16401 - 16420 van 18635 resultaten
- Decision Support Systems: Software | AlgorithmsSoftware and Tools created by the Decision Support Systems Group/en/research/artificial-intelligence/artificial-intelligence/decision-support-systems/systems-software
- De toekomst verbeelden met "Techniques of futuring" | Urban Futures StudioEen interview met Dr. Jesse Hoffman en Dr. Peter Pelzer, instructors van de Mixed Classroom "Techniques of Futuring"./en/research/urban-futures-studio/projects/mixed-classroom/de-toekomst-verbeelden-met-techniques-of-futuring
- ľ¹Ï¸£ÀûÓ°ÊÓ | Department of Media and Culture StudiesThe latest news from the Department of Media and Culture Studies (Faculty of Humanities)./en/organisation/department-of-media-and-culture-studies/news
- Alumnus Cees Dekker | AlumniJonge alumni in de spotlight. Lees de column over Cees Dekker./organisatie/alumni/alumnus-cees-dekker
- Lyotropic Smectic B Phase Formed in Suspensions of Charged Colloidal Platelets | Debye Institute for Nanomaterials ScienceLyotropic Smectic B Phase Formed in Suspensions of Charged Colloidal Platelets/en/research/debye-institute-for-nanomaterials-science/lyotropic-smectic-b-phase-formed-in-suspensions-of-charged-colloidal-platelets
- Shaped wavefronts and speckle correlations: A window into opaque media. | Debye Institute for Nanomaterials ScienceShaped wavefronts and speckle correlations: A window into opaque media./en/research/debye-institute-for-nanomaterials-science/shaped-wavefronts-and-speckle-correlations-a-window-into-opaque-media
- Computational catalysis for sustainable chemistry: from reaction mechanisms to working devices | Debye Institute for Nanomaterials ScienceComputational catalysis for sustainable chemistry: from reaction mechanisms to working devices/en/research/debye-institute-for-nanomaterials-science/computational-catalysis-for-sustainable-chemistry-from-reaction-mechanisms-to-working-devices
- Imaging Cellular Signaling one Molecule at a Time | Debye Institute for Nanomaterials ScienceImaging Cellular Signaling one Molecule at a Time/en/research/debye-institute-for-nanomaterials-science/imaging-cellular-signaling-one-molecule-at-a-time
- Single molecule reactivity studies in a liquid-STM | Debye Institute for Nanomaterials ScienceSingle molecule reactivity studies in a liquid-STM/en/research/debye-institute-for-nanomaterials-science/single-molecule-reactivity-studies-in-a-liquid-stm
- Subwavelength plasmonic and magnetic resonators to control photons and emitters | Debye Institute for Nanomaterials ScienceSubwavelength plasmonic and magnetic resonators to control photons and emitters/en/research/debye-institute-for-nanomaterials-science/subwavelength-plasmonic-and-magnetic-resonators-to-control-photons-and-emitters
- Floating on air | Debye Institute for Nanomaterials ScienceColloquia, Debye Institute for Nanomaterials Science/en/research/debye-institute-for-nanomaterials-science/floating-on-air
- Dopants and Charge Carriers in Colloidal Quantum Dots | Debye Institute for Nanomaterials ScienceDopants and Charge Carriers in Colloidal Quantum Dots/en/research/debye-institute-for-nanomaterials-science/dopants-and-charge-carriers-in-colloidal-quantum-dots
- Liquid-liquid phase transitions: a key to unlock the mystery of supercooling and glasses? | Debye Institute for Nanomaterials ScienceLiquid-liquid phase transitions: a key to unlock the mystery of supercooling and glasses?/en/research/debye-institute-for-nanomaterials-science/liquid-liquid-phase-transitions-a-key-to-unlock-the-mystery-of-supercooling-and-glasses
- Gold-palladium bimetallic catalysts for selective hydrogenation | Debye Institute for Nanomaterials ScienceGold-palladium bimetallic catalysts for selective hydrogenation/en/research/debye-institute-for-nanomaterials-science/gold-palladium-bimetallic-catalysts-for-selective-hydrogenation
- Solar highways: core-shell nanowires for high-efficiency solar conversion | Debye Institute for Nanomaterials ScienceSolar highways: core-shell nanowires for high-efficiency solar conversion/en/research/debye-institute-for-nanomaterials-science/solar-highways-core-shell-nanowires-for-high-efficiency-solar-conversion