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Articles by G. Shankar
Total Records ( 6 ) for G. Shankar
  G. Anbazhagan , P.S. Joseph , G. Shankar and T. Balakrishnan
  Single crystals of semi-organic material (GLO) have been grown from aqueous solution by slow evaporation techniques. The lattice parameters for the grown crystals where determined by the single crystal X-ray diffraction analysis. The presences of functional groups was estimated qualitatively by using fourier transforms infrared spectrum source that UV cut-off wavelength for the grown is at 220 nm. The optical band gap was found to be 5.6473 eV. Finally the optical conductivity and electrical conductivity studies have been carried out on this crystal.
  R. Arangasamy , J. Sundararajan , Ila Vennila and G. Shankar
  Unstable nature in blood sugar of diabetic patients influences more innovative techniques to come for regular usage. Researcher proposes a new approach to control the glucose level of diabetic patients using various biological metrics of the patients. The proposed system is a fuzzy one which uses various rule sets to control the glucose level. Researcher uses the following biological metrics like body temperature, pressure, glucose, red blood cell count, white blood cell count and plasma cells. All the biological features are monitored periodically based on which the proposed system comes to a decision of injecting insulin and rate of medicine. Researcher used various control circuits and regulators and monitors to track the biological features dynamically. The proposed systems have more impact on society for the better control of diabetics.
  G. Anbazhagan , P.S. Joseph , G. Shankar and T. Balakrishnan
  Single crystals are Bis Glycine Cobalt Sulfate (BGCS) recently investigated nonlinear optical materials were grown by slow evaporation techniques. Optical absorption of the crystals of BGCS has been measured at room temperature from which the optical band gap has been determined using the absorption spectrum as 5.90 eV. Vibrational modes of grown crystals were conformed by FTIR spectrum. The optical absorption spectrum shows that the UV cut-off wavelength for the grown crystal is at 240 nm. The optical constant (α, K, R) were also evaluated.
  R. Arangasamy , J. Sundararajan , G. Shankar and G. Hariharan
  The main aim of this study is to inject insulin for type 1 diabetes using pumping of insulin. The blood glucose level has to be monitored with the help of glucose tolerance test. For efficient method to control type 1 diabetes researcher will use embedded linear parameter varying methodology controller. In this study, there are three things researchers need to focus. The first is the sensor values read from the sensors has to be monitored and the second is the lab information (patient’s basic level of tests). Depending on the patients test details, the insulin has to be injected. For example, if the person sensor value is greater than the reference limit then he has to be provided with insulin for a longer period. So, the comparison of lab details with the patients current sensor values play a vital role in determining the insulin level for a patient. Finally, the feedback has to be obtained with the help of those comparisons and it has to be sent once again as a loop to the controller for later comparison and also for database information. Here, the controller is the key element for updating all the information about the patient and it will control all the parameters of the board. Here, researchers will use EEPROM for saving all the data on a location basis. It is capable of holding 256 bytes at a time and each location can store one byte information at a time.
  G. Shankar and P.S. Joseph
  PMP crystal shown was synthesized. The PMP single crystal was grown by slow evaporation solution technique. The grown crystals were characterized by powder crystal X-ray diffraction, FTIR spectrum. The crystal structure and unit cell parameters were analyzed from the X-ray diffraction studies. The FTIR spectrum analysis has confirmed the functional group in the PMP crystals. The high energy optical resistivity studies have been carried out on this crystal and the results have been shown here.
  R. Arangasamy , J. Sundararajan , Ila Vennila and G. Shankar
  The main objective of this study is to inject insulin for type 1 diabetes patient by pumping the insulin. The blood glucose level has to be monitored with the help of glucose tolerance test. For efficient method to control type 1 diabetes, we will use embedded linear parameter varying methodology controller. In this study, there are three steps, researchers need to focus. First is the sensor values read from the sensors has to be monitored, second is the lab information (patient’s basic level of tests). Third the feedback after the compensation of the first and second steps. Depending on the patients test details the insulin has to be injected. For example, if the person sensor value is greater than the reference limit then he has to be provided with insulin for a longer period. So, the comparison of lab details with the patients current sensor values play a vital role in determining the insulin level for a patient. Finally, the feedback has to be obtained with the help of those comparisons and it has to be sent once again as a loop to the controller for later comparison and also for database information. Here, the controller is the key element for updating all the information about the patient and it will control all the parameters of the board. Here, researcherss are using EEPROM to save all the data on location basis. It is capable of holding 256 bytes at a time and each location can store one byte information at a time.
 
 
 
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