Values of protected area landscapes shape the behaviors of subsistence users in Interior Alaska. [PDF]
Salcido EL +4 more
europepmc +1 more source
Fostering Innovation: Streamlining Magnetocaloric Materials Research by Digitalization
Magnetocaloric cooling (MCE) is an environmentally friendly refrigeration method with great potential. Optimizing MCE materials involves the preparation and screening of large quantities of samples, which in turn generates a large amount of data. A digitalization approach is presented that uses ontologies, knowledge graphs, and digital workflows to ...
Simon Bekemeier +17 more
wiley +1 more source
Protected areas for conservation and poverty alleviation: experiences from Madagascar [PDF]
Mbohoahy, Tsibara +9 more
core +1 more source
Discovery of a deep-sea coral garden of <i>Crypthelia vascomarquesi</i> (Hydrozoa: Hydroidolina) in the Menez Gwen marine protected area (Mid-Atlantic ridge). [PDF]
Sampaio Í +4 more
europepmc +1 more source
Building machine‐readable vocabularies for materials science is slow, expert‐driven work. This study benchmarks 13 large language models on two of its first steps: finding candidate terms in engineering articles and deciding where they belong in a class hierarchy.
Thomas Bjarsch +3 more
wiley +1 more source
The problematic of soil contamination by industries in a protected area in Portugal. [PDF]
Michels F, Ribeiro J, Henriques MH.
europepmc +1 more source
Multimodal Data‐Driven Microstructure Characterization
A self‐consistent autonomous workflow for EBSP‐based microstructure segmentation by integrating PCA, GMM clustering, and cNMF with information‐theoretic parameter selection, requiring no user input. An optimal ROI size related to characteristic grain size is identified.
Qi Zhang +4 more
wiley +1 more source
Applying Deep Learning to Quantify Drivers of Long-Term Ecological Change in a Swedish Marine Protected Area. [PDF]
Nilsson CL +4 more
europepmc +1 more source
Creep‐Induced Microstructural Evolution in an A2‐B2 Superalloy
A 27.3Ta‐27.3Mo‐27.3Ti‐8Cr‐10Al (at.%) refractory high‐entropy alloy with precipitation‐strengthened A2‐B2 microstructure was studied by creep tests at 1030°C, which demonstrate a transition in deformation mechanisms in the range of 100–150 MPa applied stress. This is associated with changes in dislocation–precipitate interactions. Relevant deformation
Liu Yang +10 more
wiley +1 more source

