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Amit Morarka

Publications and source records attributed to Amit Morarka.

3 recordsLinked to original sources

Novel active micromixer platform based on Lorentz force for lab-on-a-chip application

Mixing in an active micromixer was achieved using Lorentz force-assisted actuation of an enameled copper wire. A single-step template-assisted soft lithography technique was used to construct the mixing chamber. The chamber had a volume of 1.86{\mu}l. Application of a Square wave alternating current in tandem with tension in the wire provided the necessary conditions for the resonant oscillation frequency of the wire. The repeatability of the ratio of higher harmonics to the fundamental frequencies of the oscillating wire conforms to standardization of the device fabrication, assembly, and functionality. Simulations and experiments were performed to validate uniform temperature distribution in the mixing chamber. Real-time optical detection of the sample assisted in sensing the completion of chemical reactions in the chamber. Mixing of various aqueous based chemical reactions was performed. It was found that mixing efficiency was greater than 95 percent. Multiple devices were fabricated to show the usability and reproducibility of the system.

physics.app-ph

Study of a Mismatched Parallel Wire Transmission Line and its Potential Applications

In this work a mismatched section of a transmission line is examined for its utility in a bandpass filtering application. A model to analyze the situation is given. It was found that the transfer characteristics of such mismatched transmission line resemble with that of a narrow bandpass filter with steeper roll-off. It has been shown that the center frequency of the response depends on the length of the mismatched section as well as the dielectric material of the line. Further it has been shown that the center frequency can be tuned to a desired value by adjusting the dielectric profile along the length of the line. This was tested on a set of parallel wire transmission lines of three lengths and liquid dielectrics. During the study it was noticed that a sensing mechanism to detect variation in small volumes of the liquid dielectrics with high sensitivity can be developed using mismatched transmission lines.

physics.app-ph

High sensitivity fluid energy harvester

An ambient energy harvesting device was design and fabricated. It can harness kinetic energy of rain droplets and low velocity wind flows. The energy converted into electrical energy by using a single device. The technique used by the device was based on the principles of electromagnetic induction and cantilever. Readily available materials were characterized and used for the fabrication of cantilever. Under the laboratory conditions, water droplets having diameter 4mm and wind with speed 0.5m/s were used as the two distinct sources. Without making any changes in the geometry or the materials used, the device was able to convert kinetic energy from both the sources to provide voltage in the range of 0.7-1VAC. The work was conceptualized to provide an autonomous device which can harness energy from both the renewable energy sources.

physics.ins-det