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The Sun is nowadays observed using di?erent techniques that provide an almost instantaneous 3-D map of its structure. Of particular interest is the studyofthevariabilityinthesolaroutputproducedbythedissipationofm- netic energy on di?erent spatial and temporal scales – the so-called magnetic activity. The 11-year cycle is the main feature describing this phenomenon. Apart from its intrinsic scienti?c interest, this topic is worth studying because of the interaction of such processes with the terrestrial environment. A ?eet of space and ground-based observatories are currently monitoring the behaviour of our star on a daily basis. However, solar activity varies not only on this decadal time-scale, as has been attested mainly through two methods: (a) records of the number of sunspots observed on the solar surface from 1610, and (b) the records of 14 10 cosmogenic isotopes, such as Cand Be, measured in tree-rings and i- cores, respectively. The study of the long-term behaviour of solar activity may be comp- mented by the study of historical accounts describing phenomena directly or indirectly related to solar activity. Numerous scienti?c and non-scienti?c d- uments have reported these events and we can make use of them as a proxy of solar activity in past times.
It was the place where blues, pop, and country merged into rock and roll--and the sounds that emerged from the tiny storefront at 706 Union Avenue in Memphis are still reverberating around the world nearly fifty years after they were made. On Sam Phillips's bright yellow Sun Records label spun a mind-bendingly eclectic body of music by Carl Perkins, Jerry Lee Lewis, Roy Orbison, Charlie Rich, Junior Parker, Johnny Cash, and many others. And one day, a gawky nobody named Elvis Presley walked in.
In Memphis, Tennessee, in the 1950s, there was hard-edged blues playing on Beale Street, and hillbilly boogie on the outskirts of town. But at Sam Phillips’ Sun Records studio on Union Avenue, there was something different going on – a whole lotta shakin’, rockin’, and rollin’. This is where rock ’n’ roll was born. Sun Records: the company that launched Elvis Presley, Jerry Lee Lewis, Johnny Cash, Roy Orbison, and Carl Perkins. The label that brought the world, “Blue Suede Shoes,” “Whole Lotta Shakin’ Goin’ On,” “Breathless,” “I Walk the Line,” “Mystery Train,” “Good Rockin’ Tonight.” The Birth of Rock ’n’ Roll: 70 Years of Sun Records is the official history of this legendary label, and looks at its story in a unique way: through the lens of 70 of its most iconic recordings. From the early days with primal blues artists like Howlin’ Wolf and B.B. King to long nights in the studio with Elvis and Jerry Lee Lewis, you will see how the label was shaped and how it redefined American music. Accompanying the recordings is the label’s origin story and a look at the mission of the label today, as well as “Sun Spot” sidebars—a fascinating dive into subjects such as how the iconic logo was created, the legendary Million Dollar Quartet sessions, and how the song “Harper Valley, PTA” funded the purchase of the label. Written by two of the most acclaimed music writers of our time, Peter Guralnick and Colin Escott, and featuring hundreds of rare images from the Sun archives as well as a foreword by music legend Jerry Lee Lewis, this is a one-of-a-kind book for anyone who wants to know where it all started.
Comprehensive and engaging, this colourful study covers the whole sweep of ritual history from the earliest written records to the present day. From May Day revels and Midsummer fires, to Harvest Home and Hallowe'en, to the twelve days of Christmas, Ronald Hutton takes us on a fascinating journey through the ritual year in Britain. He challenges many common assumptions about the customs of the past, and debunks many myths surrounding festivals of the present, to illuminate the history of the calendar year we live by today.
" ... Concise explanations and descriptions - easily read and readily understood - of what we know of the chain of events and processes that connect the Sun to the Earth, with special emphasis on space weather and Sun-Climate."--Dear Reader.
The search for a cause of the global warming phenomenon on our planet has sparked some interest in the scientific community. The connection between changes occurring in the sun and global warming presents one fundamental perspective which has been investigated by a number of scientific research groups. In recent times, there have been some promising results that might help us uncover the clues about such a link. The Sun-Climate Connection over the Last Millennium: facts and questions presents fundamental information about the solar activity, space weather, terrestrial climates and their variations over an extended period of time. The information presented is a set of analyses based on modern methods of statistical analysis of non-stationary time series, including Fourier, wavelet and singular spectral analysis while considering space weather phenomena (solar winds, solar flares, aurora borealis etc.) and other terrestrial manifestations of solar activity. The physical mechanisms potentially linking solar activity and space weather to climate are discussed based on these analyses. The eBook also provides some context of modern millennial temperature reconstructions for explaining global warming in the 20th century. Scenarios of the solar activity and climate evolution throughout the 21st century are considered on the basis of the updated data. The eBook provides useful facts for researchers seeking information on climate and space research with respect to solar phenomena
What do Emily Dickinson, slave revolts, Babylonian Kings, and Monticello all have in common? A solar eclipse. Whether it was deciding on the location of a grand home (or castle), inspiring poetry, timing battles and revolts, or planning expeditions, eclipses have inspired fear and fascination. Solar eclipses allowed Ptolemy to determine the length of the Mediterranean and helped Einstein establish his General Theory of Relativity. Preliterate societies recorded eclipses on turtle shells found in "The Wastes of Yin" and on the Mayan "Dresden Codex." Eclipses were later instrumental in the creation of longitude and allowed Hubble to understand the expansion of the Universe (and disprove another theory of Einstein's in the process). John Dvorak, the acclaimed author of Earthquake Storms and The Last Volcano, examines this amazing phenomena and reveals the humanism behind the science. With insightful detail and vividly accessible prose, he provides explanations as to how and why eclipses occur—as well as insight into the eclipse of 2017, which was visible across North America.
On the surface of the Sun, spots appear and fade in a predictable cycle, like a great clock in the sky. In medieval Russia, China, and Korea, monks and court astronomers recorded the appearance of these dark shapes, interpreting them as omens of things to come. In Western Europe, by contrast, where a cosmology originating with Aristotle prevailed, the Sun was regarded as part of the unchanging celestial realm, and it took observations through telescopes by Galileo and others to establish the reality of solar imperfections. In the nineteenth century, amateur astronomers discovered that sunspots ebb and flow about every eleven years—spurring speculation about their influence on the weather and even the stock market. Exploring these and many other crucial developments, Pierre Sokolsky provides a history of knowledge of the Sun through the lens of sunspots and the solar cycle. He ranges widely across cultures and throughout history, from the earliest recorded observations of sunspots in Chinese annals to satellites orbiting the Sun today, and from worship of the Sun as a deity in ancient times to present-day scientific understandings of stars and their magnetic fields. Considering how various thinkers sought to solve the puzzle of sunspots, Sokolsky sheds new light on key discoveries and the people who made them, as well as their historical and cultural contexts. Fast-paced, comprehensive, and learned, The Clock in the Sun shows readers our closest star from many new angles.
'Computational History' derives history from data and nowadays, therefore, relies on the technologies of the digital humanities. 'Computational History of Science' addresses questions of history by evaluating historical data, e.g. for tracing back copying traditions and conclude on transfer and transformation of data and knowledge. The term 'Applied Historical Astronomy', in contrast, tries to address questions of contemporary science by evaluating historical data in comparison with most recent data. This opens new possibilities, e.g. in the search for stellar transients among historical data. In the contribution by Hoffmann & Vogt we will focus on the stellar transients among all the topics mentioned above. Philipp Protte discusses the accuracy of magnitudes and positions in ancient star catalogues, Andreas Schrimpf & Frank Verbunt present an analysis of an early modern star catalogue. Victor Reijs analyses the visibility of celestial objects for naked-eye observers, and Björn Kunzmann showcases some important variable stars in the history of astronomy. Rene Hudec presents astronomical photographic archives as a valuable data source for modern astrophysics. José M. Vaquero discusses the studies on solar observations made during the last four centuries. More technical are the contributions of Georg Zotti on Stellarium and Karsten Markus-Schnabel on data-mining and data-processing technologies. Ido Yavetz & Luca Beisel are developing a digital tool of computational history of science for the simulation of pre-modern astronomical models. Gerd Graßhoff focuses more on the application of computational history with regard to Kepler's Astronomia Nova while Tim Karberg presents an analysis of the astronomical orientation of buildings in the North Sudan.
Powerful solar explosions, such as flares and coronal mass ejections, greatly disturb the electromagnetic environment around the Earth and the atmosphere. They may even impact various social systems—communications, positioning, electric power supply, aviation and activities in space. Such variations in the space environment, which can influence human activities, are called “space weather.” The space weather disaster caused by a solar explosion is a potential risk in modern society. To reduce and mitigate space weather impacts, it is essential to understand the structure and dynamics of the solar–terrestrial environment and to predict the variations. This book comprehensively describes space weather, from the basics of related sciences to the possible social impacts. It was compiled based on a national research project on solar–terrestrial environment prediction conducted in Japan recently. It consists of four parts: the linkage between space weather and society; the magnetosphere of the Earth and space weather prediction; solar storms and space weather prediction; and long-term prediction of solar cycle activity and climate impacts. Each chapter covers the basics and applications of each area, which helps readers gain a broad understanding of the subject matter throughout the book. In addition, readers are able to select and read the topics they are most interested in. It is especially valuable for undergraduate and graduate students and young researchers studying space weather and related topics, and is further helpful for experts in various industries related to space weather disasters. The translation was done with the help of artificial intelligence (machine translation by the service DeepL.com). The present version has been revised technically and linguistically by the authors in collaboration with a professional translator.