Literatura científica selecionada sobre o tema "Mathematicians as poets"

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Artigos de revistas sobre o assunto "Mathematicians as poets"

1

Wolcott, F. Luke. "When Mathematicians Speak, What Do Poets and Musicians Hear?" Mathematical Intelligencer 39, no. 4 (2017): 57–61. http://dx.doi.org/10.1007/s00283-017-9747-5.

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2

Nettle, Daniel. "Schizotypy and mental health amongst poets, visual artists, and mathematicians." Journal of Research in Personality 40, no. 6 (2006): 876–90. http://dx.doi.org/10.1016/j.jrp.2005.09.004.

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Subbulakshmi, S. "Thirugnana Sambandhar - A Mathematician." Shanlax International Journal of Arts, Science and Humanities 9, no. 1 (2021): 136–40. http://dx.doi.org/10.34293/sijash.v9i1.3991.

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India has been the Land of notable poets whose exemplary works are world renowned. One such great poet is Thirugnana Sambandhar. He is a saint, poet, philosopher, composer who belongs to 7th Century. He was born in Seerkaazhi of Tamilnadu. He had coined many Special Geometrical poetic structures like Thiru ezhukkootrirukkai (poem with mathematical Triangular Pattern), Maalai Maatru (a poem with palindromic Structure), Mozhi Maatru (a poem in which the meaning of the poem can be observed by a systematic Chane of words), Gomuthri (Flow of the poem in such a way it forms a wave line), Chakramaatru (a poem which is constructed in a circular form ). By the above mentioned amazing structure He has no parallels in the worlds poetry Thirugnana Sambandhar is the epitome of Tamil Literature has penned down many such extraordinary poems. A Mathematician is one who uses an extensive knowledge of Mathematics in their work. Mathematicians are concerned with numbers, data, quantity, structure, space,models and change. Here in this poetic form Thiruezhukkootrirukkai Thirugnana Sambandhar had used numbers in a brilliant way to form a Triangle. This is called “Chitrakavi” in Tamil. By analyzing the whole poem we will get a geometrical structure. In this Thiruezhukkootrirukkai Thirugnana Sambandhar has constructed the words in such a way to form a symmetrical triangle. These triangle is arranged in a perfect mathematical calculation. This can be analysed through the law of binomial co- efficient. This is analysed and proved in this paper. Thirugnana Sambandhar belongs to 7th Century whereas the Scientist and Mathematician Pascal who discovered the law of Bi-nomial co-efficient belongs to 17th century. Other than this Mathematical diagram of triangle this poem has Palindromic numbers which add more beauty to this structure which is also a mathematical calculation. By constructing this amazing poetic structure Thirugnana Sambandhar proves beyond doubt that he is a “Mathematician” of India of the 7th Century itself who had applied the law of triangle earlier.
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4

Philo, John-Mark. "English and Scottish Scholars at the Library of Gian Vincenzo Pinelli (1565–1601)." Renaissance and Reformation 42, no. 2 (2019): 51–80. http://dx.doi.org/10.7202/1065125ar.

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Throughout the second half of the sixteenth century, the scholar and collector Gian Vincenzo Pinelli (1535–1601) welcomed poets, mathematicians, antiquarians, and astronomers from every corner of Europe to his vast private library in Padua. These scholars left their mark on Pinelli’s collection, annotating his manuscripts, trading texts, and even making contributions of their very own to his library. This article considers the English and Scottish scholars who visited Pinelli’s collection and the works they gifted to Pinelli. These manuscripts, now preserved at the Biblioteca Ambrosiana, Milan, include an impressive breadth of material, ranging from treatises on England’s schism with Rome to verse commemorating the deaths of fellow scholar–poets. Pinelli, it emerges, was not only hosting scholars from England and Scotland, but also gathering reports, discourses, and what was in many cases highly sensitive intelligence on both nations. These manuscripts thus bear witness to the importance of the Italian private library to the transmission of both ideas and physical texts across the Continent, shining new light on a literary culture that was able to cross and transcend national boundaries.
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Philo, John-Mark. "English and Scottish Scholars at the Library of Gian Vincenzo Pinelli (1565–1601)." Renaissance and Reformation 42, no. 2 (2019): 51–80. http://dx.doi.org/10.33137/rr.v42i2.32980.

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Throughout the second half of the sixteenth century, the scholar and collector Gian Vincenzo Pinelli (1535–1601) welcomed poets, mathematicians, antiquarians, and astronomers from every corner of Europe to his vast private library in Padua. These scholars left their mark on Pinelli’s collection, annotating his manuscripts, trading texts, and even making contributions of their very own to his library. This article considers the English and Scottish scholars who visited Pinelli’s collection and the works they gifted to Pinelli. These manuscripts, now preserved at the Biblioteca Ambrosiana, Milan, include an impressive breadth of material, ranging from treatises on England’s schism with Rome to verse commemorating the deaths of fellow scholar–poets. Pinelli, it emerges, was not only hosting scholars from England and Scotland, but also gathering reports, discourses, and what was in many cases highly sensitive intelligence on both nations. These manuscripts thus bear witness to the importance of the Italian private library to the transmission of both ideas and physical texts across the Continent, shining new light on a literary culture that was able to cross and transcend national boundaries.
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6

Cedeño, Hugo Romeo Cedeño, and Telly Yarita Macías Zambrano. "Analysis of Latin American literature through a mathematical lens." International journal of social sciences 4, no. 1 (2021): 141–47. http://dx.doi.org/10.31295/ijss.v4n1.1524.

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Several of the most influential Latin American writers were interested in the sciences. Moreover, a handful showed an affinity to mathematics since childhood, eventually following careers as physicists, engineers, and mathematicians before turning their attention to the arts. In the end, they became novelists, essayists, and poets, who made significant contributions to their field. There is a large amount of existent traditional literature analysis research on Latin American authors. In the last sixteen years, research has shifted to include a focus on the connection between math and literature. However, this research focuses on interpreting the ideas of the universally acclaimed writer Jorge Luis Borges, studying his scientific thinking through his works, and demonstrating the writings included both basic and advanced math concepts even though he lacked a formal mathematical and scientific formation. Currently, there is a gap in the research that ignores the influential Latin American authors who were also prolific in mathematics. As a math and engineering student, I am interested in studying the work of Latin American writers with academic backgrounds in STEM fields--specifically mathematics. I intend to examine the writings of Ernesto Sabato, Guillermo Martinez, and Nicanor Parra for explicit math terminology and concepts.
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7

Gimsa, Andreas. "Symmetries in the Mathematical and Physical Description of Nature." International Journal of Scientific Research and Management 8, `11 (2020): 36–48. http://dx.doi.org/10.18535/ijsrm/v8i11.aa01.

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Symmetries play an essential role in nature. Symmetrical structures are generally perceived as beautiful. Mathematicians and also physicists even regard symmetries in the equations for the mathematical and physical description of the world as an indication of their correctness. The British mathematician Godfrey Harold Hardy [1.] writes: "The mathematician's patterns, like the painter's or the poet's must be beautiful; the ideas like the colours or the words, must fit together in a harmonious way. Beauty is the first test: there is no permanent place in the world for ugly mathematics.“ A very interesting example of symmetries in physics has been provided by Emmy Noether, who found that certain system characteristics are preserved during changes (transformations). Emmy Noether derived the propositions of conservation of energy, momentum and angular momentum from the invariance (immutability) of the laws of nature during transformation of time, place and direction. These symmetries and their conservation laws form the foundation of physics. In this publication, further essential symmetries are to be investigated, which relate in particular to the symmetry of energy and information and their effects.
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Longrigg, James. "Anatomy in Alexandria in the Third Century B.C." British Journal for the History of Science 21, no. 4 (1988): 455–88. http://dx.doi.org/10.1017/s000708740002536x.

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The most striking advances in the knowledge of human anatomy and physiology that the world had ever known—or was to know until the seventeenth century A.D.—took place in Hellenistic Alexandria. The city was founded in 331 B.C. by Alexander the Great. After the tatter's death in 323 B.C. and the subsequent dissolution of his empire, it became the capital of one of his generals, Ptolemy, son of Lagus, who established the Ptolemaic dynasty there. The first Ptolemy, subsequently named Soter (the Saviour), and his son Ptolemy Philadelphus (who succeeded him in 285 B.C.), became immensely enriched by their exploitation of Egypt and raised the city to a position of great wealth and magnificence. Anxious to enhance both their own reputation and the prestige of the kingdom, they sought to rival the cultural and scientific achievements not only of other Hellenistic rulers but even of Athens herself. Their patronage of the arts and sciences, coupled with their establishment of the Museum (an institute for literary studies and scientific research as well as a temple of the Muses), together with the Library, made the city the centre of Hellenistic culture. Philosophers, mathematicians, astronomers, artists, poets and physicians were all encouraged to come and work there.
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9

Yeon, Kim So, and Chung Eun-Gwi. "Six Poems from Kim So Yeon's Mathematician's Morning (2013)." Azalea: Journal of Korean Literature & Culture 13, no. 1 (2020): 147–56. http://dx.doi.org/10.1353/aza.2020.0007.

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10

Abrams, Lowell. "Mathematical Rigor From Within." Journal of Humanistic Mathematics 11, no. 2 (2021): 477–84. http://dx.doi.org/10.5642/jhummath.202102.29.

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There is a certain feel that is unique to the rarefied context of rigorous mathematics. These poems constitute an exploration of my experience of mathematical rigor when I am in the midst of exercising my skills as a research mathematician.
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