{"type":"rich","version":"1.0","provider_name":"Transistor","provider_url":"https://transistor.fm","author_name":"Undercooled: A Materials Education Podcast","title":"Patrick Shamberger and MS&E at Texas A&M","html":"<iframe width=\"100%\" height=\"180\" frameborder=\"no\" scrolling=\"no\" seamless src=\"https://share.transistor.fm/e/6ce1e1ae\"></iframe>","width":"100%","height":180,"duration":3654,"description":"Steve and Tim talk to Prof. Patrick Shamberger from the MS&E department at Texas A&M.  He tells us the story of how he helped build a new materials department and create a new curriculum for their students.  He also talks about his research in phase change materials and how they may be one of the keys to a sustainable energy future.\nYou can learn more about Patrick here:  https://engineering.tamu.edu/materials/profiles/pshamberger.html\nYou can learn more about Patrick’s research here:https://phate.tamu.edu/\nYou can learn more about the Texas A&M Materials Science and Engineering department here:https://engineering.tamu.edu/materials/index.html\nPatrick also runs an REU program that is still recruiting!\nhttps://engineering.tamu.edu/materials/undergraduate-research/index.html \nBio:  Dr. Patrick Shamberger has a background in functional inorganic materials, including interests in phase transformations, crystal structure/property relationships, and thermodynamics. These have been applied to a range of problems on both natural (geological) and engineered systems. Currently, he is an associate professor with the Department of Materials Science and Engineering at Texas A&M University, College Station. Prior to this, he served as a materials research engineer for the Air Force Research Lab in the Nanoelectronic Materials Branch (AFRL/RXAN) and Thermal Sciences and Materials Branch (AFRL/RXBT). His areas of focus at AFRL were in the areas of plasma-assisted deposition processes for high-mobility nanocrystalline oxide films, and in reducing the variability of oxide-based resistance switches. Previous efforts have included development of rapid, low-temperature thermal storage based on phase change, physisorption, and chemical dissociation processes. Patrick Shamberger received his Ph.D. in Materials Science & Engineering from the University of Washington in 2010, an M.S. in Geology & Geophysics from the University of Hawaii in 2004, and a B.S.E. in Civil & Environmental...","thumbnail_url":"https://img.transistorcdn.com/g2EsO1ILBLAgFepjiCqMBP0OSuw9JzwBnZA48P34OjA/rs:fill:0:0:1/w:400/h:400/q:60/mb:500000/aHR0cHM6Ly9pbWct/dXBsb2FkLXByb2R1/Y3Rpb24udHJhbnNp/c3Rvci5mbS9zaG93/LzQ5MjQ0LzE3MDY2/NDE3ODYtYXJ0d29y/ay5qcGc.webp","thumbnail_width":300,"thumbnail_height":300}