received+his+Ph.D.+in+Applied+Physics+from+Harvard+University%2C+his+M.S.+in+Materials+Science+and+Engineering+from+MIT%2C+and+his+B.S.+in+Materials+Science+and+Engineering+from+Seoul+National+University.%0A%0A+%0A%0AHis+research+addresses+current+challenges+in+engineering+materials%2C+structures%2C+and+devices+for+resilience%2C+sensing%2C+energy%2C+and+healthcare%2C+with+a+focus+on+coupled+material%E2%80%93mechanical+systems.+His+group+combines+numerical+modeling%2C+nano-to-macroscale+fabrication+and+3D+printing%2C+three-dimensional+structural%2C+material%2C+and+mechanical+characterization%2C+and+in+vitro+and+in+vivo+testing.+His+work+has+been+supported+by+AFOSR%2C+NSF%2C+NIH%2C+ARO%2C+ONR%2C+the+National+Research+Foundation+of+Korea%2C+the+State+of+Maryland%2C+Hyundai+Motor+Group%2C+and+private+foundations.+He+has+co-authored+75+papers%2C+holds+eight+U.S.+patents%2C+and+has+given+more+than+270+presentations%2C+including+over+190+invited+talks.%0A%0A+%0A%0AHis+honors+include+the+National+Research+Foundation+of+Korea+Brain+Pool+Plus+Fellowship+%282024%29%2C+the+Nano+Research+Young+Innovator+Award+%282023%29%2C+the+Hanwha+Non-Tenured+Faculty+Award+%282022%29%2C+Air+Force+Summer+Faculty+Fellowships+%282020+and+2021%29%2C+the+Johns+Hopkins+University+Catalyst+Award+%282020%29%2C+the+Johns+Hopkins+Whiting+School+of+Engineering+Research+Lab+Excellence+Award+%282019%29%2C+the+Air+Force+Office+of+Scientific+Research+Young+Investigator+Program+Award+%28FY2018%29%2C+and+the+Materials+Research+Society+Graduate+Student+Gold+Award+%282011%29.+He+has+been+invited+to+the+National+Academies%27+U.S.+Frontiers+of+Engineering+%282016%29%2C+China-America+Frontiers+of+Engineering+%282019%29%2C+and+inaugural+U.S.-Africa+Frontiers+of+Science%2C+Engineering%2C+and+Medicine+symposia.%0A%0A+%0A%0AHe+is+a+member+of+MRS%2C+APS%2C+ASME%2C+SPIE%2C+ECS%2C+and+SES%2C+and+has+served+as+Chair%2C+Vice+Chair%2C+Secretary%2C+and+Editor+of+the+ASME+Technical+Committee+on+Mechanics+of+Soft+Materials.%0A%0Ahttps%3A%2F%2Fevents.seas.harvard.edu%2Fevent%2Fsung-hoon-kang-materials-that-learn-from-load-growing-and-architecting-matter-that-improves-under-stress%0A">Email this event</a></p>]]></description><guid isPermaLink='false'>tag:localist.com,2008:EventInstance_53868510551434</guid><geo:lat>42.377723</geo:lat><geo:long>-71.116951</geo:long><pubDate>Fri, 25 Sep 2026 12:00:00 -0400</pubDate><dc:date>2026-09-25T12:00:00-04:00</dc:date><link>https://events.seas.harvard.edu/event/sung-hoon-kang-materials-that-learn-from-load-growing-and-architecting-matter-that-improves-under-stress</link><media:content medium='image' url='https://localist-images.azureedge.net/photos/53868510595478/huge/029a0ad3fea105e1de5120614956c033fed0d2ac.jpg'/><category>Colloquia / Seminar / Lecture</category></item><item><title>Oct 2, 2026: Itai Cohen: Electronically Integrated Autonomous Microscopic Robots at Maxwell Dworkin</title><description><![CDATA[<p>What would we be able to do if we could build electronically integrated machines the at a scale of 100 microns? At this scale, semiconductor devices are small enough that we could put the computational power of the spaceship Voyager onto a machine that could be injected into the body. Such robots could have on board detectors, power sources, and processors that enable them to sense, interact, and control their local environment. In this talk I will describe several cutting edge technologies we are developing to achieve this vision. </p>

<p> </p>

<p>Bio: </p>

<p>Professor Itai Cohen is a pioneer in the fields of microscopic robotics and origami inspired metamaterials. His work helped establish the field of origami metamaterials and its application in microscopic robotics where his group holds the Guinness World Record for the smallest walking robot.  More broadly, his research is highly interdisciplinary and also includes investigations of viscosity metamaterials, mechanical phase transitions in biological fiber networks, and the neuromuscular instantiation of control in insect flight. </p>

<p> </p>

<p>Professor Cohen received his BS in Physics from the University of California at Los Angeles, and his PhD in Physics from the University of Chicago. Following his graduate studies, he was a Post-doctoral fellow in Physics and the Division of Engineering and Applied Science at Harvard University. In 2005 he joined Cornell and is currently a professor of Physics. Professor Cohen is an NSF Career grant recipient, he is a Fellow of the American Physical Society, and is the recipient of the Kappa Delta Ann Doner Vaughn Award for his work on cartilage mechanics. He has served as a Feinberg and Braginsky fellow (2012) and the Rosi and Max Varon Visiting Professor at the Weizmann Institute (2021) and the van der Waals Visiting Professor at the University of Amsterdam (2022). He has published over 140 research articles, given over 300 invited seminars, colloquia and conference presentations, and co-authored the book Finding Your Research Voice: Story Telling and Theater Skills for Bringing Your Presentation to Life. His work has been covered by various outlets including the BBC, Scientific American, Forbes, NPR, and the NYTimes. He also holds the Guinness world record for making the smallest walking robot.</p>

<p><a href="https://events.seas.harvard.edu/event/itai-cohen-electronically-integrated-autonomous-microscopic-robots">View on site</a> | <a href="mailto:?subject=I+found+an+interesting+event%3A+Itai+Cohen%3A+Electronically+Integrated+Autonomous+Microscopic+Robots&amp;body=I+found+an+interesting+event+you+may+like%3A%0A%0A%0ADate%3A+Oct+2%2C+2026%0A%0ADescription%3A%0AWhat+would+we+be+able+to+do+if+we+could+build+electronically+integrated+machines+the+at+a+scale+of+100+microns%3F+At+this+scale%2C+semiconductor+devices+are+small+enough+that+we+could+put+the+computational+power+of+the+spaceship+Voyager+onto+a+machine+that+could+be+injected+into+the+body.+Such+robots+could+have+on+board+detectors%2C+power+sources%2C+and+processors+that+enable+them+to+sense%2C+interact%2C+and+control+their+local+environment.+In+this+talk+I+will+describe+several+cutting+edge+technologies+we+are+developing+to+achieve+this+vision.+%0A%0A+%0A%0ABio%3A+%0A%0AProfessor+Itai+Cohen+is+a+pioneer+in+the+fields+of+microscopic+robotics+and+origami+inspired+metamaterials.+His+work+helped+establish+the+field+of+origami+metamaterials+and+its+application+in+microscopic+robotics+where+his+group+holds+the+Guinness+World+Record+for+the+smallest+walking+robot.++More+broadly%2C+his+research+is+highly+interdisciplinary+and+also+includes+investigations+of+viscosity+metamaterials%2C+mechanical+phase+transitions+in+biological+fiber+networks%2C+and+the+neuromuscular+instantiation+of+control+in+insect+flight.+%0A%0A+%0A%0AProfessor+Cohen+received+his+BS+in+Physics+from+the+University+of+California+at+Los+Angeles%2C+and+his+PhD+in+Physics+from+the+University+of+Chicago.+Following+his+graduate+studies%2C+he+was+a+Post-doctoral+fellow+in+Physics+and+the+Division+of+Engineering+and+Applied+Science+at+Harvard+University.+In+2005+he+joined+Cornell+and+is+currently+a+professor+of+Physics.+Professor+Cohen+is+an+NSF+Career+grant+recipient%2C+he+is+a+Fellow+of+the+American+Physical+Society%2C+and+is+the+recipient+of+the+Kappa+Delta+Ann+Doner+Vaughn+Award+for+his+work+on+cartilage+mechanics.+He+has+served+as+a+Feinberg+and+Braginsky+fellow+%282012%29+and+the+Rosi+and+Max+Varon+Visiting+Professor+at+the+Weizmann+Institute+%282021%29+and+the+van+der+Waals+Visiting+Professor+at+the+University+of+Amsterdam+%282022%29.+He+has+published+over+140+research+articles%2C+given+over+300+invited+seminars%2C+colloquia+and+conference+presentations%2C+and+co-authored+the+book+Finding+Your+Research+Voice%3A+Story+Telling+and+Theater+Skills+for+Bringing+Your+Presentation+to+Life.+His+work+has+been+covered+by+various+outlets+including+the+BBC%2C+Scientific+American%2C+Forbes%2C+NPR%2C+and+the+NYTimes.+He+also+holds+the+Guinness+world+record+for+making+the+smallest+walking+robot.%0A%0Ahttps%3A%2F%2Fevents.seas.harvard.edu%2Fevent%2Fitai-cohen-electronically-integrated-autonomous-microscopic-robots%0A">Email this event</a></p>]]></description><guid isPermaLink='false'>tag:localist.com,2008:EventInstance_53922395936961</guid><geo:lat>42.378796</geo:lat><geo:long>-71.117354</geo:long><pubDate>Fri, 02 Oct 2026 12:00:00 -0400</pubDate><dc:date>2026-10-02T12:00:00-04:00</dc:date><link>https://events.seas.harvard.edu/event/itai-cohen-electronically-integrated-autonomous-microscopic-robots</link><media:content medium='image' url='https://localist-images.azureedge.net/photos/53922410031085/huge/037c9fc4ed080516d75fcfe639f1c5d9be424014.jpg'/><category>Colloquia / Seminar / Lecture</category></item></channel></rss>