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This is a accompanied supplement to the study. First, a short presentation is given from a study on fracture diagnosis using electrical logging. In this study, substandard fracture fillers had a negative impact on the signal results. It was one of the motivations for this study. Second, we give the detailed form of the formula for the electrical properties of the mixture and a link to the literature. Third, we give a simulation test using coal coke fracture fillers, which mainly considers the mechanical properties of coal coke.
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A series of experiments including torque output tests, transparency tests, cardiopulmonary exercise tests and surface electromyography tests with five healthy subjects (height, 1.76 ± 0.05 m; weight, 72.5 ± 7.26 kg; age, 27.2 ± 2.86 years; all male) to validate the effectiveness of the SPURS. All participants provided written informed consent to participate in the study.
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Dynamic nonlinear equations (DNEs) are essential for modeling complex systems in various fields due to their ability to capture real-world phenomena. However, the solution of DNEs presents significant challenges, especially in industrial settings where periodic noise often compromises solution fidelity. To tackle this challenge, we propose a novel approach called Periodic Noise Suppression Neural Dynamic (PNSND), which leverages the gradient descent approach and incorporates velocity compensation to overcome the limitations of the traditional Gradient Neural Dynamic (GND) model.
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This is the artifact of the paper entitled "Cycle-oriented Dynamic Approximation: Architectural Framework to Meet Performance Requirements" in Computer Architecture Letters. The artifact contains the assembler compatible with dedicated instructions to approximation, the source code of each workload, the source code of the simulator "Onikiri 2'' with simulation configuration files, scripts to run Onikiri 2, and MATLAB scripts for generating the charts in Fig. 5 and Fig. 6. Fig.
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The development of metaverses and virtual worlds on various platforms, including mobile devices, has led to the growth of applications in virtual reality (VR) and augmented reality (AR) in recent years. This application growth is paralleled by a growth of interest in analyzing and understanding AR/VR applications from security and performance standpoints. Despite this growing interest, benchmark datasets are lacking to facilitate this research pursuit.
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This Matlab code allows the reproduction of the robot dynamics identification experiment results. It produces a .csv file corresponding to the table with a summary of results which can be used for the comparison of the algorithms.
Here is the abstract of the work:
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The presented DataSet is dedicated to a W-band (92-96 GHz) focal plane array (FPA) for 50 dBi-reflector antennas intended for the next-generation point-to-point communication links with antenna mast sway compensation. The FPA comprises seven metal waveguide elements arranged in a hexagonal lattice, ensuring the cross-over level of the corresponding reflector beams above -6 dB.
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This dataset is for food texture prediction and includes measurement data of force, vibration, sound, moisture, and sensory evaluation data. The number of samples is 21 and the sample size is 10. First, a measurement system recorded the force, vibration, and sound pressure data during food compression. The moisture rate of food was also measured by a moisture meter. Second, signal processing reduced noise in the measurement data. This dataset includes the processed measurement data and template data. This dataset also has summarized sensory evaluation data of 10 participants.
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Herein, we constructed a finite element human eyeball model, encompassing a biophysically detailed retinal layer, optic nerve segment, and its surrounding tissues, as well as extraocular electrodes.A multi-conductivity 3D human eye model was constructed based on the AC/DC module in COMSOL Multiphysics. This model encompassed essential eye structures, such as the cornea, atria, lens, vitreous body (VB), retinal, choroid, sclera.
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The dataset presents user evaluations for itinerary recommendations generated with three algorithms, PP, PP+TS and PP+TP.
Users evaluated recommendations according to five properties:
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