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Categories: Chemistry: Thermodynamics, Mathematics: General

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Chemistry: Thermodynamics Geoscience: Environmental Issues
Published

Scientists develop a cool new method of refrigeration      (via sciencedaily.com) 

Researchers have developed a new kind of heating and cooling method that they have named the ionocaloric refrigeration cycle. They hope the technique will someday help phase out refrigerants that contribute to global warming and provide safe, efficient cooling and heating for homes.

Mathematics: General Mathematics: Modeling Mathematics: Statistics
Published

Modelling the collective movement of bacteria      (via sciencedaily.com) 

A new paper presents a mathematical model for the motion of bacteria that includes cell division and death, the basic ingredients of the cell cycle.

Chemistry: Thermodynamics Engineering: Graphene
Published

A shield for 2D materials that adds vibrations to reduce vibration problems      (via sciencedaily.com) 

A new study demonstrates a new, counterintuitive way to protect atomically-thin electronics -- adding vibrations, to reduce vibrations. By squeezing a liquid-metal gallium droplet, graphene devices are painted with a protective coating of gallium-oxide that can cover millimeter-wide scales, making it potentially applicable for industrial large-scale fabrication. The new technique improves device performance as well as protecting 2D materials from thermal vibration in neighboring materials.

Chemistry: Thermodynamics Energy: Nuclear
Published

Mitigating corrosion by liquid tin could lead to better cooling in fusion reactors      (via sciencedaily.com) 

Researchers have clarified the chemical compatibility between high temperature liquid metal tin (Sn) and reduced activation ferritic martensitic, a candidate structural material for fusion reactors. This discovery has paved the way for the development of a liquid metal tin divertor, which is an advanced heat-removal component of fusion reactors. A device called a divertor is installed in the fusion reactors to maintain the purity of the plasma. For divertors, there has been demand for liquid metals that can withstand extremely large heat loads from high-temperature plasma.

Chemistry: Thermodynamics Computer Science: Quantum Computers Physics: Quantum Computing
Published

Chaos gives the quantum world a temperature      (via sciencedaily.com) 

Two seemingly different areas of physics are related in subtle ways: Quantum theory and thermodynamics. How can the laws of thermodynamics arise from the laws of quantum physics? This question has now been pursued with computer simulations, which showed that chaos plays a crucial role: Only where chaos prevails do the well-known rules of thermodynamics follow from quantum physics.

Mathematics: General Mathematics: Modeling
Published

Revealing the complex magnetization reversal mechanism with topological data analysis      (via sciencedaily.com) 

The reliability of data storage and writing speed in advanced magnetic devices depend on drastic, complex changes in microscopic magnetic domain structures. However, it is extremely challenging to quantify these changes, limiting our understanding of magnetic phenomena. To tackle this, researchers developed, using machine learning and topology, an analysis method that quantifies the complexity of the magnetic domain structures, revealing hidden features of magnetization reversal that are hardly seen by human eyes.

Chemistry: Thermodynamics
Published

Gold-based passive heating for eyewear      (via sciencedaily.com) 

Researchers have developed a new transparent gold nanocoating that harnesses sunlight to heat the lenses of glasses, thereby preventing them from fogging in humid conditions. This coating could potentially also be applied to car windshields.

Mathematics: General Mathematics: Modeling
Published

Finding simplicity within complexity      (via sciencedaily.com) 

With the theory that for every action, even those seemingly complex and random, there is a math problem that describes it, a researcher is publishing a new formula that helps find that equation quickly. Yes, he's speeding up science.

Chemistry: Thermodynamics Energy: Batteries
Published

Flameproofing lithium-ion batteries with salt      (via sciencedaily.com) 

A polymer-based electrolyte makes for batteries that keep working -- and don't catch fire -- when heated to over 140 degrees F.

Chemistry: Thermodynamics
Published

Team recycles previously unrecyclable plastic      (via sciencedaily.com) 

Researchers have discovered a way to chemically recycle PVC into usable material, finding a way to use the phthalates in the plasticizers -- one of PVC's most noxious components -- as the mediator for the chemical reaction.

Chemistry: Thermodynamics
Published

Researchers introduce an energy-efficient method to enhance thermal conductivity of polymer composites      (via sciencedaily.com) 

Thermally conductive polymer composites consist of fillers oriented in certain directions that form pathways for heat flow. However, conventional methods to control the orientation of these fillers are energy-intensive and require surface modifications that can deteriorate the quality and properties of these materials. Now, researchers have developed an energy-efficient method to control the orientation of the fillers without the need for surface modification, resulting in improvement in thermal conductivity.

Chemistry: Thermodynamics
Published

Engineers use quantum computing to develop transparent window coating that blocks heat, saves energy      (via sciencedaily.com) 

Scientists have devised a transparent coating for windows that could help cool the room, use no energy and preserve the view.

Chemistry: Thermodynamics Energy: Alternative Fuels
Published

Cooling down solar cells, naturally      (via sciencedaily.com) 

Too much sun and too much heat can reduce the efficiency of photovoltaics. A solar farm with optimally spaced panels facing the correct direction could cool itself through convection using the surrounding wind. Researchers explored how to exploit the geometry of solar farms to enhance natural cooling mechanisms.

Chemistry: Thermodynamics
Published

High-performance and compact vibration energy harvester created for self-charging wearable devices      (via sciencedaily.com) 

A research team has developed a microelectromechanical system (MEMS) piezoelectric vibration energy harvester, which is only about 2 cm in diameter with a U-shaped metal vibration amplification component. The device allows for an increase of approximately 90 times in the power generation performance from impulsive vibration. Since the power generation performance can be improved without increasing the device size, the technology is expected to generate power to drive small wearable devices from non-steady vibrations, such as walking motion.

Chemistry: Thermodynamics
Published

Research unearths obscure heat transfer behaviors      (via sciencedaily.com) 

Researchers have found that boron arsenide, which has already been viewed as a highly promising material for heat management and advanced electronics, also has a unique property. After reaching an extremely high pressure that is hundreds of times greater than the pressure found at the bottom of the ocean, boron arsenide's thermal conductivity actually begins to decrease. The results suggest that there might be other materials experiencing the same phenomenon under extreme conditions.

Computer Science: Virtual Reality (VR) Mathematics: General
Published

Math approach may make drug discovery more effective, efficient      (via sciencedaily.com) 

Researchers have devised a computer-based platform for drug discovery that could make the process more effective, more efficient and less costly.

Chemistry: Thermodynamics
Published

A life-inspired system dynamically adjusts to its environment      (via sciencedaily.com) 

The system regulates its own temperature in response to environmental disturbances.

Mathematics: General
Published

Using math to better treat cancer      (via sciencedaily.com) 

Researchers have identified a new method for scheduling radiation therapy that could be as much as 22 percent more effective at killing cancer cells than current standard radiation treatment regimens.

Chemistry: Thermodynamics
Published

A nanoscale view of bubble formation      (via sciencedaily.com) 

A nanoscale view of bubble formation: Using computer simulation, a research team succeeded in modeling the behavior of molecules at the liquid -- gas interface at the nanometer scale, enabling them to describe the boiling process with extreme precision. The findings could be applied to future cooling systems for microprocessors, or to the production of carbon-neutral hydrogen, known as green hydrogen.