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  1. en.wikipedia.org › wiki › Lynn_ConwayLynn Conway - Wikipedia

    Lynn Ann Conway (born January 2, 1938) is an American computer scientist, electrical engineer and transgender activist. She worked at IBM in the 1960s and invented generalized dynamic instruction handling, a key advance used in out-of-order execution, used by most modern computer processors to improve performance.

  2. Lynn Ann Conway (Mount Vernon, [1] 2 de janeiro de 1938) [2] [3] é uma cientista da computação, engenheira elétrica, inventora e ativista transgénero estadunidense. [4]

  3. ai.eecs.umich.edu › people › conwayLynn Conway's homepage

    Lynn Conway is a professor of electrical engineering and computer science, emerita at the University of Michigan, Ann Arbor. She is also a transgender activist and author who shares her personal story of gender transition from male to female and her research on VLSI design. Her website provides information, resources and inspiration for transgender and transsexual people.

  4. 28 de jun. de 2022 · Lynn Conway é uma inspiração para qualquer mulher na área de tecnologia. Nascida em 1938, ela é referência na área de arquitetura de computadores com suas pesquisas sobre circuitos, sendo pioneira na pesquisa sobre sistemas VLSI (Very Large-Scale Integration) , base dos microprocessadores e chips de memória que usamos hoje em ...

  5. 21 de nov. de 2020 · Nov. 21, 2020. In August 1968, Lynn Conway, a promising computer engineer at IBM in Sunnyvale, Calif., was called into the office of Gene Myron Amdahl, then the company’s director of advanced...

  6. 4 de dez. de 2023 · Lynn Conway co-developed a revolutionary method of microchip design that launched a global microchip revolution, but for years she was forced to hide her identity as a transgender woman. Now, she shares her story of discovery, risk and joy in changing the world of computing and gender.

  7. Lynn Conway is a famed pioneer of microelectronics chip design. Her innovations during the 1970's at the Xerox Palo Alto Research Center (PARC) have impacted chip design worldwide. Many high-tech companies and computing methods have foundations in her work.