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Internal Seminar

Internal Seminar | LUCS : Lund University Cognitive Science 1 Apr Internal Seminar 1 April 2025 11:00 to 12:00 Other LUCS Internal Seminar. Starts 11 (sharp). Not open for visitors. Share http://www.lucs.lu.se/seminar//internal-seminar-2 About the event: 1 April 2025 11:00 to 12:00 Location: LUX:C212 Lynnéum (Personalmatsalen) Contact: annika.wallin lucs.lu se Save the event to your calendar

https://www.lucs.lu.se/seminar/Seminars%20in%20Cognitive%20Science/internal-seminar-2/ - 2025-01-31

Kate Devlin

Kate Devlin | LUCS : Lund University Cognitive Science 25 Mar Kate Devlin 25 March 2025 10:15 to 11:30 Seminar Open for external guests. Please request access to Zoom link in advance if participating virtually. Share http://www.lucs.lu.se/seminar//kate-devlin About the event: 25 March 2025 10:15 to 11:30 Location: LUX:B538 Contact: samantha.stedtler lucs.lu se Save the event to your calendar

https://www.lucs.lu.se/seminar/Seminars%20in%20Cognitive%20Science/kate-devlin/ - 2025-01-31

Lona Lalic

Lona Lalic | LUCS : Lund University Cognitive Science 15 Apr Lona Lalic 15 April 2025 10:15 to 11:30 Seminar Open for external guests. Please request access to Zoom link in advance if participating virtually. Share http://www.lucs.lu.se/seminar//lona-lalic About the event: 15 April 2025 10:15 to 11:30 Location: LUX:B538 Contact: samantha.stedtler lucs.lu se Save the event to your calendar

https://www.lucs.lu.se/seminar/Seminars%20in%20Cognitive%20Science/lona-lalic/ - 2025-01-31

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In situ AE analysis of deformation in Harmonic Structured materials MASTER THESIS PROJECT(30HP) 1. Background Modern demands in structural materials can be hardly met by the traditional polycrystalline materials with homogeneous structures. Such materials are either ductile but too soft when coarse-grained (CG; crystallite size d³10µm) or strong but too brittle when nano- or ultrafine-grained (UFG

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK-MSc_Thesis-II.pdf - 2025-01-31

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Dependence of nano-hardness on crystallographic orientation in Mg MASTER THESIS PROJECT(30HP) 1. Background Magnesium (Mg) alloys are the lightest structural metals having excellent potential in biomedical applications since their mechanical properties are some of the most similar to human bones among engineering materials. The Division of Materials Engineering at LTH works extensively on the deve

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK_IProd-MSc_Thesis-I.pdf - 2025-01-31