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Field
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physics strongly imply that the rational design of colloidal-gel properties is within reach. This design is based on tuning gel microstructure via external stimuli, such as shear, ultrasound, and (magnetic
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defects and discontinuities without causing damage to the original part. Among various NDT approaches, Ultrasound Testing (UT) and X-ray Computed Tomography (XCT) are the main focus of this project. Both UT
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(Matlab, etc.) and experimental development (ultrasound) Rigor, ability to synthesize, teamwork and autonomy Requirements Research FieldPhysicsEducation LevelMaster Degree or equivalent
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healthy infants & confirmed by Laser Doppler Ultrasound The experience in developing this system will set the stage for further testing in term- and, ultimately, preterm infants. The immediate benefit is
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to power miniaturized wearable and implantable electronic devices for wireless communication and sensing, remote health monitoring, and ultrasound-induced therapies. However, most current ultrasonic energy
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products and processes. We have recenlty discovered a novel, ultrasound-induced mechanism that creates local order in colloidal gels [Saint-Michel, Petekidis & Garbin, Soft Matter 18, 2092 (2022)]. In
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products and processes. We have recenlty discovered a novel, ultrasound-induced mechanism that creates local order in colloidal gels [Saint-Michel, Petekidis & Garbin, Soft Matter 18, 2092 (2022)]. In
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locomotion, MRI visibility, and induced reshaping of the robot while medical ultrasound is able to visualize the robot and trigger on-demand release of payload from. Introduction of bio-orthogonal chemistry
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for characteristic differences or welding defects and discontinuities without causing damage to the original part. Among various NDT approaches, Ultrasound Testing (UT) and X-ray Computed Tomography (XCT) are the main
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of prosthetic limb health, wound healing, and strokes using cutting-edge-imaging technologies such as MRI, Ultrasound, and Optothermal imaging is mandatory Specific experience with human studies, and