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to scientific and industrial fields. Specifically, mixed-signal ASICs for the readout of radiation and particle detectors will be designed with ultra-low noise and low power consumption features. Special
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- Occasional Up to 3 Hours Keyboard use/repetitive motion - Frequent 3 to 6 Hours Environmental Demands Loud noise levels - Occasional Up to 3 Hours Uneven Surfaces or Elevations - Occasional Up to 3 Hours
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- Frequent 3 to 6 Hours Environmental Demands Chemicals, dust, gases, or fumes - Frequent 3 to 6 Hours Loud noise levels - Frequent 3 to 6 Hours Marked changes in humidity or temperature - Frequent 3 to 6
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Hours Keyboard use/repetitive motion - Frequent 3 to 6 Hours Environmental Demands Loud noise levels - Occasional Up to 3 Hours Marked changes in humidity or temperature - Occasional Up to 3 Hours
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Loud noise levels - Occasional Up to 3 Hours Marked changes in humidity or temperature - Occasional Up to 3 Hours Mental Demands Sustained attention and concentration - Frequent 3 to 6 Hours Complex
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Reaching overhead - Occasional Up to 3 Hours Keyboard use/repetitive motion - Continuous 6 to 8+ Hours Environmental Demands Chemicals, dust, gases, or fumes - Never 0 Hours Loud noise levels - Occasional Up
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overhead - Occasional Up to 3 Hours Keyboard use/repetitive motion - Frequent 3 to 6 Hours Environmental Demands Chemicals, dust, gases, or fumes - Never 0 Hours Loud noise levels - Never 0 Hours Marked
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the integration of advanced sensing technologies, digital twins, and Internet of Things (IoT) infrastructures. In acoustics, monitoring technologies have traditionally focused on environmental noise monitoring and
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, patients, researchers, and community partners. For additional information and to hear directly from members of our team, please visit: https://facilities.med.wustl.edu/Careers. This role supports
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structural systems and ULS / SLS design concepts Experience in structural dynamics and/or vibration analysis is an added asset Familiarity with finite element modelling (e.g. ABAQUS) and probabilistic methods