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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Layer dependent thermal transport properties of one- to three-layer magnetic Fe:MoS2
Not provided.
Enhanced thermal response of 3D-printed bilayer hydrogels via nanoclay incorporation
Nanoclay enhances the actuation of thermally-responsive 3D-printed hydrogel bilayers.
Autonomous generation of single photon emitting materials
Single photon quantum materials discovery based on large dataset synthetic data generation.
Structural and magnetic properties of Co4N thin films stabilized with Pd doping
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Disentangling the role of Al, Co, and Mn dopants in LiNiO 2 cathodes via synchrotron-based probes
Multimodal synchrotron analysis uncovers how Co, Mn, and Al dopants mitigate degradation and reinforce structural integrity in LiNiO 2 cathodes.
A review of large language models and autonomous agents in chemistry
This review examines the roles of large language models (LLMs) and autonomous agents in chemistry, exploring advancements in molecule design, property prediction, and synthesis automation.
Understanding the origin of early-type dwarfs: the spectrophotometric study of CGCG014−074
ABSTRACT Early-type dwarf galaxies constitute a prevalent population in the central regions of rich groups and clusters in the local Universe. These low-luminosity and low-mass stellar systems play a fundamental role in the assembly of the luminous galaxies observed today, according to the Lambda cold dark matter hierarchical theory. The origin of early-type dwarfs has been linked to the transformation of disc galaxies interacting with the intracluster medium, especially in dense environments. However, the existence of low-luminosity early-type galaxies in low-density environments presents a challenge to this scenario. This study presents a comprehensive photometric and spectroscopic analysis of the early-type dwarf galaxy CGCG014−074 using deep Gemini GMOS (Gemini Multi-Object Spectrograph) data, focusing on its peculiarities and evolutionary implications. CGCG014−074 exhibits distinct features, including a rotating inner disc, an extended stellar formation with a quiescent phase since about 2 Gyr ago, and the presence of boxy isophotes. From the kinematic analysis, we confirm CGCG014−074 as a nucleated early-type dwarf galaxy with embedded disc. The study of its stellar population parameters using different methods provides significant insights into the galaxy’s evolutionary history. These results show an old and metal-poor nucleus (${\sim}9.3$ Gyr and $\mathrm{[Z/H]}\sim -0.84$ dex), while the stellar disc is younger (${\sim}4.4$ Gyr) with a higher metallicity ($\mathrm{[Z/H]}\sim -0.40$ dex). These distinctive features collectively position CGCG014−074 as a likely building block galaxy that has evolved passively throughout its history.
A Techno-Economic Assessment of Fusion Energy System Supply and Waste Generation and How Fission Energy May Close Operational Gaps
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Moisture Durability and Thermal Performance of Retrofitted Wall Systems with Wood Fiber Insulation: An Environmental Chamber Study
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Cost-competitive offshore wind-powered green methanol production for maritime transport decarbonization
Not provided.
High-power lithium-ion battery characterization dataset for stochastic battery modeling
Not provided.
Molecular Ionic Composite Polymer Electrolytes for High-Voltage Batteries
Not provided.
3D Printing Epoxy Thermosets: Additive Manufacturing of Polymerization-Induced Phase Separating Materials
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Frequency-Dependent Acoustic Reflection Coefficients of Flat Ground Assessed Using the Sonic Boom From the OSIRIS-Rex Sample Return Capsule Recorded on Free Flying Balloons
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Metrology and Standards Gaps and FY27 Work Focusing on Impact
This work focuses on the Heliostat Consortium (HelioCon) optical measurements and characterization, testing and modeling capabilities and infrastructure at NLR and Sandia supporting heliostat technology research, development, validation, and deployment in relevant industries. The development of standards in HelioCon requires a collective effort across the global heliostat community of industry, researchers, academia and other stakeholders.
Laser isotope separation of Gd-152 and Gd-160
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