Dr. Ravindra Shinde

The Science Dev

Science EN ↓ 98 episodes

The Science Dev is a platform for interesting research stories. It is made for researchers, general audience, students, and enthusiasts. Visit https://thescience.dev for the succinct research cover stories.

Author

Dr. Ravindra Shinde

Category

Science

Podcast website

thescience.dev

Latest episode

Sep 29, 2024

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Episodes

Tuning the entanglement structure in an array of qubits 29.09.2024

https://thescience.dev/tuning-the-entanglement-structure-in-an-array-of-qubits/ MIT researchers have developed a groundbreaking technique to manipulate entanglement in superconducting qubits, offering valuable insights into the fundamental resource of quantum computing.

Earths magnetic shield older and stronger than we thought 29.09.2024

https://thescience.dev/earths-magnetic-shield-older-and-stronger-than-we-thought/ New evidence suggests Earth’s magnetic field existed earlier than previously believed, potentially playing a crucial role in the emergence of life.

How light can vaporize water without the need for heat 29.09.2024

https://thescience.dev/how-light-can-vaporize-water-without-the-need-for-heat/ MIT scientists uncover a surprising phenomenon where light directly triggers water evaporation, with potential implications for climate modeling and desalination technology.

Unveiling-the-secrets-of-star-formation-a-new-molecule-emerges-in-space 29.09.2024

https://thescience.dev/unveiling-the-secrets-of-star-formation-a-new-molecule-emerges-in-space/ A team of researchers, led by MIT Professor Brett McGuire, has made a groundbreaking discovery – the detection of a previously unknown molecule within the vast expanse of space. 

AI-designs-new-drugs-based-on-protein-structures 29.09.2024

https://thescience.dev/ai-designs-new-drugs-based-on-protein-structures/ A new AI model developed by chemists at ETH Zurich makes it possible to generate active pharmaceutical ingredients quickly and easily based on a protein’s three-​dimensional surface. The new process could revolutionize drug research.

An ink for 3D-printing flexible devices without mechanical joints 23.04.2024

EPFL researchers target the next generation of soft actuators and robots with elastomer-based ink for 3D printing objects with locally changing mechanical properties, eliminating the need for cumbersome mechanical joints. https://thescience.dev/an-ink-for-3d-printing-flexible-devices-without-mechanical-joints/

Energy scientists unravel the mystery of gold’s glow 23.04.2024

Luminescence, or the emission of photons by a substance exposed to light, has been known to occur in semiconductor materials like silicon for hundreds of years. https://thescience.dev/energy-scientists-unravel-the-mystery-of-golds-glow/

Tropical forests can’t recover naturally without fruit eating birds 23.04.2024

New research from the Crowther Lab at ETH Zurich illustrates a critical barrier to the natural regeneration of tropical forests. https://thescience.dev/tropical-forests-cant-recover-naturally-without-fruit-eating-birds/

Surprising reversal in quantum systems 20.04.2024

Quantum systems in physics can also have a specific apple or doughnut topology, which manifests itself in the energy states and motion of particles. https://thescience.dev/surprising-reversal-in-quantum-systems/

Jupiter’s moon Io has been volcanically active for billions of years 20.04.2024

Io ,  Europa , and  Ganymede  are in an orbital configuration known as a Laplace resonance: For every orbit of Ganymede , Europa completes exactly two orbits, and Io completes exactly four.  https://thescience.dev/jupiters-moon-io-has-been-volcanically-active-for-billions-of-years/

A new type of seismic sensor to detect moonquakes 20.04.2024

Unlike the Earth, the Moon is not tectonically active. Lunar quakes have different origins: Some are caused by day-to-night thermal differences as the surface varies in temperature. https://thescience.dev/a-new-type-of-seismic-sensor-to-detect-moonquakes/

Quantum sensors to image Meissner effect in hydride supercondutors 20.04.2024

https://thescience.dev/quantum-sensors-to-image-meissner-effect-in-hydride-supercondutors/ Hydrogen (like many of us) acts weird under pressure. Theory predicts that when crushed by the weight of more than a million times the Earth’s atmosphere, this light, abundant, normally gaseous element first becomes a metal, and even more strangely, a superconductor – a material that conducts electricity wit...

Quantum crystal of frozen electrons visualized 20.04.2024

Scientists at Princeton University have made a groundbreaking discovery by visualizing a Wigner crystal for the first time. https://thescience.dev/quantum-crystal-of-frozen-electrons-visualized/

Craving snacks after a meal? It might be food-seeking neurons, not an overactive appetite 20.04.2024

Individuals who often find themselves searching for snacks shortly after a substantial meal may be experiencing the effects of hyperactive neurons responsible for food-seeking behavior rather than an increased appetite. https://thescience.dev/craving-snacks-after-a-meal-it-might-be-food-seeking-neurons-not-an-overactive-appetite/

Strong magnetic fields spiraling at the edge of the Milky Way’s central black hole 20.04.2024

The recent study presents an unprecedented glimpse into the complex dynamics surrounding the supermassive black hole Sagittarius A star at the center of our Milky Way Galaxy. https://thescience.dev/strong-magnetic-fields-spiraling-at-the-edge-of-the-milky-ways-central-black-hole/

Neutrons can bind to quantum dots 20.04.2024

Neutrons can bind to quantum dots solely through the strong force, which typically only operates at the atomic nucleus level.  https://thescience.dev/neutrons-can-bind-to-quantum-dots/

Hiccups in a black hole are likely due to another punching black hole 20.04.2024

In a distant galaxy, astronomers have detected unusual activity from a supermassive black hole, previously known for its silence. https://thescience.dev/hiccups-in-a-black-hole-are-likely-due-to-another-punching-black-hole/

Catalysts tethered by DNA convert carbon dioxide into useful products 20.04.2024

https://thescience.dev/catalysts-tethered-by-dna-convert-carbon-dioxide-into-useful-products/ MIT chemical engineers have pioneered a method to transform carbon dioxide into carbon monoxide, a key intermediary for synthesizing valuable chemicals like ethanol and other fuels. 

Propelling atomically layered magnets toward green computers 20.04.2024

A notable shift in research has been towards the exploration of two-dimensional van der Waals magnets, a new class of magnetic materials that hold the promise of superior scalability and energy efficiency. https://thescience.dev/propelling-atomically-layered-magnets-toward-green-computers/

Molecular weaving makes polymer composites stronger 19.04.2024

At its most basic, chemistry is a lot like working with building blocks – but the materials are atoms and molecules. https://thescience.dev/molecular-weaving-makes-polymer-composites-stronger/

Better radiation detectors with the inspiration from Tetris 19.04.2024

The device, based on simple tetromino shapes, could determine the direction and distance of a radiation source, with fewer detector pixels. https://thescience.dev/better-radiation-detectors-with-the-inspiration-from-tetris/

How Microsoft and Quantinuum achieved reliable quantum computing 19.04.2024

By applying an innovative qubit-virtualization system to ion-trap hardware, Microsoft and Quantinuum were able to create four highly reliable logical qubits from only 30 physical qubits, while demonstrating an 800x improvement in error rate. https://thescience.dev/how-microsoft-and-quantinuum-achieved-reliable-quantum-computing/

Teaching Nature to Break Man-made Chemical Bonds 19.04.2024

For the first time, scientists have engineered an enzyme that can break stubborn man-made bonds between silicon and carbon that exist in widely used chemicals known as siloxanes, or silicones. The discovery is a first step toward rendering the chemicals, which can linger in the environment, biodegradable. https://thescience.dev/teaching-nature-to-break-man-made-chemical-bonds/

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