Tuesday, July 7, 2020

Cooler Experimental Liquid Battery

New Room-Temperature Liquid-Metal Battery Could Be the Path to Powering the Future

From the University of Texas at Austin


July 6, 2020 -- Austin, Texas — Researchers in the Cockrell School of Engineering at The University of Texas at Austin have built a new type of battery that combines the many benefits of existing options while eliminating their key shortcomings and saving energy.


Most batteries are composed of either solid-state electrodes, such as lithium-ion batteries for portable electronics, or liquid-state electrodes, including flow batteries for smart grids. The UT researchers have created what they call a “room-temperature all-liquid-metal battery,” which includes the best of both worlds of liquid- and solid-state batteries.


Solid-state batteries feature significant capacity for energy storage, but they typically encounter numerous problems that cause them to degrade over time and become less efficient. Liquid-state batteries can deliver energy more efficiently, without the long-term decay of sold-state devices, but they either fall short on high energy demands or require significant resources to constantly heat the electrodes and keep them molten.


The metallic electrodes in the team’s battery can remain liquefied at a temperature of 20 degrees Celsius (68 degrees Fahrenheit), the lowest operating temperature ever recorded for a liquid-metal battery, according to the researchers. This represents a major change, because current liquid-metal batteries must be kept at temperatures above 240 degrees Celsius.


“This battery can provide all the benefits of both solid- and liquid-state — including more energy, increased stability and flexibility — without the respective drawbacks, while also saving energy,” said Yu Ding, a postdoctoral researcher in associate professor Guihua Yu’s research group in the Walker Department of Mechanical Engineering. Ding is the lead author of a paper on the room-temperature battery the team published recently in Advanced Materials.


The battery includes a sodium-potassium alloy as the anode and a gallium-based alloy as the cathode. 
In the paper, the researchers note that it may be possible to create a battery with even lower melting points using different materials.


The room-temperature battery promises more power than today’s lithium-ion batteries, which are the backbone of most personal electronics. It can charge and deliver energy several times faster, the researchers said.


Because of the liquid components, the battery can be scaled up or down easily, depending on the power needed. The bigger the battery, the more power it can deliver. That flexibility allows these batteries to potentially power everything from smartphones and watches to the infrastructure underpinning the movement toward renewable energy.


“We are excited to see that liquid metal could provide a promising alternative to replace conventional electrodes,” Professor Yu said. “Given the high energy and power density demonstrated, this innovative cell could be potentially implemented for both smart grid and wearable electronics.”


The researchers have spent more than three years on this project, but the job isn’t done yet. Many of the elements that constitute the backbone of this new battery are more abundant than some of the key materials in traditional batteries, making them potentially easier and less expensive to produce on a large scale. However, gallium remains an expensive material. Finding alternative materials that can deliver the same performance while reducing the cost of production remains a key challenge.


The next step to increasing the power of the room-temperature battery comes in improving the electrolytes — the components that allow the electrical charge to flow through the battery.


“Although our battery cannot compete with high-temperature, liquid-metal batteries at the current stage, better power capability is expected if advanced electrolytes are designed with high conductivity,” Ding said.


https://news.utexas.edu/2020/07/06/new-room-temperature-liquid-metal-battery-could-be-the-path-to-powering-the-future/

Monday, July 6, 2020

We Know Little of Romance

New research suggests that people's ideal partner preferences do not reflect any unique personal insight.

by Karen Nikos-Rose, UC Davis


July 6, 2020 -- We all can describe our ideal partner. Perhaps they are funny, attractive and inquisitive. Or maybe they are down-to-earth, intelligent and thoughtful. But do we actually have special insight into ourselves, or are we just describing positive qualities that everyone likes?


New research coming out of the University of California, Davis, suggests that people's ideal partner preferences do not reflect any unique personal insight. The paper, "Negligible Evidence That People Desire Partners Who Uniquely Fit Their Ideals," was published last week in the Journal of Experimental Social Psychology.


"The people in our study could very easily list their top three attributes in an ideal partner," noted Jehan Sparks, former UC Davis doctoral student and lead author of the study. "We wanted to see whether those top three attributes really mattered for the person who listed them. As it turns out, they didn't."


In the research, more than 700 participants nominated their top three ideals in a romantic partner -- attributes like funny, attractive or inquisitive. Then they reported their romantic desire for a series of people they knew personally: Some were blind date partners, others were romantic partners, and others were friends.


Participants experienced more romantic desire to the extent that these personal acquaintances possessed the top three attributes. If Vanessa listed funny, attractive and inquisitive, she experienced more desire for partners who were funny, attractive and inquisitive.


"On the surface, this looks promising," notes Paul Eastwick, a professor in the UC Davis Department of Psychology and co-author.


"You say you want these three attributes, and you like the people who possess those attributes. But the story doesn't end there." -- Professor Paul Eastwick, UC Davis


What would a stranger say?


The researchers included a twist: Each participant also considered the extent to which the same personal acquaintances possessed three attributes nominated by some other random person in the study. For example, if Kris listed down-to-earth, intelligent and thoughtful as her own top three attributes, Vanessa also experienced more desire for acquaintances who were down-to-earth, intelligent and thoughtful.


"So in the end, we want partners who have positive qualities," said Sparks, "but the qualities you specifically list do not actually have special predictive power for you." The authors take these findings to mean that people don't have special insight into what they personally want in a partner.


Eastwick compared it to ordering food at a restaurant. "Why do we order off the menu for ourselves? Because it seems obvious that I will like what I get to pick. Our findings suggest that, in the romantic domain, you might as well let a random stranger order for you -- you're just as likely to end up liking what you get."


The findings have implications for the way people approach online dating. People commonly spend many hours perusing online dating profiles in the search of someone who specifically matches their ideals. Sparks and colleagues' research suggests that this effort may be misplaced.


"It's really easy to spend time hunting around online for someone who seems to match your ideals," notes Sparks. "But our research suggests an alternative approach: Don't be too picky ahead of time about whether a partner matches your ideals on paper. Or, even better, let your friends pick your dates for you."


https://www.sciencedaily.com/releases/2020/07/200706173449.htm

Sunday, July 5, 2020

Long Lasting Number 1 Songs


Only 39 songs have stayed at No. 1 on the chart for more than 10 weeks — here they all are

By cahlgrim@businessinsider.com (Callie Ahlgrim)

July 3, 2020



1. "You Light Up My Life" by Debby Boone in 1977

2. "Physical" by Olivia Newton-John in 1981

       3. "End of the Road" by Boyz II Men in 1992

       4. "I Will Always Love You" by Whitney Houston in 1992

       5. "I Swear" by All-4-One in 1994

       6. "I'll Make Love to You" by Boyz II Men in 1994

       7. "One Sweet Day" by Mariah Carey and Boyz II Men in 1995

       8. "Macarena (Bayside Boys Mix)" by Los Del Rio in 1996

       9. "Un-Break My Heart" by Toni Braxton in 1996

    10. "I'll Be Missing You" by Puff Daddy and Faith Evans in 1997

    11. "Candle in the Wind 1997/Something About the Way You Look Tonight" by Elton John in 1997

    12. "The Boy Is Mine" by Brandy and Monica in 1998

    13. "Smooth" by Santana featuring Rob Thomas in 1999

    14. "Maria Maria" by Santana featuring The Product G&B in 2000

    15. "Independent Women, Pt. 1" by Destiny's Child in 2000

    16. "Foolish" by Ashanti in 2002

    17. "Dilemma" by Nelly featuring Kelly Rowland in 2002

    18. "Lose Yourself" by Eminem in 2002

    19. "Yeah!" by Usher featuring Lil Jon and Ludacris in 2004

    20. "We Belong Together" by Mariah Carey in 2005

    21. "Gold Digger" by Kanye West featuring Jamie Foxx in 2005

    22. "Irreplaceable" by Beyonce in 2006

    23. "Low" by Flo Rida featuring T-Pain in 2008

    24. "Boom Boom Pow" by The Black Eyed Peas in 2009

    25. "I Gotta Feeling" by The Black Eyed Peas in 2009

    26. "We Found Love" by Rihanna featuring Calvin Harris in 2011

    27. "Blurred Lines" by Robin Thicke featuring T.I. and Pharrell in 2013

    28. "Happy" by Pharrell Williams in 2014

    29. "Uptown Funk!" by Mark Ronson featuring Bruno Mars in 2015

    30. "See You Again" by Wiz Khalifa featuring Charlie Puth in 2015

    31. "Hello" by Adele in 2015

    32. "One Dance" by Drake featuring WizKid and Kyla in 2016

    33. "Closer" by The Chainsmokers featuring Halsey in 2016

    34. "Shape of You" by Ed Sheeran in 2017

    35. "Despacito" by Luis Fonsi and Daddy Yankee featuring Justin Bieber in 2017

    36. "God's Plan" by Drake in 2018

   37. "In My Feelings" by Drake in 2018

   38. "Old Town Road" by Lil Nas X featuring Billy Ray Cyrus in 2019

   39. "The Box" by Roddy Ricch in 2020

                       https://us.yahoo.com/news/only-39-songs-stayed-no-123000290.html

Saturday, July 4, 2020

Catching COVID-19 at Work

By Sarah Crow for Best Life, July  1, 2020


“In a study published by the Centers for Disease Control and Prevention (CDC) in their Morbidity and Mortality Weekly Report (MMWR) this week, among the subjects who tested positive for COVID-19 and were employed, 81 percent said they worked outside their home within the last two weeks. In fact, 59 percent went to work every day. Few—17 percent—had the ability to telework.


“The research showed that 34 percent of individuals with coronavirus who knew their source of exposure believed they'd caught the virus from a work colleague.”


More at:

https://bestlifeonline.com/coronavirus-work-spread/?utm_source=msn&utm_medium=feed&utm_campaign=msn-feed

Friday, July 3, 2020

The Virus Is Getting Stronger

University of Sheffield – July 2, 200 -- New, more infectious strain of Covid-19 now dominates global cases of virus


  • Researchers tracking the spread of Covid-19 around the world have discovered that viruses with a new variant have now overtaken the original strain
  • Analysis of the virus’s genome sequence found a mutation called ‘D614G’ made the virus more infectious than the original strain, but did not cause more severe disease
  • The global research team, including scientists from the University of Sheffield, had previously noted the rapidly increasing prevalence of viruses with D614G throughout the world

More at:

https://www.sheffield.ac.uk/news/nr/new-strain-covid-more-infectious-1.892276

Thursday, July 2, 2020

Plasma Propulsion Technology

A Scientist Says He’s Built a Jet Engine That Turns Electricity Directly Into Thrust


Dan Robitzski, writing for Futurism on July 1, 2020, discusses an interview he had with Jau Tang, a professor at Wuhan University who has worked hard to turn electricity into thrust.  This link discusses the potential and problems inherent in plasma propulsion:


                     https://futurism.com/scientist-jet-engine-electricity-thrust

Wednesday, July 1, 2020

Human Brains Versus COVID-19

Lab-Grown ‘Mini-Brains’ Suggest COVID-19 Virus Can Infect Human Brain Cells

From Johns Hopkins Medicine


June 30, 2020 -- A multidisciplinary team from two Johns Hopkins University institutions, including neurotoxicologists and virologists from the Bloomberg School of Public Health and infectious disease specialists from the school of medicine, has found that organoids (tiny tissue cultures made from human cells that simulate whole organs) known as “mini-brains” can be infected by the SARS-CoV-2 virus that causes COVID-19.

The results, which suggest that the virus can infect human brain cells, were published online June 26, 2020, in the journal ALTEX: Alternatives to Animal Experimentation. 

Early reports from Wuhan, China, the origin of the COVID-19 pandemic, have suggested that 36% of patients with the disease show neurological symptoms, but it has been unclear whether or not the virus infects human brain cells. In their study, the Johns Hopkins researchers demonstrated that certain human neurons express a receptor, ACE2, which is the same one that the SARS-CoV-2 virus uses to enter the lungs. Therefore, they surmised, ACE2 might also provide access to the brain.


When the researchers introduced SARS-CoV-2 virus particles into a human mini-brain model, the team found — for what is believed to be the first time — evidence of infection by and replication of the pathogen.


The human brain is well-shielded against many viruses, bacteria and chemical agents by the blood-brain barrier, which in turn, often prevents infections of the brain. “Whether or not the SARS-CoV-2 virus passes this barrier has yet to be shown,” notes senior author Thomas Hartung, M.D., Ph.D., chair for evidence-based toxicology at the Bloomberg School of Public Health. “However, it is known that severe inflammations, such as those observed in COVID-19 patients, make the barrier disintegrate.”


The impermeability of the blood-brain barrier, he adds, also can present a problem for drug developers targeting the brain.


The impact of SARS-CoV-2 on the developing brain is another concern raised by the study. Previous research from Paris-Saclay University has shown that the virus crosses the placenta, and embryos lack the blood-brain barrier during early development. “To be very clear,” Hartung says, “we have no evidence that the virus produces developmental disorders.”


However, the mini-brains — which model the growing human brain — contain the ACE2 receptor from their earliest stages of development. Therefore, Hartung says, the findings suggest that extra caution should be taken during pregnancy.


“This study is another important step in our understanding of how infection leads to symptoms, and where we might tackle the COVID-19 disease with drug treatment,” says William Bishai, M.D., Ph.D., professor of medicine at the Johns Hopkins University School of Medicine, and leader of the infectious disease team for the study.


The human stem cell-derived mini-brain models — known as BrainSpheres — were developed at the Bloomberg School of Public Health four years ago. They were the first mass-produced, highly standardized organoids of their kind, and have been used to model a number of diseases, including infections by viruses such as Zika, dengue and HIV.

https://www.hopkinsmedicine.org/news/newsroom/news-releases/covid-19-story-tip-lab-grown-mini-brains-suggest-covid-19-virus-can-infect-human-brain-cells

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https://www.hopkinsmedicine.org/news/newsroom/news-releases/covid-19-story-tip-lab-grown-mini-brains-suggest-covid-19-virus-can-infect-human-brain-cells

https://www.hopkinsmedicine.org/news/newsroom/news-releases/covid-19-story-tip-lab-grown-mini-brains-suggest-covid-19-virus-can-infect-human-brain-cells

https://www.hopkinsmedicine.org/news/newsroom/news-releases/covid-19-story-tip-lab-grown-mini-brains-suggest-covid-19-virus-can-infect-human-brain-cells

For information from Johns Hopkins Medicine about the coronavirus pandemic, visit hopkinsmedicine.org/coronavirus. For information on the coronavirus from throughout the Johns Hopkins enterprise, including the Johns Hopkins Bloomberg School of Public Health and The Johns Hopkins University, visit coronavirus.jhu.edu.