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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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Secondary Organic Aerosol from OH Oxidation of Acyclic Terpenes Is More Viscous and Less Volatile than That of Their Cyclic Analogs
Biogenic volatile organic compounds (BVOCs), a dominant source of secondary organic aerosol (SOA) globally, exhibit emission rates and composition that are plant species-specific and vary with environmental stressors. A common outcome of plant stress is increased emissions of acyclic terpenes. The paucity of information about acyclic terpene SOA chemistry contributes to uncertainties in predictions of SOA global loadings and impacts on Earth’s radiative budget, particularly in a changing climate where acyclic terpene emissions could become more prominent. This study compared properties of SOA derived from OH oxidation of acyclic and cyclic monoterpenes (ß-ocimene, a-pinene) and sesquiterpenes (ß-farnesene, ß-caryophyllene). Single particle mass spectrometry was used for assessing shape, density, and evaporation kinetics of size-selected SOA particles, and nanospray desorption electrospray ionization high-resolution mass spectrometry (nano-DESI-HRMS) was used to measure molecular composition of SOA. Acyclic terpene SOA exhibited higher viscosity and lower volatility compared to cyclic terpene SOA, and had a greater volume fraction remaining (VFR) after ~24 hours of evaporation - approximately 1.3-1.6 times higher VFR than that of cyclic terpene SOA. Additionally, HRMS analysis revealed greater chemical diversity and higher fractions of extremely low volatility compounds (56-62% ELVOC/LVOC) in acyclic terpene SOA compared to cyclic counterparts (25-37% ELVOC/LVOC). Our findings highlight the potential importance of accounting for acyclic terpene aerosol chemistry under conditions of plant stress to improve predictions of SOA loadings and impacts.
Integrated Analog Computers as Domain-Specific Accelerators: A Tutorial Review
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As above, not so below: Ion fractionation in planetary analog ices
The geophysical evolution and astrobiological potential of ocean worlds are indelibly linked to the chemical compositions of their oceans and ice shells. In the absence of direct measurements, empirical estimates of subsurface ocean compositions have relied on the assumption that the ionic compositions of ice shell surfaces are representative of their underlying ocean compositions. Here, we present experimental results demonstrating that ion fractionation—the differential entrainment of ion species in forming ices—is likely a prevalent process on ocean worlds, suggesting that planetary ice shell compositions do not directly reflect their underlying ocean compositions. We measure in-ice depletions and amplifications of relative ion concentrations ranging between −40 and +77%, compared to the parent fluid composition. Although this may complicate the interpretation of spacecraft data, ion fractionation provides a mechanism for generating compositionally diverse ices that could help explain the geological complexity of planetary ice shells.
Towards Energy-Efficient LLM Inferencing on Analog Devices via Algorithm-Hardware Co-Design
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Analog Selection and Project Comparison Using Offshore Carbon Storage Project Inventory and Data
Presentation for CCUS 2025 Conference held in Houston, Texas March 3-5, 2025. Offshore geologic carbon storage (GCS) efforts are accelerating worldwide. As additional projects come online and site characterizations take place, project information and data need to be aggregated into central locations to improve understanding of the success criteria for GCS.
Neural-Inspired Dendritic Multiplication Using a Reconfigurable Analog Integrated Circuit
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CrossSim: Sandia's simulator for analog AI accelerators
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Exploring AlGaInP for use in Si photomultiplier analogs
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Noise resilient neural networks for analog hardware
Poster for the intern symposium
R&D Infrastructure for Analog Computing
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Energetics of thermal degradation of fentanyl and its analogs
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Building next generation analog computers: materials, devices and systems
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Analog-supported Power Density Methods for Assessing Stratigraphic Geothermal Resources
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A Hybrid Analog-Digital Programmable Pulse Generator for QIST
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Analog Bayesian neural networks are insensitive to the shape of the weight distribution
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Analog computing using SONOS charge trap memory for low-power space-borne artificial intelligence
Full paper submission for accepted GOMAC'25 oral presentation.