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Search results for “Thermodynamics”

430 results for "Thermodynamics"

Physics reveals the optimal roof ratios for energy efficiency

Researchers found that roofs with shorter peak heights (less than three feet) should be wider to minimize heat loss, while taller peaks require equilateral triangles with a specific height-to-width ratio. These findings are similar to those seen in ancient architecture across the world.

SourceDuke University·JournalInternational Communications in Heat and Mass Transfer·TypeObservational study·DateApr 14, 2025

Making the physics of glass more transparent

Koun Shirai bridges conventional physics and nonequilibrium materials to provide robust thermodynamic description of glasses. He redefines equilibrium as energy extraction impact, allowing tools of thermodynamics to apply to glasses.

SourceOsaka University·JournalFoundations·TypeObservational study·DateApr 6, 2025
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UMass Amherst team finds exception to laws of thermodynamics

A team of researchers led by a graduate student discovered a novel property in certain liquids that contradicts long-held expectations from the laws of thermodynamics. Magnetized particles increase interfacial tension, bending the boundary between oil and water into a specific shape.

SourceUniversity of Massachusetts Amherst·JournalNature Physics·DateApr 4, 2025

Howard University physicist revisits the computational limits of life and Schrödinger’s essential question in the era of quantum computing

A study by Philip Kurian and colleagues reveals a revised upper bound on carbon-based life's computational capacity, connecting it to the universe's information-processing limit. The discovery of quantum superradiance in cytoskeletal filaments enables eukaryotic organisms to process information through tryptophan networks.

SourceHoward University·JournalScience Advances·TypeSurvey·DateMar 28, 2025

Scientists discovered chemical oscillations in palladium nanoparticles, paving the way for recycling precious metal catalysts

Researchers at University of Nottingham use transmission electron microscopy to observe real-time growth and contraction of Palladium nanoparticles. The study reveals a unique cyclic process where nanoparticles grow, dissolve, and re-grow, potentially leading to the development of new efficient catalysts.

SourceUniversity of Nottingham·JournalNanoscale·TypeExperimental study·DateMar 26, 2025
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Researchers report the first experimental observation of Bose–Einstein condensation of a two-magnon bound state in a spin-1 triangular lattice

Scientists discovered Bose-Einstein condensation in a two-magnon bound state using the Multi-frequency High Field Electron Spin Resonance Spectrometer. This finding provides new insights into exotic quantum states of matter, potentially unlocking new phases of matter for future technologies.

SourceHefei Institutes of Physical Science, Chinese Academy of Sciences·JournalNature Materials·DateMar 13, 2025

Researchers achieve electrosynthesis of ammonia from NO in pressurized electrolyzer

A research group from Dalian Institute of Chemical Physics achieves electrosynthesis of ammonia from NO in a pressurized electrolyzer with ampere-level current density and long-term stability. The method uses an in situ-grown hierarchical porous copper nanowire array electrode to regulate the kinetics and thermodynamics of the reaction.

SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalNature Communications·TypeCommentary/editorial·DateMar 11, 2025

Unlocking the secrets of phase transitions in quantum hardware

A team of researchers observed first- and second-order dissipative phase transitions in a two-photon driven Kerr resonator, showcasing the transformative power of quantum systems. The study demonstrates the validity of theoretical predictions and opens new possibilities for engineering stable and responsive quantum systems.

SourceEcole Polytechnique Fédérale de Lausanne·JournalNature Communications·DateMar 10, 2025

No quantum exorcism for Maxwell's demon (but it doesn't need one)

Researchers demonstrate that quantum processes can be designed to comply with the second law, highlighting a harmonious coexistence between quantum mechanics and thermodynamics. Their findings open up new avenues for understanding thermodynamic boundaries of quantum technologies.

SourceNagoya University·Journalnpj Quantum Information·DateFeb 7, 2025
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Even quantum physics obeys the law of entropy

Research at TU Wien shows that quantum systems exhibit increasing entropy over time, even in isolated systems. This reconciles quantum theory with thermodynamics by defining a 'Shannon entropy' that depends on measurement probabilities.

SourceVienna University of Technology·JournalPRX Quantum·TypeData/statistical analysis·DateJan 29, 2025

Realistic emission tests for motorbikes, mopeds and quads

Researchers at Graz University of Technology have developed new measurement methods to accurately measure emissions from category-L vehicles in realistic operation. The project results will help law enforcement agencies detect limit violations and manufacturers adapt their fleets.

SourceGraz University of Technology·TypeNews article·DateJan 9, 2025

Texas A&M researchers illuminate the mysteries of icy ocean worlds

Researchers from Texas A&M University have introduced a novel thermodynamic concept called the 'centotectic,' which investigates the stability of liquids in extreme conditions. The study provides critical information for determining the habitability of icy moons like Europa, with potential implications for planetary exploration efforts.

SourceTexas A&M University·JournalNature Communications·DateDec 20, 2024
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Hybrid theory offers new way to model disturbed complex systems

A hybrid method links bottom-up behaviors and top-down causation in a single theory to capture interactions between small-scale behaviors and system-level properties in disturbed systems. The approach has been tested in examples such as post-fire forest ecosystems and pandemics, predicting ecological patterns and system dynamics.

SourceSanta Fe Institute·JournalProceedings of the National Academy of Sciences·DateDec 6, 2024

A matter of life and death

A team of researchers from the University of Tokyo proposes a new mathematical definition of cell death based on enzymatic reactions and thermodynamics. This definition enables the development of computational methods to quantify the life-death boundary, which could lead to better understanding and control of cellular processes.

SourceUniversity of Tokyo·JournalPhysical Review Research·TypeComputational simulation/modeling·DateNov 27, 2024

Chiral quantum heating and cooling with an optically controlled ion

The study reveals the link between chirality and heat exchange in a quantum system, highlighting the role of non-adiabatic transitions and the Landau-Zener-Stückelberg process. The experiment paves the way for new explorations in quantum thermodynamics and efficient quantum chiral devices.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateSep 4, 2024
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A world first: Qubit coherence decay traced to thermal dissipation

Physicists have developed a method to directly measure qubit coherence loss as thermal dissipation in electrical circuits. This breakthrough allows researchers to better understand how their qubits decay and improve quantum computing technology.

SourceAalto University·JournalNature Nanotechnology·TypeExperimental study·DateAug 22, 2024

How ribosomes in our cells enable protein folding

Researchers have discovered that ribosomes play a crucial role in protein folding, directing folding pathways by impacting energy and stability. This discovery reveals the structural basis of how ribosomes affect protein folding, offering new insights into diseases such as cancers.

SourceUniversity College London·JournalNature·TypeExperimental study·DateAug 7, 2024

Amazing metallic nanosheets curling into nanovesicles

Researchers used biomimetic strategy to create nanovesicles with unique vesicular structure, displaying excellent HOR activity and stability. The introduction of Ru atoms plays a critical role in the curling growth of the nanosheet structure, making it more favorable thermodynamically.

SourceScience China Press·JournalNational Science Review·DateAug 1, 2024

Study by TU Graz shows that abrasion emissions from trains are not negligible

A recent study by TU Graz found that rail transport contributes significantly to particulate matter emissions, with levels reaching up to 25 micrograms per cubic meter along railway lines. This poses a concern for air quality and soil pollution, particularly in areas with increased braking activity.

SourceGraz University of Technology·JournalTransportation Research·TypeExperimental study·DateJul 23, 2024
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Unprecedented warming threatens earth’s lakes and their ecosystems

A recent study predicts that lakes worldwide will experience unprecedented surface and subsurface warming, leading to severe disruptions in ecosystems. Tropical lakes are expected to be the first to emerge from natural temperature bounds, while high-latitude lakes may shield their subsurface layers from surface warming.

SourceInstitute for Basic Science·JournalNature Geoscience·TypeComputational simulation/modeling·DateJul 12, 2024

How to avoid wasting huge amounts of energy

Researchers at Norwegian University of Science and Technology have developed a technology that can harness surplus heat from industrial processes to produce drinking water and generate electricity. The technology, called membrane distillation, uses thermal osmosis to separate water from impurities.

SourceNorwegian University of Science and Technology·JournalDesalination·TypeExperimental study·DateJul 3, 2024
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Expanding on the fundamental principles of liquid movement

Kyushu University researchers generalize fluid dynamics of volatile liquids using mathematical modeling and experimentation. Their findings can lead to more efficient product development in various liquid-based industries, including high-end electronics manufacturing and lab-on-a-chip disease diagnosis.

SourceKyushu University·JournalJournal of Fluid Mechanics·TypeExperimental study·DateMay 20, 2024

New work extends the thermodynamic theory of computation

Researchers introduce mathematical equations revealing minimum and maximum predicted energy cost of computational processes with randomness, offering insights into computing energy-cost bounds. The framework offers a way to calculate lower bounds on the energy cost of unpredictable finish situations.

SourceSanta Fe Institute·JournalPhysical Review X·DateMay 13, 2024

Control of temperature dependent viscosity for manufacturing of Bi-doped active fiber

Researchers developed a novel temperature-dependent viscosity mediated strategy to control Bi dopant deactivation during fiber drawing. A borate glass system with faster viscosity changing rate was created, resulting in the first demonstration of on-off gain in a Bi-doped borate fiber system.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateApr 16, 2024

Study uses thermodynamics to describe expansion of the Universe

Researchers used thermodynamics to describe the expansion of the Universe, finding that adiabatic and anisotropic effects are accompanied by cooling due to the barocaloric effect. The study proposes a novel way to investigate anisotropic effects associated with the expansion of the Universe.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalResults in Physics·DateApr 15, 2024
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Deciphering the enigma: How the body picks the right opioid enantiomers

The study reveals that natural (-)-morphine binds to the μ-opioid receptor (MOR) in its activated state, resulting in pain relief. Conversely, (+)-morphine fails to sustain MOR's activation, with (-)-morphine demonstrating a longer residence time in MOR by a factor of 8,000.

SourceScience China Press·JournalNational Science Review·DateApr 3, 2024

New method to measure entropy production on the nanoscale

Researchers at Chalmers University of Technology developed a computational model to measure entropy production on the nanoscale in laser-excited crystalline materials. The model reveals that phonons, lattice vibrations, can produce entropy similar to bacteria in water.

SourceChalmers University of Technology·JournalNature Communications·TypeComputational simulation/modeling·DateMar 26, 2024

What heat can tell us about battery chemistry: using the Peltier effect to study lithium-ion cells

A team of researchers at the University of Illinois has demonstrated a technique to study chemical properties of lithium-ion battery cells by exploiting the Peltier effect. This allows them to experimentally measure the entropy of the lithium-ion electrolyte, which could inform lithium-ion battery design.

SourceUniversity of Illinois Grainger College of Engineering·JournalPhysical Chemistry Chemical Physics·DateMar 8, 2024
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New strategy boosts direct electrolysis of dilute carbon dioxide

A new strategy for direct electrolysis of dilute CO2 has been proposed, using a molecular enhancement method to improve performance. The approach involves modifying CoPc electrodes with poly(4-vinylpyridine) to create a reaction microenvironment that effectively captures and converts CO2 from flue gas.

SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalACS Energy Letters·TypeCommentary/editorial·DateMar 5, 2024

New technique developed for measurement of temperature distribution inside single catalyst particle

Researchers developed imaging technique with 800nm spatial resolution to measure three-dimensional temperature distribution inside industrial zeolite-catalyst particles. The technique revealed utilization of active sites and evolutions of reaction intermediates during MTO reactions.

SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalJournal of the American Chemical Society·TypeCommentary/editorial·DateMar 5, 2024

Decoding thermophotovoltaic efficiency

A new universal figure-of-merit for thermophotovoltaic (TPV) devices has been introduced to assess performance and balance power density and efficiency. This metric enables the classification of previously reported experimental results, providing a clear picture of TPV device overall performance.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Photonics for Energy·DateFeb 7, 2024

Physicists identify overlooked uncertainty in real-world experiments

Uncertainty in thermodynamic parameters can influence experiment outcomes, suggesting a new approach to modifying stochastic thermodynamics equations. This oversight has implications for various systems, including cells and optical tweezers, where precision is limited by the uncertainty in system parameters.

SourceSanta Fe Institute·JournalPhysical Review Research·DateJan 15, 2024
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Researchers propose conditions for maximizing quantum entanglement

Entanglement is crucial for quantum computing, and researchers have proposed a condition to maximize it. The study, published in Physical Review B, uses the Hellmann-Feynman theorem as a reference point to explore finite temperature and quantum critical points.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalPhysical Review B·DateJan 4, 2024

In situ characterization reveals different dehydrogenation pathways in MgH2

Researchers have optimized thermodynamics and kinetics of Mg-In-Ti hydrogen storage system, improving de/hydrogenation properties. The study aims to combine advantages of MXenes and In alloying for simultaneous alteration of Mg-based hydrogen storage materials.

SourceBeijing Institute of Technology Press Co., Ltd·JournalEnergy Material Advances·TypeExperimental study·DateDec 26, 2023

Stability in physical and political science

Researchers Kenneth J. Breslauer and George W. Breslauer investigate the concept of stability in both physical and political science, finding parallels between kinetic trapping and social metastability. They propose applying thermodynamic principles to analyze socio-political systems, revealing a continuity between nature and society.

SourcePNAS Nexus·JournalPNAS Nexus·DateDec 12, 2023

Solid-state atomic hydrogen, a new hydrogen therapy strategy

Researchers developed a new hydrogen therapy strategy using solid-state atomic hydrogen, which selectively eliminates reactive oxygen and nitrogen species. This approach promotes wound healing in diabetic wounds by remodeling the microenvironment and alleviating inflammation.

SourceScience China Press·JournalNational Science Review·DateNov 21, 2023
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Could a new law of physics support the idea we’re living in a computer simulation?

A new study explores the simulated universe hypothesis and its implications for science and technology. The second law of infodynamics suggests that information has mass and entropy remains constant or decreases in information systems, supporting the idea that we're living in a simulation.

SourceUniversity of Portsmouth·JournalAIP Advances·TypeComputational simulation/modeling·DateOct 9, 2023

Light and sound waves reveal negative pressure

Scientists have developed a tiny, simple setup to make precise pressure measurements using light and sound waves. This method enables exploration of extreme thermodynamics in nanolitre volumes, revealing new properties in unique thermodynamic states of materials.

SourceMax Planck Institute for the Science of Light·JournalNature Physics·TypeExperimental study·DateSep 25, 2023

Majority rule in complex mixtures

Göttingen University researchers develop mathematical model that shows small imbalances in mixture composition can amplify and control phase separation. This discovery offers a potential mechanism for regulating structure formation in living cells, with applications in fields such as market economies and ecological networks.

SourceUniversity of Göttingen·JournalPhysical Review Letters·TypeData/statistical analysis·DateSep 13, 2023
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Unlocking chaos: Ultracold quantum gas reveals insights into wave turbulence

Scientists explore ultracold quantum gas to understand wave turbulence, discovering a universal relation that describes the state's characteristics regardless of external factors. The findings echo the universality of the ideal gas law for equilibrium states, opening up new avenues for understanding non-equilibrium systems.

SourceUniversity of Cambridge·JournalNature·DateAug 17, 2023

Much ado about nothing: Insights into designing advanced stimuli-responsive materials

Researchers from Japan have solved a long-standing puzzle of porous soft materials, revealing the importance of elastic heterogeneity in tuning molecular adsorption/desorption properties. The study provides physicochemical insight into the origin of elastic heterogeneity within MOFs, with applications to imparting targeted properties.

SourceInstitute of Industrial Science, The University of Tokyo·JournalProceedings of the National Academy of Sciences·DateJul 19, 2023
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Unveiling synchronization preferences of quantum thermal machines

The study reveals that quantum thermal machines exhibit distinct synchronization behavior, with cooperation and competition emerging among different components. The researchers found that cooperation manifests in harmony-like synchrony, while competition thrives in chaotic conditions.

SourceInstitute for Basic Science·JournalPhysical Review Letters·TypeMeta-analysis·DateJul 17, 2023

The Ising on the cake

A team of researchers from Kyoto University and international institutions has developed a mathematical solution to the temporal asymmetry of nonequilibrium disordered Ising networks. This breakthrough offers insights into the behavior of biological systems, machine learning, and AI tools.

SourceKyoto University·JournalNature Communications·TypeComputational simulation/modeling·DateJul 4, 2023

Fondant: Where baking and thermodynamics mix

Researchers studied fondant creation using automated kneading machines and light microscopy, linking it to theoretical physics models. The team found that different preparation methods influence fondant structure and texture, enabling better prediction and control.

SourceAmerican Institute of Physics·JournalPhysics of Fluids·DateJun 27, 2023

Jefferson Lab Virtual Series serves up science brain teasers

The Jefferson Lab Virtual Series offers a fun and engaging way to learn scientific concepts, with over 40 videos available on YouTube. Each video explores a different topic, providing viewers with the ability to passively learn about science in an interactive and reproducible way.

SourceDOE/Thomas Jefferson National Accelerator Facility·DateJun 12, 2023