62 molecular-modeling-or-molecular-dynamic-simulation Postdoctoral research jobs in Brazil
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staff position within a Research Infrastructure? No Offer Description The FAPESP Young Researcher research project entitled “Symbolic Dynamics, Non-Uniform Hyperbolicity, and Singularities,” funded by
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staff position within a Research Infrastructure? No Offer Description The fellow will perform dynamic downscaling for warm climates of the past to provide a long-term climate perspective on ocean
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31 Oct 2025 Job Information Organisation/Company FAPESP - São Paulo Research Foundation Research Field Engineering Researcher Profile Established Researcher (R3) Country Brazil Application Deadline 21 Nov 2025 - 23:59 (UTC) Type of Contract To be defined Job Status Not Applicable Is the job...
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staff position within a Research Infrastructure? No Offer Description In this project, we aim to investigate the alterations induced by ion channels in mitochondrial dynamics and respiration during acute
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in protein molecular dynamics will be highly desirable. The project will be developed at the Physics Institute of the University of São Paulo (IF-USP), under the supervision of Profs. Atílio Tomazini
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, or related fields, with proven experience in experimental research. Required competencies include skills in vascular and brain microsurgeries in animal models, hemodynamic recordings, electrophysiology
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position within a Research Infrastructure? No Offer Description The Molecular Spectroscopy Laboratory at the University of São Paulo's Institute of Chemistry (LEM-IQ-USP), in Brazil, is opening a post
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immunomodulation and therapy resistance in prostate cancer. This project, part of a FAPESP Thematic Grant, aims to uncover molecular mechanisms driving immune evasion and identify combinatorial therapeutic
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bioluminescent organisms. Requirements: Proven experience in molecular biology, heterologous expression and purification of proteins, enzymatic assays, proteomic analysis and synthetic biology, PhD obtained within
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to elucidate cellular and molecular mechanisms underlying DMD and healthy aging, employing iPSC-derived cellular models, skeletal muscle differentiation, and three-dimensional muscle tissue engineering