9 research outputs found

    Virtual and Real World in Mobile Reality

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    Technology in education has impacted many ways in student's life to learn enthusiastically by giving better and more than expected results. Some research stated that technology will create a passive process if it doesn't promote critical thinking. To support the statement Augmented Reality (AR) has shown the best potential to make learning more interactive and easy. It's because of the feature of AR that lets us interact with things in virtual and real-time. Therefore this paper represents the idea of using AR in education

    Education with Augmented Reality

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    Technology in education has impacted many ways in student's life to learn enthusiastically by giving better and more than expected results. Some research stated that technology will create a passive process if it doesn't promote critical thinking. To support the statement Augmented Reality (AR) has shown the best potential to make learning more interactive and easy. It's because of the feature of AR that lets us interact with things in virtual and real-time. Therefore this paper represents the idea of using AR in education

    UV-SPECTROPHOTOMETRIC METHOD DEVELOPMENT AND VALIDATION FOR ESTIMATION OF SAXAGLIPTIN IN API AND PHARMACEUTICAL DOSAGE FORM

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    Objective: A new sensitive, economical, simple, rapid UV spectrophotometric method has been developed for the estimation of Saxagliptin in API and pharmaceutical formulation. Methods: Calibration curve method was used for the estimation of Saxagliptin in API and pharmaceutical formulation. Results: The method was validated for linearity, range, accuracy, precision, robustness, LOD, LOQ. Linearity was found in the range of 10-60µg/ml. Accuracy was performed by using a recovery study. The amount of drug recovered was found to be in the range of 99.01-100.1%. All the parameters were validated as per the ICH guidelines. Conclusion: This method is suitable forused routine analysis of present Saxagliptin in API and Pharmaceutical dosage form

    DEVELOPMENT AND VALIDATION OF UV-SPECTROSCOPIC METHOD FOR ESTIMATION OF IPRATROPIUM BROMIDE IN API AND IN PHARMACEUTICAL DOSAGE FORM

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    Objective: To developed and validated UV spectrophotometric method for the estimation of ipratropium bromide in API and pharmaceutical formulation. Methods: Methanol is used as a solvent and the absorbance of the drug was measured at absorbance’s maxima of ipratropium bromide max is 214 nm. Results: Maximum absorbance obtained in 214 nm. Calibration curve plotted in concentration range 20-120 µm/ml exhibit the linearity relationship with line equation y=.0.0091x+0.1503 The Accuracy was found to be 99.7-100.2%, the precision %RSD= 0.08613-0.2668, and the LOD and LOQ is 6.33, 19.19. The method was found to comply all the validation parameters as per the ICH guideline indicating the sensitivity of the method analyte. Conclusion: This method is used as satisfactory for the routine analysis of ipratropium bromide in API and pharmaceutical dosage forms

    UV-SPECTROPHOTOMETRIC METHOD DEVELOPMENT AND VALIDATION FOR ESTIMATION OF IPRATROPIUM BROMIDE IN API AND PHARMACEUTICAL DOSAGE FORM

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    Objective: The current work intended towards the developed and validated by using Simple, rapid, sensitive, precise and specific method UV Spectrophotometric method for the estimation of Ipratropium bromide in API and pharmaceutical formulation. Methods: Water used as a solvent and the absorbance of the drug was measured at the absorbance’s maxima of Ipratropium bromide λmax is 214 nm. Result: Calibration curve plotted in concentration range 20-120µg/ml exhibit the linearity relationship with line equation y=0.0062x+0.3161 and r2=0.995. The Accuracy was found to be 99.5-100.1%, the precision %RSD= 0.12888-0.30533, and the LOD and LOQ is 8.78266-28.5881. The method was found to comply with all the validation parameters as per ICH guidelines indicating the sensitivity of the method towards analyte. Conclusion: The method can be used satisfactory for the routine analysis of Ipratropium Bromide present in API and Pharmaceutical dosage form

    DEVELOPMENT AND VALIDATION OF UV-SPECTROSCOPIC METHOD FOR ESTIMATION OF TIOTROPIUM BROMIDE IN API AND PHARMACEUTICAL DOSAGE FORM

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    Objective: The current work intended towards the developed and validated UV spectrophotometric method for the estimation of Tiotropium Bromide in API and pharmaceutical formulation. Methods: The UV spectrum of tiotropium bromide in methanol shows maximum absorbance at 230 nm. Calibration curve method was used for the estimation of tiotropium bromide in API and pharmaceutical formulation. Results: Maximum absorbance obtained in 230 nm. Calibration curve plotted in concentration range 20-120 µm/ml exhibit the linearity relationship with line equation y=0.0057x+0.3319. The Accuracy was found to be 80-100.5%. The precision %RSD=0.1110, and the limit of detection(LOD)=4.12and limit of quantification (LOQ= 12.50. The method was found to comply all the validation parameters as per the ICH guideline in indicating the sensitivity of the method analyte. Conclusion: This method is used as satisfactory for the routine analysis of tiotropium bromide in API and pharmaceutical dosage forms

    Design and Implementation of Full Bridge Non-isolated DC-DC Bidirectional Converter Using Fuzzy logic

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    With ever increasing benefits of non-renewable energy sources, the importance of energy storage system is increasing consistently. Power electronics converters are usually used to convert the power from renewable sources to match the load demand and grid requirements to improve dynamic and steady state characteristics of these green generation systems. Therefore, there is growing importance in bidirectional DC to DC converters for interface battery with energy sources. As DC to DC bidirectional converters can transfer the power between two DC sources in either direction, these converters are widely used in renewable energy hybrid power systems. Efficiency, economy and high conversion ratio are the some challenges in the development of DC to DC converters. For the low voltage range, non-isolated DC to DC converters are suitable also; they are fit for DC micro grid voltage levels

    Design and Implementation of Full Bridge Non-isolated DC-DC Bidirectional Converter Using Fuzzy logic

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    With ever increasing benefits of non-renewable energy sources, the importance of energy storage system is increasing consistently. Power electronics converters are usually used to convert the power from renewable sources to match the load demand and grid requirements to improve dynamic and steady state characteristics of these green generation systems. Therefore, there is growing importance in bidirectional DC to DC converters for interface battery with energy sources. As DC to DC bidirectional converters can transfer the power between two DC sources in either direction, these converters are widely used in renewable energy hybrid power systems. Efficiency, economy and high conversion ratio are the some challenges in the development of DC to DC converters. For the low voltage range, non-isolated DC to DC converters are suitable also; they are fit for DC micro grid voltage levels
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