Tuesday, May 20, 2025

New Movement Empowers Cyclists and Motorcyclists to Personalize Their Journeys Through Custom Canvas Panniers

United States – May 21, 2025 – A rising wave of enthusiasm is sweeping through the cycling and motorcycling communities, as more riders embrace the art of sewing custom canvas bicycle or motorcycle panniers. This burgeoning movement allows adventurers, commuters, and tourers to craft personalized, highly functional luggage tailored precisely to their needs and individual style. Beyond the commercial options, riders are discovering the enduring satisfaction and superior utility of bespoke panniers, built with their own hands and designed for their unique travels.

The concept of custom-made gear for two-wheeled transport is gaining momentum, fueled by a desire for durabilitywaterproofing, and a perfect fit that off-the-shelf solutions often cannot provide. Enthusiasts are finding that the act of designing and constructing their own bicycle panniers or motorcycle panniers transforms their approach to travel, offering solutions optimized for specific bicycles, racks, and cargo requirements. This growing trend reflects a broader appreciation for craftsmanship and self-sufficiency within the riding community.

At the heart of this movement is the versatile and robust material: canvas. Known for its strength, timeless aesthetic, and ability to be treated for enhanced waterproofingcanvas offers an ideal medium for creating luggage that can withstand the rigors of the road and trail. Whether it is a rugged waxed canvas for classic touring bikes or a durable duck canvas for daily commutes, the choice of fabric allows for tailoring the panniers to the specific demands of each adventure. This material choice allows for an alignment with both the practical demands of transport and the aesthetic desires of the rider.

The process of creating these custom bags typically involves a dedicated sewing machine, often a heavy-duty or industrial model capable of handling multiple layers of thick fabric and strong threads. Crafting personalized patterns is a foundational step, allowing for precise control over the panniers' dimensions, internal organization, and external features such as pockets and closures. Many resources are now available, from online tutorials to dedicated workshops, guiding individuals through the DIY process, empowering them to transform rolls of canvas into essential travel companions. The rise of interest in this custom work emphasizes the increasing appreciation for designing gear that functions as an extension of the vehicle and the individual.

The construction of custom panniers also necessitates careful consideration of mounting systems. For bicycle setups, this involves integrating robust hooks and straps that securely attach to existing racks, ensuring stability and preventing interference with pedal stroke. For motorcycle applications, the rack and attachment points are even more critical, often requiring specialized hardware to account for exhaust heat, vibration, and higher speeds. The attention to detail in stitching and reinforcement is paramount, as these bags are subjected to significant stresses during touring or bikepacking expeditions.

This shift towards personalized gear speaks to the core needs of cyclists and motorcyclists who seek luggage that is not just functional, but also a reflection of their riding philosophy. Custom canvas panniers represent a fusion of utility and personal expression, ensuring that every piece of gear contributes to a cohesive and efficient journey. The freedom to select specific materials, dictate dimensions, and integrate unique features positions custom-made panniers as a superior alternative for those unwilling to compromise on their travel requirements.

The online sphere has become a nexus for this movement, with forums, blogs, and video platforms sharing knowledge, designs, and experiences. Individuals interested in exploring this avenue can find numerous resources to begin. Basic "bicycle pannier sewing pattern" searches on marketplaces like Etsy yield a variety of templates, often with recent reviews, indicating ongoing engagement. The availability of diverse materials online and at specialty fabric stores also supports this growing community, making it easier than ever to source a Heavy Duty Sewing Machinehigh-quality canvas, thread, and robust hooks for mounting.

The movement for sewing custom canvas bicycle or motorcycle panniers is more than just a hobby; it is a testament to the ingenuity and resourcefulness of riders who prefer to create their own solutions. It empowers individuals to develop luggage that not only performs flawlessly but also carries the unique signature of its maker, making every journey truly personal. As riders continue to seek tailored solutions for their long-distance travel and daily needs, the craft of custom pannier sewing is set to expand its influence, solidifying its place as a significant aspect of modern two-wheeled adventuring.

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George Wendt, Beloved Actor Who Brought Norm Peterson to Life on ‘Cheers,’ Dies at 76

United States – May 21, 2025

 The world of television and comedy mourns the passing of George Wendt, the acclaimed actor universally adored for his portrayal of the quintessential barfly, Norm Peterson, on the iconic NBC sitcom Cheers. Wendt passed away at the age of 76, leaving behind a profound legacy of laughter and a character etched into the hearts of millions. His death marks the quiet end of an era for fans who found comfort and cheer in the familiar sight of Norm at his favorite Boston barstool.

For eleven seasons, from 1982 to 1993, George Wendt's presence as Norm was a cornerstone of https://en.wikipedia.org/wiki/Cheers, a show that quickly ascended to become one of television's most celebrated and enduring comedies. As Norm, Wendt became a symbol of everyday camaraderie, his dry wit and perpetually optimistic outlook on beer consumption providing consistent comedic relief. The character's signature entrance, met with a resounding "Norm!" from the bar's patrons, remains one of the most recognizable and cherished moments in sitcom history. This ritual, along with Norm's endless, often witty, excuses for avoiding his wife, Vera, and his ongoing tab, formed a bond with viewers that transcended the screen.

Wendt's ability to embody Norm Peterson with such warmth and natural humor made the character much more than a punchline; he was a relatable, beloved fixture of the fictional https://en.wikipedia.org/wiki/Boston establishment. Norm's philosophical musings, usually delivered with a beer in hand, often encapsulated the everyman's struggle and joy, resonating with audiences who saw a piece of themselves, or their own favorite bar regular, in him. His performances garnered six consecutive https://en.wikipedia.org/wiki/Primetime_Emmy_Awards nominations for Outstanding Supporting Actor in a Comedy Series, a testament to his consistent excellence and the character's immense popularity.

Born on October 17, 1948, in https://en.wikipedia.org/wiki/Chicago, https://en.wikipedia.org/wiki/Illinois, George Wendt's journey into entertainment began at the legendary https://en.wikipedia.org/wiki/The_Second_City improvisational comedy troupe. It was there that he honed the comedic timing and improvisational skills that would later define his most famous role. This foundational training allowed him to seamlessly integrate into the ensemble cast of Cheers, creating a dynamic that felt authentic and improvised, despite the meticulously crafted scripts.

While Norm Peterson remains his most celebrated role, Wendt's career extended far beyond the walls of Cheers. He made memorable appearances in numerous films, including Fletch (1985), Gung Ho (1986), House (1986), Dreamscape (1984), Man of the House (1995), and Spice World (1997). His television work included guest roles on series such as Sabrina the Teenage Witch and House, demonstrating his range across different genres and formats. Wendt also lent his distinctive voice to animated projects and maintained a presence on stage, notably appearing on Broadway in Art and Hairspray, showcasing his versatility as an actor who could command both the screen and the theater.

Tributes from across the entertainment world have begun to pour in, reflecting on Wendt's talent and impact. Co-stars from Cheers, including https://en.wikipedia.org/wiki/Ted_Danson, https://en.wikipedia.org/wiki/Rhea_Perlman, and https://en.wikipedia.org/wiki/John_Ratzenberger, have shared their fond memories of working alongside him, speaking to his professionalism, kindness, and unwavering comedic genius. The passing of Wendt brings a wave of nostalgia for a golden age of television, reminding many of the comfort and joy Cheers brought into their homes.

George Wendt's legacy is defined not just by the character of Norm, but by his genuine talent as a performer who could elicit profound connection and laughter with seemingly effortless ease. His portrayal of Norm Peterson transformed a supporting role into a cultural phenomenon, proving the power of a well-crafted character and the actor behind it. He represented the everyman, the friend at the bar, and the constant presence that made a fictional pub feel like home.

News of George Wendt's passing has been widely reported. AP News confirmed his death, highlighting his career and the beloved barfly he created. CBS News provided details on the comedian and actor's life, while Fox News also reported on the news, emphasizing his iconic role. Yahoo News, citing USA Today, also covered the news, acknowledging him as the beloved Norm from NBC's "Cheers." His passing is a moment of remembrance for his contributions to television history.

The warmth and humor George Wendt brought to the screen as Norm will continue to resonate with generations of viewers. His unique ability to make an entire audience feel like they were sitting right there at the bar with him is a rare gift in entertainment. He will be remembered not only for the laughs he provided but for creating a character that became a true friend to all who watched.

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14,000 years ago, the most powerful solar storm ever recorded hit Earth. 'This event establishes a new worst-case scenario'

NASA names geomagnetic storm for 1st time | Most powerful solar storm hit Earth 14,000 years ago | Mysterious white streak spotted over US skies
Created for znamenski.spacecom@blogger.com | Web Version
May 20, 2025
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The Launchpad
NASA names geomagnetic storm for 1st time
(Lorena Sopena/Europa Press via Getty Images)
The powerful geomagnetic storm that sparked beautiful auroras across the world in May of 2024 was the first to receive a name - and its namesake is a space weather scientist who NASA scientists say was a champion in the field, and who passed away suddenly that same year.
Read More
Most powerful solar storm hit Earth 14,000 years ago
(Mark Garlick/Science Photo Library/Getty Images)
An extreme solar storm hit Earth some 14,300 years ago, more powerful than any other such event known in human history, a new analysis of radiocarbon data has revealed. The solar storm, the only known to have taken place in the last Ice Age, long eluded scientists as they lacked appropriate models for interpreting radiocarbon data from glacial climate conditions. But a new study by a team from the Oulu University in Finland has taken a stab at the measurement interpretation with eye-opening results. Using a novel chemistry-climate model, the team found that the marked spike in the carbon-14 isotope detected in fossilized tree rings was caused by a solar storm more than 500 times as powerful as the 2003 Halloween Solar Storm, which was the most intense in modern history.
Read More
Skywatching
Mysterious white streak spotted over US skies
(Mike Lewinski (Flickr))
The night sky offered lucky skywatchers an unexpected double feature on May 17 -- a surprise geomagnetic storm and a mysterious white plume slicing through the auroras. The moderate (G2 class) geomagnetic storm came as quite a surprise, kicking off early Friday (May 16) after Earth caught the glancing blow of a coronal mass ejection (CME). The CME was launched during a colossal filament eruption on May 12 from the sun's northern hemisphere. Initially expected to miss Earth, the "bird-wing" ejecta was wider than predicted, with some of the material striking Earth 4 days after it left the sun. But the real head-turner came when a streak of bright white light lit up the sky over Colorado and other parts of the U.S. At first glance, you could be mistaken for thinking it was a strange version of STEVE -- a rare atmospheric phenomenon that can accompany the northern lights. But skywatchers quickly realized it was something entirely different.
Read More
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Spaceflight
China's private Ceres-1 rocket launches from a ship at sea
(VCG/VCG via Getty Images)
The Chinese company Galactic Energy launched its solid-propellant rocket this morning (May 19) from a ship at sea. The Ceres-1 rocket launched today from the waters off the east coast of China's Shandong Province. The Taiyuan Satellite Launch Center coordinated the launch, which sent four Tianqi satellites into low Earth orbit (LEO). Liftoff occurred at 3:38 a.m. EDT (0738 GMT; 3:38 p.m. local Beijing time). This was the fifth launch of Ceres-1 from a sea-based platform. The four Tianqi satellites join a constellation of Internet of Things (IoT) data-connectivity spacecraft operated by the Beijing-based company Guodian Gaoke.
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Email
Science & Astronomy
Not-so-clean rooms: Microbe species found in NASA facility
(NASA/JPL-Caltech/UA/Lockheed Martin)
Life, as they say, finds a way -- even in the most sterile places on Earth. Scientists from NASA's Jet Propulsion Laboratory (JPL) in Southern California, along with researchers in India and Saudi Arabia, have discovered 26 previously unknown bacterial species in the clean rooms that were used to prep NASA's Phoenix Mars lander for its August 2007 launch. Clean rooms are decontaminated and intensely controlled environments specifically designed to prevent microbial life from hitching a ride into space. But some microorganisms, known as extremophiles, show impressive resilience in inhospitable environments, whether that's the vacuum of space, hydrothermal vents on the slopes of undersea volcanoes, or even NASA clean rooms.
Read More
SpaceX
Starship gets updated FAA launch license ahead of Flight 9
(SpaceX)
SpaceX still has some boxes to tick before it can launch the ninth test flight of its Starship megarocket. Friday (May 15), the U.S. Federal Aviation Administration (FAA) announced that it has approved license modifications ahead of Starship Flight 9, which will lift off from SpaceX's Starbase site in South Texas. That license officially grants SpaceX's request to boost the number of Starship launches from Starbase per year by a factor of five, to 25 -- something that the agency greenlit earlier this month in an environmental assessment.
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Email
Search for Life
Dark streaks on Mars may not come from water after all
(NASA)
First identified in the 1970s by NASA's Viking mission, long, dark markings snake down Martian slopes, sometimes stretching across Mars' surface for hundreds of feet. Scientists have watched some of these markings exist for decades, while others, known as "recurring slope lineae," appear to fade in a single season. Nonetheless, they all starkly stand out against the planet's dusty red surface.
Read More
 

Seminars Digest, Vol 75, Issue 3

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Today's Topics:

1. Friday 23.05.2025 (info+seminars@itp.ac.ru)
2. Thursday 22.05.2025 - ITP/CAS Colloquium (info+seminars@itp.ac.ru)


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Message: 1
Date: Tue, 20 May 2025 10:02:01 +0300
From: info+seminars@itp.ac.ru
To: staff@itp.ac.ru, students@itp.ac.ru, seminars@itp.ac.ru
Subject: [Landau ITP Seminars] Friday 23.05.2025
Message-ID: <xcdYmSgA8q7OSutYr913IkSY6i7h2y65Y5fhw1k8Uko@wwwserv2>
Content-Type: text/plain; charset=UTF-8

Уважаемые коллеги!

На заседании Ученого совета ИТФ в пятницу 23.05 в 11:30 будет заслушан 1 доклад:
1). Харинцев С. С. (Институт физики, Казанский федеральный университет)
Нелокальная фотоника разупорядоченных сред

Нелокальная фотоника – это новое научное направление, которое изучает взаимодействие света со средами, обладающими сильной пространственной дисперсией. Учет пространственной дисперсии (или пространственной нелокальности) приводит к существенно новым физическим принципам взаимодействия света и вещества. В частности, в нелокальных средах возникают непрямые оптические переходы, обусловленные пространственным синхронизмом электронов и фотонов, локализованных вблизи структурных неоднородностей. В основе данного явления лежит увеличение импульса фотонов при их пространственной локализации.

Примером нелокальных сред являются двойные системы «кристалл-жидкость», структура которых обладает дальним порядком и локальным беспорядком. К таким системам относятся галоидные перовскиты, жидкие кристаллы, коллоидные системы, высокоэнтропийные кристаллы, полимеры, вода, мицеллы, белки и т.д. [1, 2].

В докладе будут рассмотрены такие полупроводники как кремний [3] и металл-галоидные перовскиты [4], в которых наблюдается широкополосное неупругое рассеяния света, известного как электронное комбинационное рассеяние света [1-3]. Будет показано, что электронное рассеяние света вызывает аномальное увеличение показателя преломления гетерогенных сред и приводит к их оптическому нагреву. В лекции будут рассмотрены некоторые приложения в области оптоэлектроники, фотовольтаики и биомедицины.

[1] S. S. Kharintsev, E. I. Battalova, V. Mkhitaryan, V. M. Shalaev. How near-field photon momentum drives unusual optical phenomena: opinion // Optical Materials Express, 2024. – V. 14. – P. 2017-2022.

[2] S. S. Kharintsev, E. I. Battalova, A. I. Noskov, J. Merham, E. O. Potma, D. A. Fishman. Photon-Momentum-Enabled Electronic Raman Scattering in Silicon Glass // ACS Nano 2024, – V. 18. – P. 9557–9565

[3] S. S. Kharintsev, A. I. Noskov, E. I. Battalova, L. Katrivas, A. B. Kotlyar, J. G. Merham, E. O. Potma, V. A. Apkarian, D. A. Fishman. Photon Momentum Enabled Light Absorption in Silicon // ACS Nano 2024, – V. 18. – P. 26532–26540

[4] S. S. Kharintsev, E. I. Battalova, I. A. Matchenya, A. G. Nasibulin, A. A. Marunchenko, A. P. Pushkarev. Extreme Electron-Photon Interaction in Disordered Perovskites // Adv. Sci. 2024, – V. 11. – P. 2405709.

ID и пароль онлайн-трансляций в Zoom те же, что и для предыдущих трансляций семинаров и докладов на Ученом совете:
https://zoom.us/j/96899364518?pwd=MzBsR2lYT0lYL2x2b1oyNU9LeWlWUT09
Meeting ID: 968 9936 4518
Пароль: 250319

При числе желающих не менее 5 будет организован автобус.
Для записи на автобус из Москвы в Черноголовку необходимо до 18:00 четверга отправить письмо на адрес электронной почты bus@itp.ac.ru
После этого записавшимся до 20:00 поступит подтверждение об отправке или неотправке автобуса в зависимости от числа записавшихся.
Запись на обратный автобус - на Ученом совете.

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Message: 2
Date: Tue, 20 May 2025 10:02:02 +0300
From: info+seminars@itp.ac.ru
To: staff@itp.ac.ru, students@itp.ac.ru, seminars@itp.ac.ru
Subject: [Landau ITP Seminars] Thursday 22.05.2025 - ITP/CAS
Colloquium
Message-ID: <QCE8hEWD97hSiP94pn2AfTLTutKYy8p4jCCbfM@wwwserv2>
Content-Type: text/plain; charset=UTF-8

Уважаемые коллеги!

На онлайн коллоквиум по теоретической физике в четверг 22.05 будут заслушаны 2 доклада:

1) 10:00:00 по московскому времени: Yakov Fominov (L.D. Landau Institute of Theoretical Physics Russian Academy of Sciences)
Superconducting Diode Effect

In this talk, I will discuss the rapidly developing field of nonreciprocal effects in superconducting transport, also known as the superconducting diode effect. The essence of this phenomenon lies in the asymmetry of a system's properties when a supercurrent flows in opposite directions. Such an effect requires the simultaneous breaking of time-reversal and inversion symmetries. The underlying physical mechanisms can vary significantly, including effects of magnetic (and, more specifically, exchange) fields, spin-orbit interactions, and geometric asymmetry of the system. These effects can lead to nonreciprocal charge transport both in systems homogeneous along the current direction and in Josephson junctions.

BIOGRAPHY

Prof. Yakov Fominov holds two PhDs in Theoretical Physics — one from the Kapitza Institute (Russia, 2003) and another from the University of Twente (Netherlands, 2003) — as well as a Doctor of Physics and Mathematics degree from the Landau Institute (2019). Since 2005, he has been a permanent member of the Landau Institute, where he currently serves as Deputy Director. Since 2023, he has also headed the Chair for Problems in Theoretical Physics (Gor'kov Theory Group) at the Moscow Institute of Physics and Technology. His research focuses on the superconducting proximity effect in hybrid structures (including normal and ferromagnetic metals), the Josephson effect in mesoscopic junctions, odd-frequency superconductivity, and superconducting spin valves.

2) 11:00:00 по московскому времени: Jiang-Ping Hu (Institute of Physics Chinese Academy of Sciences)
Time Reversal Symmetry Breaking in Kagome Lattices

In this talk, I will discuss quantum states in Kagome lattices with the time reversal symmetry breaking. Both theory and recent experimental progress will be reviewed. A brief review of this type of states will be given for cuprates and Kagome lattice superconductors. We will discuss a specific model to show the existence of loop current states which break the time reversal symmetry as ground states. In particular, we will address the superconducting diode effect can be used to probe such quantum states.

BIOGRAPHY

Prof. Jiang-Ping Hu is currently a researcher and the Deputy Director of the Institute of Physics, Chinese Academy of Sciences. He received his BS from Peking University in 1994, MS from the Institute of Theoretical Physics of the Chinese Academy of Sciences in 1997 and PhD from Stanford University in 2002. His main research interests are theoretical condensed matter physics. He has made seminal contributions to topological physics, high-temperature superconductivity, and strongly correlated electron theory, with more than 280 publications and an H-index of 85. He was selected to be a Fellow of the American Physical Society in 2018, and was awarded the Zhou Peiyuan Prize for Physics in 2019, a New Stone Researcher in 2023.

Zoom meeting ID: 890 7187 2369
Пароль: 544845

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End of Seminars Digest, Vol 75, Issue 3
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