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operation. To design optical metasurfaces and material platforms exhibiting time-varying responses. Using adjoint-based optimization and spatial structuring, to realize complex time-modulated medium dynamics
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techniques to enable the screening and characterization of small molecule binding and impact on chromatin structure and dynamics. Scope of duties according to the Work Regulations of the Jagiellonian
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strong experience in materials synthesis and its physicochemical and electrochemical characterization. The work requires expertise in materials for electrochemical energy storage Duration: 12 months
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and the ESS beamlines ESTIA and SKADI. You will have access to complementary state-of-the-art material characterization techniques at Chalmers and join the group to diffraction and spectroscopy
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material platforms exhibiting time-varying responses. Using adjoint-based optimization and spatial structuring, to realize complex time-modulated medium dynamics with realistic material constraints and
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stability, solubility, dissolution rate, bioavailability, and ultimately therapeutic efficacy. Pressure effects are widely investigated in many fields to synthesize new materials or to modify their properties
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solver who wants to be part of a dynamic team. Learn more about the innovative work led by Dr. Don Ingber here: https://wyss.harvard.edu/technology/human-organs-on-chips/ What you’ll do: Independently
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Posted by Kate Stuart on Wednesday, March 18, 2026 in Job Opportunities . The Cruchaga lab (https://cruchagalab.wustl.edu/ ) at Washington University School of Medicine has a
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, with more than 4 years experience in the growth of low dimensional materials. Experience of characterization of materials as well as chemical functionalization are desirable qualifications. What you will
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methodologies (i.e., X-Ray scattering, vibrational spectroscopy, scanning probe microscopy) to monitor dynamic interaction between hydrogen storage molecules and electrified catalyst surfaces for chemical