Atomfair Brainwave Hub: SciBase II / Advanced Materials and Nanotechnology / Advanced materials for extreme environments

Advanced materials for extreme environments

Showing 37-48 of 565 articles

Modeling mantle convection cycles with billion-year evolutionary perspectives on planetary cooling

Planning post-2100 nuclear waste storage with self-healing concrete matrices

Using military-to-civilian tech transfer for disaster-resistant infrastructure development

Enhancing quantum computing stability via deep-ocean carbon sequestration techniques

Using autonomous methane detection drones to map Arctic permafrost thaw emissions in real-time

Through prebiotic chemical timescales in simulated hydrothermal vent environments

For megayear material degradation in nuclear waste storage solutions

Using autonomous methane detection drones for Arctic permafrost thaw monitoring

For earthquake prediction, can machine learning analyze microseismic data for early warnings?

Employing soft robot control policies for deep-sea exploration in extreme pressure environments

Using autonomous methane detection drones for real-time monitoring in Arctic permafrost thaw zones

For 2060 fusion power integration using flow chemistry robots for tritium breeding