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Amit R. Morarka

Publications and source records attributed to Amit R. Morarka.

4 recordsLinked to original sources

Study of Electromagnetic Properties of Pencil Drawn graphite composite Films on Paper

Graphite has been one of the promising materials in diverse application domains owing to its high conductivity, tunability into different structures and mechanical strength its. The effectiveness of graphite and its derivatives has been studied for electromagnetic domains as well. Pencil strokes on paper create a film of graphite composites which is reported to be useful for fabrication of electronic components. In our study, we extend use of pencil traces on paper for studying its electromagnetic properties. The pencil traces on paper is facile method of coating graphite composite films with relatively lower cost and ease of processing. The interaction of electromagnetic wave with graphite composites produces in modulation of the incident RF power. The RF power was observed to get attenuated with pencil coating on paper as compared to plain paper. The attenuation increased with increasing the signal frequency. Further, stacking more pencil coated papers onto each other results in increasing attenuation factor. Additionally, these pencil coated paper roll was able to attenuate the incoming noise signals in the radio signal reception. This demonstrates potential ability of pencil coated papers to be used for small RF power attenuation applications.

physics.app-ph

Detection and optical imaging of induced convection under the action of static gradient magnetic field in a non-conducting diamagnetic fluid

The report elaborates for the first time visual observations of induced convections in a non-conducting diamagnetic fluid under the action of static gradient magnetic field in the absence of thermal gradients and the techniques employed to observe and record them. Suspension of Deionized (DI) and double distilled water and Lycopodium pollen grains was used as the fluid in a test tube. Permanent magnets having field strength of 0.12T each were used to provide the static gradient magnetic field. The suspension filled test tube was kept in a room temperature water bath. The convections were visually observed and recorded using travelling microscope attached with a web camera. Various geometrical configurations of magnets in the vicinity of test tube provided different types of magnetic gradient shapes. These gradients were responsible for the occurrence of different types of orientations in the convective flows in the test tube. Convections were observed over a range of fluid volumes from 0.2ml-10ml. The experimentally observed results provide proof of concept that irrespective of the weak interactions of diamagnetic fluids with magnetic fields, these effects can be easily observed and recorded with the use of low tech laboratory equipments.

physics.ins-det

Scattered light intensity measurements of plasma treated Polydimethylsiloxane films: A measure to detect surface modification

Polydimethylsiloxane (PDMS) films possess different chemical and physical properties based on surface modification. The bond structure of pristine PDMS films and plasma treated PDMS films differ in a particular region of silicate bonds. We have studied the surface physical properties of pristine PDMS films and plasma treated PDMS films through optical technique. It is already known that plasma treated PDMS films forms very thin SiO2 layer on its surface. Due to difference in coefficient of thermal expansion of the surface SiO2 and the remaining bulk layer, the SiO2 layer develops cracks. These formations are explored to characterize PDMS surface by observing intensity of scattered light while the films are stretched. Pristine PDMS films do not show such optical scattering. Further the intensity measurements were repeated over period of time to monitor surface properties with time. It was observed that plasma treated PDMS film; the scattered light intensity is linearly dependent on the applied force for stretching. After a substantial time, scattering intensity is reduced to the value which is almost equal to that of pristine PDMS surface. It is proposed that basic light scattering through plasma treated PDMS occurs due to the decrease in the width of the cracks when the PDMS film is stretched. The change in the scattering property of plasma treated PDMS surface over time could be attributed to healing of cracks by the migration of polymer chain molecules from the bulk to the surface. It is also reported that with reference to various bonds present on surface plasma treated PDMS surface regains its original properties as that of pristine PDMS with time. Therefore the optical technique could be employed to study surface characteristics of PDMS surface as an alternative approach to conventional spectroscopic techniques.

physics.app-ph

An ultra low cost heat source from readily available materials for laboratory and therapeutic applications

In most of the under developed nations, access to basic health care is scarce. A heater is an indispensable device for many applications, especially for medical purposes. As such a simple and easy to make heater from readily available materials becomes a valuable equipment to help alleviate the human health problems. An ultra low cost heater from readily available materials like paper/cellulose acetate sheet and a pencil was designed and fabricated. Manually, using high graphite contained pencil; paper/cellulose surface was arbitrarily coated by applying numerous pencil strokes on the surface. Contacts were connected using either a wire or Copper/Aluminum foils over the coated surface. Maximum temperature attended by the heater was around 140 degree celcius. The main application of this heater was explored in the laboratory and therapeutic uses.

physics.med-ph