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Various standard materials are measured and the relative permeability is estimated using the proposed sensor in combination with the developed numerical model.
Binding characteristics viz., binding constant, stiochiometry and mode of interaction of NAR with drug carrier protein, human serum albumin (HSA) was also explored using the proposed sensor.
We have demonstrated how using the proposed sensor and the adaptive body bias mechanism can be used to compensate NBTI degradation in various analog circuits.
Vibration signals were measured using the proposed sensor system and compared to those measured with a telemetry unit-equipped strain gauge system.
The obviously different pressure distributions in the finger during the finger movement of human hand have been observed by using the proposed sensor, which is expected to explore the skill of the human fingers more precisely.
It is expected to explore the skill of the human finger more precisely by using the proposed sensor, and it would also be helpful to develop the robot to replace human fingers in the future.
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The results obtained by determination of moxifloxacin in tablets using the proposed sensors are comparable favorably with those obtained using the US Pharmacopeia method.
Results obtained for the analysis of MOX in its formulation by direct measurements using the proposed sensors and the standard USP pharmacopeia method [28] are given in Table 5.
Since low-cost polymeric materials can be used, the proposed sensors have a wealth of possible applications in consumer goods.
Overall, highly sensitive detection of Hg2+ was possible using the proposed GMA sensor due to efficient arrangement of microelectrodes and the sensor-to-sensor reproducibility was superior owing to simplicity in sensor fabrication.
Using the proposed electrochemical sensor, hydrogen peroxide could be measured in the range of 0.5 1280 μmol L−1 with detection limit of 100 nmol L−1, whereas hydrazine could be measured in the range of 0.20 1680 μmol L−1 with detection limit of 50 nmol L−1, using chronoamperometry technique.
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