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This book introduces the reader to the statues, busts, and memorial plaques of scientists, explorers, medicine men and women, and inventors found in the bustling capital of the United Kingdom, London. The former capital of the British Empire, London remains a world center of trade, navigation, finance and many more. It is also a hub of science, the seat of the Royal Society, Royal Institution, Science Museum, British Museum, Natural History Museum, and of great institutions of higher education. The historical figures depicted in these memorials are responsible for creating great institutions, milestone discoveries, contributions to the scientific and technological revolutions, fighting against epidemics, advancing medicine, and contributing to the progress seen during the past four hundred years. This is a guidebook for the visitor and the Londoner alike. It presents memorials that everybody is familiar with and others that the authors discovered during their years of painstaking research. The 750 images and the text, interlarded with anecdotes, is both informative and entertaining.
A compilation of sixty biographical sketches of influential female scientists, discussing topics like the state of the modern female scientist and the underrepresentation of women at the higher levels of academia.
By addressing the enigma of the exceptional success of Hungarian emigrant scientists and telling their life stories, Brilliance in Exile combines scholarly analysis with fascinating portrayals of uncommon personalities. István and Balazs Hargittai discuss the conditions that led to five different waves of emigration of scientists from the early twentieth century to the present. Although these exodes were driven by a broad variety of personal motivations, the attraction of an open society with inclusiveness, tolerance, and – needless to say – better circumstances for working and living, was the chief force drawing them abroad. While emigration from East to West is a general phenomenon, t...
The title of our volume refers to what is well described by the following two quota tions:"Godcreated man in his own image"l and "Man creates God in his own image."2 Our approach to symmetry is subjective, and the term "personal" symmetry reflects this approach in our discussion of selected scientific events. We have chosen six icons to symbolize six areas: Kepler for modeling, Fuller for new molecules, Pauling for helical structures, Kitaigorodskii for packing, Bernal for quasicrystals, and Curie for dissymmetry. For the past three decades we have been involved in learning, thinking, speaking, and writing about symmetry. This involvement has augmented our principal activities in molecular structure research. Our interest in symmetry had started with a simple fascination and has evolved into a highly charged personal topic for us. At the start of this volume, we had had several authored and edited symmetry related books behind 3 us. We owe a debt of gratitude to the numerous people whose interviews are quoted 4 in this volume. We very much appreciate the kind and gracious cooperation of Edgar J. Applewhite (Washington, DC), Lawrence S. Bartell (University of Michigan), R.
"Astronomy was the earliest science in which women's participation has been recorded. Enheduanna, the Mezopotanian priestess around 2350 BCE monitored the stars and Hypathia in the fourth century is especially famous. Women astronomers such as Sophia Brahe, Maria Cunitz, Elisabetha Hevelius, Maria Margaretha Kirch, and Caroline Herschel often worked alongside family members, husbands or brothers. The next generations were more independent, of them, Mary Somerville, Maria Mitchell, Williamina Fleming, and Nancy Grace Roman are mentioned. Vera C. Rubin had revolutionary ideas about the black holes whose real significance is recognized today. Jocelyn Bell Burnell helped in the discovery of pulsars for which her professor received the Nobel Prize. France A. Cordova was elevated to various top administrative positions. Finally, the astronomer Andrea M. Ghez received a share of the physics Nobel Prize for her work on black holes"--
We have been gratified by the warm reception of our book, by reviewers, colleagues, and students alike. Our interest in the subject matter of this book has not decreased since its first appearance; on the contrary. The first and second editions envelop eight other symmetry-related books in the creation of which we have participated: I. Hargittai (ed.), Symmetry: Unifying Human Understanding, Pergamon Press, New York, 1986. I. Hargittai and B. K. Vainshtein (eds.), Crystal Symmetries. Shubnikov Centennial Papers, Pergamon Press, Oxford, 1988. M. Hargittai and I. Hargittai, Fedezziikf6l a szimmetri6t! (Discover Sym- try, in Hungarian), Tank6nyvkiad6, Budapest, 1989. I. Hargittai (ed.), Symmetr...
Symmetry is as simple or as complicated as we are ready to absorb it in everything around us. From flowers to bridges, buildings, coke machines, and snowflakes; from molecules to walnuts, fences, pine cones, and sunflowers; from music to children's drawings; from hubcaps to bank logos, propellers, wallpaper decorations, and pavements, we recognize it if we walk around with open eyes and an open mind. This book provides aesthetic pleasure and covert education, immersing the reader in both the familiar and the unknown and leading always to unexpected discoveries. The authors, world-renowned scientists, have already produced a dozen books on symmetry for professionals as well as laypersons, for grownups as well as children, in English, Russian, German, Hungarian, and Swedish languages. They provide this attractive account of symmetry in few words and many ? as many as 650 ? images in full color from the most diverse corners of our globe. An encounter with this book will open up a whole new experience for the reader, who will never look at the world with the same eyes as before.
In this book, István Hargittai, an internationally renowned physical chemist, narrates his life by introducing over forty personalities that played noteworthy roles in his career. The time span ranges from the Holocaust, which the author survived, through the periods of hard and softer dictatorships of Soviet-type socialism, and the current revival of an autocratic regime in Hungary. He overcame barriers to get a high school, then a university education. He received excellent training in Moscow and was active at Hungarian, American and other international scientific venues, and he has interacted with more Nobel laureates than anyone in the world. The chapters feature such famous contributor...
It is gratifying to launch the third edition of our book. Its coming to life testi?es about the task it has ful?lled in the service of the com- nity of chemical research and learning. As we noted in the Prefaces to the ?rst and second editions, our book surveys chemistry from the point of view of symmetry. We present many examples from ch- istry as well as from other ?elds to emphasize the unifying nature of the symmetry concept. Our aim has been to provide aesthetic pl- sure in addition to learning experience. In our ?rst Preface we paid tribute to two books in particular from which we learned a great deal; they have in?uenced signi?cantly our approach to the subject matter of our book. The...
André Goodfriend was Deputy Chief of Mission from 2013 to 2015 at the US Embassy in Budapest. In the absence of an ambassador, most of the time he was Chargé d’Affaires. Goodfriend represented his country, and for that matter, liberal democracy, in the early period of the increasingly autocratic Orbán regime. This tenure was distinguished by an unusually high public visibility and broad-based popularity. This book contains the distilled essence of conversations recorded in the fall of 2015 and in the years after his departure. Aside from Goodfriend’s reflections on his personal history, the main focus of the deliberations is on open government: its characteristics, preconditions, bene...