Showing posts with label graphical representation. Show all posts
Showing posts with label graphical representation. Show all posts

Thursday, 24 July 2025

Electrical Conductivity Analysis of Ground Water at Surrounding Areas of Dildar Nagar of U.P, India | Chapter 1 | New Horizons of Science, Technology and Culture Vol. 3

One of the essential requirements of human beings is water. It is very crucial for the survival of all human beings and animals. It is a single worldwide natural resource distributed in all land, sea and atmosphere and unified by the hydrological cycle. It is the most important factor in the life of an organism as it is the major constituent of the protoplasm, plants, animals, microorganisms and aquatic life, all need water for their existence. In plants, all physiological processes like respiration, photosynthesis, absorption of nutrients and other metabolic processes are influenced by the amount of water available. This study was conducted to measure the Electrical Conductivity of Groundwater in the surrounding areas of Dildar Nagar of U.P., India. The groundwater samples were collected from different locations in Dildar Nagar village, and their electrical conductivity was measured in the laboratory. The data was presented graphically and interpreted using the method called analysis of variance. From the findings and analysis, it is concluded that electric conductivity depends on areas as well as months.

 

Author(s) Details

Salahuddin
Department of Mathematics, AMET University, Kanathur, Chennai, Tamil Nadu, India.

 

E. Ravikumar
Department of Marine Engineering, AMET University, Kanathur, Chennai, Tamil Nadu, India.

 

 

Please see the book here:- https://doi.org/10.9734/bpi/nhstc/v3/5738

Thursday, 20 February 2025

ECG Predictors of Myocardial Infarction - Localization and Culprit Artery | Chapter 1 | Medicine Essentials in Clinical Practice

Myocardial infarction (MI) remains a leading cause of morbidity and mortality worldwide. The electrocardiogram (ECG) is a cornerstone diagnostic tool in identifying myocardial ischemia and infarction due to its accessibility, rapidity, and cost-effectiveness. Key ECG predictors of MI include ST-segment elevation or depression, T-wave inversions, pathological Q waves, and new-onset left bundle branch block (LBBB). Additionally, high-risk features such as hyperacute T waves, QT prolongation, and reciprocal changes provide early clues for ischemia. Advances in computational analysis, including machine learning, have further enhanced the predictive value of subtle ECG patterns by identifying changes invisible to the human eye. While ECG findings are critical for rapid diagnosis, their interpretation requires integration with clinical context, biomarker analysis, and imaging studies for accurate stratification of risk and management. Continued research on novel ECG parameters, such as fragmented QRS and spatial QRS-T angle, holds promise for improving early detection and outcomes in MI patients.

 

Author (s) Details

 

Rohit Raina
Department of General Medicine, AIIMS Bathinda, Punjab, 151001, India.

 

Preeti Singh Dhoat
Department of General Medicine, AIIMS Bathinda, Punjab, 151001, India.

 

Amandeep Kaur
Department of General Medicine, AIIMS Bathinda, Punjab, 151001, India.

 

Sonali Mina
Department of General Medicine, AIIMS Bathinda, Punjab, 151001, India.

 

Please see the book here:- https://doi.org/10.9734/bpi/mono/978-93-49238-92-3/CH1

Sunday, 24 April 2022

Bright-Dark Solitary Wave Solutions of Coupled Integrable (2+1)-Dimensional Maccari System in Applied Physics | Chapter 03 | New Trends in Physical Science Research Vol. 1

 Using a newly developed methodology known as an extended modified auxiliary equation mapping method and three parameters, we were able to find a variety of new families of exact travelling wave solutions, including triangular-type solutions, periodic and doubly periodic like solutions, combined soliton like solutions, kink and anti kink type soliton like solutions, and kink and anti kink type soliton like solutions. In various fields of physics, such as quantum mechanics, hydrodynamics, plasma physics, and quantum field theory for studying the dynamics of Langmuir solitons that appear in nonlinear optics, the Maccari System is a well-known model for dening the dynamics of isolated waves that are localised in a very small part of space. We utilised Mathematica 10.4 to express the physical description of our newly discovered solutions graphically in order to better illustrate the behaviour of different shapes of solutions. The computing work and efficiency of the method illustrate its reliability, straightforwardness, and simplicity for solving various nonlinear complex partial differential equations.


Author(S) Details


Nadia Cheemaa
Department of Mathematics, Harbin Institute of Technology, Harbin 150001, P. R. China.

Aly R. SeadawyDepartment of Mathematics, Faculty of Science, Taibah University, Al-Madinah Al-Munawarah, Saudi Arabia and Department of Mathematics, Faculty of Science, Beni-Suef University, Egypt.

Hadi Rezazadeh
Faculty of Engineering Technology, Amol University of Special Modern Technologies, Amol, Iran.

View Book:- https://stm.bookpi.org/NTPSR-V1/article/view/6464