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1,000+ results for "General Relativity"

Using holograms to illuminate de Sitter space

Scientists at Kyoto University propose a novel approach using holograms to approximate the universe's expansion in de Sitter space. The model uses conformal field theory and a positive integer for the cosmological constant, enabling the identification of the first example of two-dimensional CFT.

SourceKyoto University·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateJul 19, 2022

Spinal anesthesia associated with more pain, prescription analgesic use after hip surgery compared with general anesthesia

A randomized controlled trial found that spinal anesthesia was associated with worse pain immediately after surgery, but differences diminished over time. Researchers also found higher rates of pain reliever prescriptions at 60 days in the spinal anesthesia group.

SourceAmerican College of Physicians·JournalAnnals of Internal Medicine·TypeRandomized controlled/clinical trial·DateJun 13, 2022

Revisiting the history of CPT theorem

The CPT theorem, a fundamental concept in quantum field theory, has its roots in the early 20th century revolution of quantum mechanics and relativity. The new paper reveals how this theorem's significance evolved over time, from being initially overlooked to becoming a cornerstone of modern physics.

SourceSpringer·JournalThe European Physical Journal H·DateMay 27, 2022

Australia touts success of dedicated general practice respiratory clinics during COVID-19 pandemic

The Australian General Practice Respiratory Clinic program effectively scaled up in response to the COVID-19 pandemic, providing rapid infection control measures and anonymized patient data for surveillance reports. By September 2020, 150 clinics had opened across the country, demonstrating their integration with other health services.

SourceAmerican Academy of Family Physicians·JournalThe Annals of Family Medicine·DateMay 24, 2022

First image of the beastly black hole at the heart of our galaxy

The Event Horizon Telescope captured the first image of Sagittarius A*, a hot and dense black hole surrounded by superheated gas, improving our understanding of black holes. The Frontera supercomputer supported this achievement through innovative data-driven astronomy.

SourceUniversity of Texas at Austin, Texas Advanced Computing Center·JournalThe Astrophysical Journal Letters·TypeComputational simulation/modeling·DateMay 12, 2022

Illinois astronomers help capture first image of Milky Way's black hole

A team of University of Illinois researchers, led by Charles Gammie, has captured the first direct visual evidence of a supermassive black hole at the center of the Milky Way. The image reveals a dark central region surrounded by a bright ringlike structure, providing valuable clues about the workings of such giants.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalThe Astrophysical Journal Letters·TypeComputational simulation/modeling·DateMay 12, 2022

FDA approved new immunotherapy regimen for patients with melanoma based on Johns Hopkins Research

The FDA has approved a novel combination therapy of relatlimab and nivolumab for patients with metastatic or inoperable melanoma. The treatment significantly delayed cancer progression time compared to nivolumab alone. LAG-3 blockade reinvigorated T cell anti-tumor activity, establishing the pathway as the third immune checkpoint target.

SourceJohns Hopkins Medicine·JournalNew England Journal of Medicine·DateMar 23, 2022

Dark energy: Neutron stars will tell us if it’s only an illusion

Researchers used simulations to compare Einstein's theory and modified gravity, finding that 'dark gravity' may be equally good at explaining data from binary neutron star collisions. This could lead to the discovery of new phenomena detectable by next-generation gravitational interferometers.

SourceScuola Internazionale Superiore di Studi Avanzati·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateMar 3, 2022

International collaboration offers new evidence of a gravitational wave background

An international team of astronomers has found strong evidence for an ultra-low frequency signal, consistent with the expected characteristics of a gravitational wave background. The discovery was made using data from 65 millisecond pulsars, combining independent data sets from around the world.

SourceUniversity of Birmingham·JournalMonthly Notices of the Royal Astronomical Society·TypeData/statistical analysis·DateJan 12, 2022

General anaesthesia impacts brain functioning less than other patient risk factors, data spanning 12 years suggests

A Dutch study of over 1,800 adults found that repeated general anaesthetics have little impact on long-term cognitive decline compared to patient factors such as high blood pressure, type 2 diabetes, smoking, and educational level. Cognitive decline was more strongly linked to these factors than to the number of surgeries under general...

SourceThe European Society of Anaesthesiology and Intensive Care (ESAIC)·JournalEuropean Journal of Anaesthesiology·DateDec 17, 2021

Einstein wins again

Researchers have conducted a 16-year experiment to challenge Einstein's theory with pulsars, revealing relativistic effects for the first time and confirming predictions with precision. The study uses the unique Double Pulsar system, which consists of two orbiting radio pulsars, providing an ideal laboratory for testing gravity theories.

SourceWest Virginia University·JournalPhysical Review X·DateDec 14, 2021

Challenging Einstein’s greatest theory with extreme stars

A team of international researchers challenged Einstein's theory of general relativity using pulsars as a cosmic laboratory. They detected new relativistic effects, including light deflection and time dilation, with unprecedented precision. The study provides significant insights into gravity theories and the fundamental forces of nature.

SourceUniversity of East Anglia·JournalPhysical Review X·TypeObservational study·DateDec 13, 2021

The uneven universe

Researchers develop new model using Mori-Zwanzig formalism to account for uneven matter distribution in the universe. The model predicts a deviation in cosmic expansion speed, offering an opportunity for experimental testing and resolving the enigma of dark energy.

SourceUniversity of Münster·JournalPhysical Review Letters·TypeNews article·DateDec 3, 2021

Study: NFL failed to follow its own policy in punishing violent offenses

A study published in the Journal of Sport and Social Issues found that NFL players who committed general violence received shorter suspensions than those who committed violence against women. The league punished players for drug offenses twice as much as those for general violent behavior, according to researchers.

SourceUniversity of Arkansas·JournalJournal of Sport and Social Issues·TypeContent analysis·DateNov 18, 2021

Jet from giant galaxy M87: Computer modelling explains black hole observations

Theoretical physicists modelled the region around M87's supermassive black hole, confirming that gravity plays a key role in accelerating particles out to thousands of light years. The findings provide further evidence for Einstein's theory of general relativity and its application to astrophysical phenomena.

SourceGoethe University Frankfurt·JournalNature Astronomy·TypeComputational simulation/modeling·DateNov 4, 2021

Securing data transfers with relativity

A team from UNIGE has developed a new system to secure data transfers using the principle of relativity. This approach enables users to identify themselves confidentially without disclosing personal information, making it suitable for cryptocurrencies and blockchain applications.

SourceUniversité de Genève·JournalNature·TypeNews article·DateNov 3, 2021

Comparison of a 5 F microtube-irrigated ablation catheter and a general ablation catheter in the treatment of resistant hypertension with renal denervation

A new study published in Cardiovascular Innovations and Applications found that a microtube-irrigated ablation catheter was more effective than a general ablation catheter in reducing blood pressure in patients with resistant hypertension. The study, which followed 60 patients for 12 months, also showed that the microtube-irrigated cat...

SourceCompuscript Ltd·JournalCardiovascular Innovations and Applications·DateOct 26, 2021

Volcanic memories: black holes give shape to bubbles, rings and "intergalactic smoke" filaments

A team of researchers observed the evolution of warm gas coming from an active black hole for unprecedented detail, revealing structures reminiscent of volcanic eruptions. These gas bubbles, rings, and 'intergalactic smoke' filaments are formed when black holes consume surrounding matter and release energy, influencing galaxy evolution.

SourceUniversità di Bologna·JournalNature Astronomy·DateOct 18, 2021

Excess deaths in people with mental health conditions increased during the COVID-19 pandemic

The study found that deaths from COVID-19 among people with learning disabilities were nine times higher than the general population, while those with eating disorders saw a five-fold increase. The research highlighted the need to prioritize vaccination and physical health care for vulnerable groups during the pandemic.

SourceKing's College London·JournalThe Lancet·TypeData/statistical analysis·DateOct 8, 2021

Aiming for the sky and beyond: WVU helps net $2 million NSF award to build international gravitational wave detection network

A nearly $2 million NSF grant will accelerate the hunt for low-frequency gravitational waves using high-precision timing observations of exotic stars called millisecond pulsars. WVU's Maura McLaughlin is principal investigator on the project, which aims to discover new types of gravitational waves and expand the IPTA's reach globally.

Astronomers spot the same supernova three times — and predict a fourth sighting in 16 years

Researchers used gravitational lensing to observe the same exploding star in three different locations and predict a fourth image will appear in the sky by 2037. This study provides an opportunity to explore the expansion of our universe and sheds light on cosmological riddles, including the expansion rate.

SourceUniversity of Copenhagen - Faculty of Science·JournalNature·TypeObservational study·DateSep 13, 2021

Magnetic ‘balding’ of black holes saves general relativity prediction

A team of researchers from the Flatiron Institute and Princeton University has found that the magnetic field around a black hole quickly decays when surrounded by plasma. This process, known as 'magnetic reconnection,' rapidly drains the magnetic field and could explain flares seen near supermassive black holes.

SourceSimons Foundation·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateJul 27, 2021