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Field
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part of the Smart Gripper for Soft Robotics program. The program aims to deliver soft active gripper for manipulation of objects for industry applications. The design of coating, materials preparation
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@TorontoMet (external link) and @ECItorontomet (external link) on Twitter, and visit our LinkedIn company page (external link) . The opportunity The Robotics, Mechatronics and Automation Laboratory (RMAL
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, chalcogenides, and oxides. Operate and maintain automated synthesis platforms, including programmable furnaces, robotic sample handling systems, and reaction chambers. Perform structural and compositional
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Biomechanics, Kinesiology, Movement Science, Physiology, or Biomedical Engineering, to assist with data collection and processing for lab and field based studies of back assisting wearable robots. The Research
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as opportunities allow. Experience in robotics, crystallography, mass spectrometry, electrochemistry and inline analysis welcome as is an interest or experience in theory, programming or computation
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to the formulation and submission of research publications and research proposals as well as help manage and direct this complex and challenging project as opportunities allow. Experience in robotics, crystallography
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repair robotic systems. Beyond these core research interests, the UTC also has expertise in: the design of special-purpose manufacturing robotics, non-conventional machining processes (especially in
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repair robotic systems. Beyond these core research interests, the UTC also has expertise in: the design of special-purpose manufacturing robotics, non-conventional machining processes (especially in
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development and laboratory automation systems (liquid handlers, robotic colony pickers etc.). Experience with sequencing technologies and microfluidics. Experience using fluorescence-activated cell sorting
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Disease Center, Advanced Medical Imaging Technology Institute, Medical Chip Research Institute, Clinical Research Center, and Medical Robotics Institute, among others. Leading with solid research