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Device development for wiping motion: We developed the simple and robust wiping device consist of a force sensor, a passive joint, and a contact plate.
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Based on the structure of the time optimal trajectories and of the pure motions, we develop an algorithm to design time efficient trajectories corresponding to piecewise constant thrust arcs with few actuator switchings.
"'You can do this,' they said, so I had these motion sensors we developed, I could strap them to my legs that measure yaw, pitch and roll.
In the framework of the newly proposed methodology of this study, which depends on physically based ground motion simulation, we developed different rupture scenarios for all considerable-magnitude earthquakes throughout the PIF.
To perform axial scanning with a fast pure z-axis fast motion, we have developed a handheld "proof-of-concept" design that provides us an opportunity to study the vertical cross-sectional imaging in a miniature dual axes endomicroscope.
Accordingly, we developed a content-motion-aware motion estimation based on the motion-level detection.
To account for movement and motility of the live specimen and also for minor non-circular motion of the rotation stage, we developed software which considers changes in the predicted trajectories of the sinograms (images consisting of data from a single line of CCD pixels for all angular measurements) and corrects for these prior to data reconstruction [19].
In this study, we developed the motion freeze method to use 100% of the counts collected by recombining the counts acquired from all phases of gated PET data into a single 3D PET data, with correction of respiration by deformable image registration.
In this study, we developed a motion-blur-free video shooting system based on a concept of frame-by-frame intermittent tracking, in which the control of the camera shutter state is alternated at a rate of hundreds of fps.
We developed a motion-blur-free video shooting system that simultaneously controls the angles of the pan and tilt mirrors on a 2-DOF piezo actuator-based active vision system for HFR video shooting through the implementation of a frame-by-frame intermittent tracking algorithm in real time.
We developed the Mothers In Motion (MIM) with the potential for implementation in community based settings, e.g., the Special Supplemental Nutrition Program for Women, Infants, and Children (WIC).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com