Satish Kumar
Department of Pharmacognosy, Gautham college of Pharmacy, Bangalore, Karnataka, 560032 India

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Parenting style and emotional intelligence as the predictors of academic buoyancy among the senior secondary students Singh, Sarab Tej; Kumar, Satish; Singh, Vishal
Journal of Education and Learning (EduLearn) Vol 19, No 1: February 2025
Publisher : Intelektual Pustaka Media Utama

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11591/edulearn.v19i1.21283

Abstract

The current research is the study of academic buoyancy in relation to emotional intelligence and parenting styles. Academic buoyancy is a strength in a student’s life to deal with the routine problems in classroom study like low grades, negative feedback by teachers, and difficulties in understanding of concepts. For the studying the relationship between the variables, data was collected from the various school of Punjab state. The data of 1,149 students were used for the analysis. The results of the research explained that academic buoyancy and emotional intelligence of the girls was found to be significantly higher than boys. Among the four parenting styles there was also gender difference. Furthermore, on the basis of stream, there was a significant difference in all the variables. In correlation analysis, there was a significant relationship between academic buoyancy and emotional intelligence. Moreover, findings of the research revealed that, both emotional intelligence and parenting styles were found to be significant predictors of academic buoyancy. So, this research is very helpful for the parents, school principals, policymakers, and administrators.
Efficiency enhancement of off-grid solar system Kumar, Satish; Ansari, Asif Jamil; Singh, Anil Kumar; Gangwar, Deepak
International Journal of Electrical and Computer Engineering (IJECE) Vol 16, No 1: February 2026
Publisher : Institute of Advanced Engineering and Science

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11591/ijece.v16i1.pp111-120

Abstract

This paper presents the design and implementation of a sensor-enabled off-grid solar charge controller aimed at maximizing the utilization of renewable energy. The proposed system integrates solar and load power sensors to minimize solar energy wastage. A microcontroller is employed to efficiently monitor and regulate battery voltage, solar power generation, and load demand. This system is designed to optimize solar energy usage, reduce dependency on the electrical grid, and lower electricity bills. Additionally, a main supply controller board with a display is introduced, along with a smart scheduler for appliance management. Prior to deployment, total solar power wastage was recorded at 93.1 watts per day. After implementing the proposed solution, wastage was reduced to 13.1 watts per day—reflecting an 85.92% reduction. These results confirm the system’s effectiveness in reducing energy loss, increasing self-consumption, and promoting energy sustainability in off-grid environments. It is important to note that this value may vary based on factors such as temperature, cloud cover, fog, and irradiation levels.