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This the second volume of six from the Annual Conference of the Society for Experimental Mechanics, 2010, brings together 40 chapters on Microelectromechanical Systems and Nanotechnology. It presents early findings from experimental and computational investigations on MEMS and Nanotechnology including contributions on Nanomechanical Standards, Magneto-mechanical MEMS Sensors, Piezoelectric MEMS for Energy Harvesting, and Linear and Nonlinear Mass Sensing.
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African American women have played a pivotal part in rock and roll—from laying its foundations and singing chart-topping hits to influencing some of the genre's most iconic acts. Despite this, black women's importance to the music's history has been diminished by narratives of rock as a mostly white male enterprise. In Black Diamond Queens, Maureen Mahon draws on recordings, press coverage, archival materials, and interviews to document the history of African American women in rock and roll between the 1950s and the 1980s. Mahon details the musical contributions and cultural impact of Big Mama Thornton, LaVern Baker, Betty Davis, Tina Turner, Merry Clayton, Labelle, the Shirelles, and others, demonstrating how dominant views of gender, race, sexuality, and genre affected their careers. By uncovering this hidden history of black women in rock and roll, Mahon reveals a powerful sonic legacy that continues to reverberate into the twenty-first century.
MEMS and Nanotechnology, Volume 4 represents one of eight volumes of technical papers presented at the Society for Experimental Mechanics Annual Conference on Experimental and Applied Mechanics, held at Uncasville, Connecticut, June 13-16, 2011. The full set of proceedings also includes volumes on Dynamic Behavior of Materials, Mechanics of Biological Systems and Materials, Mechanics of Time-Dependent Materials and Processes in Conventional and Multifunctional Materials; Optical Measurements, Modeling and, Metrology; Experimental and Applied Mechanics, Thermomechanics and Infra-Red Imaging, and Engineering Applications of Residual Stress.