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Significance of Conic Section in Daily Life and Real Life Questions Related to it in Different Sectors Das, Prem Kumar; Sahani, Suresh Kumar; Mahto, Shyam Kishore
Jurnal Pendidikan Matematika Vol. 1 No. 4 (2024): August
Publisher : Indonesian Journal Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47134/ppm.v1i4.902

Abstract

Students tend to think of mathematics as, “that difficult, boring subject” that only exists within the walls of a classroom. Many students do not realize that mathematics is all around us occurring in our daily lives. Mathematics can be found easily in everyday activities such as cooking, driving, and even walking. Here, we are going to overview the conic section: ellipse, circle, parabola, hyperbola from different angle of life. In this report we will be analyzing a very crucial applications of conic section in the medical field, engineering field, some real life based questions will be sloved, some galleries specially a whispering gallery and some elliptical art works. We will be looking that how a conic section had given a great way to our life.
Asan, The Traditional Market of Kathmandu Valley: Analyzing Market Trend and Consumer Buying Behavior of Such Market Sharma, Shivani; Sahani, Suresh Kumar; Chaudhary, Bhawesh; Sahani, Kameshwar; Sah, Narayan
EDUMALSYS Journal of Research in Education Management Vol 1 No 2 (2023): EDUMALSYS Journal of Research in Education Management
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/edumalsys.v1i2.2048

Abstract

Asan is a hub for business in the Kathmandu valley famed for its bazaar, festive calendar, and historic location. This research looks at how the market is changing and how people shop in Asan, which is a blend of old and new ways of doing things. Apart from that, it is also one the most popular trade route for India-Tibet that passes through Kathmandu. To get in-depth knowledge about this old but traditional marketplace for this research paper I have chosen various approaches such as interviews, past data analysis, and surveys. On that basis, i saw how the market is changing over time, influenced by global trends and new business methods. This research is all about studying how people in Asan shop. I look at all the different things like culture, history, and how much money people have that affect how they decide what to buy. Our findings show how tradition, community, and modern ways of doing things impact what people choose to purchase in this market. This research helps us learn more about why Asan is important as an old-style market. It also helps us understand how other traditional markets around the world might work in our modern, globalized world. What we've learned can be useful for people who run markets, government leaders, and business owners who want to keep and make these cultural places even better.
Study and Analysis of Some Real Life Applications of Exponential Function Mahato, Suraj Kumar; Sahani, Suresh Kumar; Sahani, Kameshwar; Sah, Binod Kumar; Karna, Santosh Kumar
EDUMALSYS Journal of Research in Education Management Vol 2 No 1 (2024): EDUMALSYS Journal of Research in Education Management
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/edumalsys.v2i1.2845

Abstract

The exponential function as a mathematical concept plays an important role in the Corpus of mathematical knowledge, but unfortunately Students have problems grasping it. Paper exposes examples of exponential function application in a real-world (life).One of the most prevalent applications of exponential functions Involves growth and decay models. Exponential growth and decay show up in a host of natural applications. From population growth and continuously compounded Interest to radioactive decay and Newton's law of cooling, exponential functions are ubiquitous in nature. In this section, we examine exponential grown and decay in the context of some of the applications. In the preceding section, we examined a population growth problem in which the population grew at a fixed percentage each year. In that case, we found that the population can be described by an exponential function. A similar analysis will show that any process in which a quantity grows by a fixed percentage each year (or each day, hour etc.) can be modeled by an exponential function. Compound Interest is a good example of such a process. Other applications of exponential function are bacterial growth, bacterial decay, population decline, are obtained in this project.
Artificial Intelligence's Challenges and Opportunities for Management Education: A Journey of AI in Nonlinear Sciences Shah, Binod; Sah, Rajesh Kumar; Sah, Kiran Kumari; Sahani, Suresh Kumar
EDUMALSYS Journal of Research in Education Management Vol 2 No 2 (2024): EDUMALSYS Journal of Research in Education Management
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/edumalsys.v2i2.3515

Abstract

This study explores the problems and prospects of integrating Artificial Intelligence (AI) in management education, a field that has significantly evolved with technological advancements. AI has the potential to revolutionize management education by enhancing personalized learning, improving administrative efficiency, and providing data-driven decision-making support. However, challenges such as the digital divide, resistance to change among educators, data privacy concerns, and the substantial investments required for technology and training impede its widespread adoption. A mixed-methods approach, combining a literature review and survey, was employed to gather perspectives from the participants, including educators, administrators, and students. The findings reveal that while a major of institutions use AI for management education, significant concerns remain regarding data privacy, algorithmic bias, and the cost of implementation. The study underscores the need for comprehensive training, ethical guidselines, and increased funding to overcome these barriers. By addressing these challenges, management education institutions can effectively leverage AI to enhance learning outcomes, administrative efficiency, and overall educational quality. The paper provides valuable insights for educators, administrators, and policymakers aiming to integrate AI into management education, ensuring a smoother transition and greater acceptance among stakeholders.
Classical Study of Real Life Applications of Exponential Function Shrestha, Sujeena Kumari; Thakur, Asmita; Mandal, Kripa; Purbay, Roshni; Sahani, Suresh Kumar; Sahani, Kameshwar
Al-DYAS Vol 3 No 2 (2024): JUNI
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/aldyas.v3i2.3048

Abstract

One of the most prevalent applications of exponential function involves growth and decay modes. Exponential growth and decay show up in a host of applications. From population growth and continuously compounded interest to radioactive decay and Newton’s law of cooling exponential function are ubiquities in nature. In this section, we examine exponential growth and decay in the context of some of the application. In the preceding section, we examined a population growth problem in which the population grew at a fixed percentage each year. In that case, we found that the populations can be described by an exponential function. A similar analysis will show that any process in which a quality grows by a fixed percentage each year (or each day, hours, etc) can be modeled by an exponential function. Compound interest is a good example of such a process. Other applications of exponential function are bacterial growth, bacterial decay, population decline are obtained in this project (see [1-27])
Mu ̈ntz’s Theorem in 2-Inner Product Spaces and It’s Applications in Economics Kumar, Nand Kishor; Sahani, Suresh Kumar
Journal of Multidisciplinary Science: MIKAILALSYS Vol 2 No 3 (2024): Journal of Multidisciplinary Science: MIKAILALSYS
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/mikailalsys.v2i3.3991

Abstract

This study establishes a 2-inner product space, as well as its basic attributes and proof. The proof of Müntz’s theorem in 2-inner product spaces was demonstrated. Müntz’s Theorem finds a natural extension and application in the realm of 2-inner product spaces. By understanding the conditions under which certain functions form dense subsets, we can gain insights into the approximation properties and structural characteristics of these spaces. Further research may explore specific examples and ramifications of Müntz’s theorem in diverse areas of mathematics and their applications. Müntz’s Theorem provides valuable insights in economics by addressing the question of how well economic functions can be approximated when the available data or model inputs are restricted.
Use of Differential Equations in Population Growth Analysis Sah, Sarswati Kumari; Sahani, Suresh Kumar
Asian Journal of Science, Technology, Engineering, and Art Vol 2 No 6 (2024): Asian Journal of Science, Technology, Engineering, and Art
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajstea.v2i6.3951

Abstract

In this assignment we discussed differential equation applications in real-world scenarios. Differential equations are a significant area of mathematics with applications in many fields, including engineering, astronomy, biology, chemistry, physics, economics, and finance. Differential equations are used in economics to explain many concepts such as restricted and infinite growth, equilibrium and stability, and the dynamics of supply and demand in an economy. Differential equations will be used to examine several facets of Nepal in this research assignment.
From Equations to Insights: Navigating the Canvas of Tumor Growth Dynamics Jha, Anshuman; Sahani, Suresh Kumar; Jha, Aditya; Sahani, Kameshwar
MASALIQ Vol 3 No 6 (2023): NOVEMBER
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/masaliq.v3i6.1983

Abstract

This report delves into the pivotal role that differential equations play in the modeling of dynamic systems, with a specific emphasis on their utility within the domain to tumor growth modeling. Differential equations furnish a quantitative framework for understanding the complex dynamics inherent in the growth of tumors, thereby empowering the formulation of predictions, possible treatment measures and prolonged prognostic outcomes. In this report we embark upon an exploration of the historical origin of these equations, their associated classifications, features and their extensive deployment in multiple disciplines such as physics, biology, economics and computer science, though the primary emphasis is on the domain of tumor growth. Through the medium of two hypothetical case studies, employing Gompertz and Logistic Growth models, this report vividly illustrates the indispensable role of differential equations in the realm of clinical decision-making, the planning of treatment measures and in building a stable foundation for future endeavors. It concurrently explores the advantages of employing differential equations within the framework of tumor growth modeling, underscoring their mathematical precision, predictive efficacy, quantitative insights and historical success. Nevertheless, the report remains forthright in acknowledging the limitations of these models, particularly their tendency for simplifications, the neglect of spatially distributed information and their disregard for Stochastic Effects.
Modeling Planetary and Stellar Motion Using Differential Equations Sharma, Pravesh; Sahani, Suresh Kumar; Sahani, Kameshwar; Sharma, Kritika
ARZUSIN Vol 3 No 6 (2023): DESEMBER
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/arzusin.v3i6.1991

Abstract

The report aims to explore the application of differential equations in modeling the motion of planets and stars within our universe, serving as an introduction to the captivating realm of celestial mechanics. We utilize differential equations to represent the movement and positions of celestial bodies within a gravitational field, grounding our analysis in Newton's laws of motion and gravitation. Moreover, we employ Kepler's laws of planetary motion to elucidate the orbits of planets around the sun. It is important to note that this report offers a simplified perspective, designed for educational purposes. In reality, celestial mechanics can be exceedingly intricate, involving n-body problems, relativistic effects, and a multitude of other factors.
Unveiling the Power of Exponential Functions: Applications in Our Daily Lives Jha, Sagar; Sahani, Suresh Kumar; Sahani, Kameshwar
ARZUSIN Vol 4 No 3 (2024): JUNI
Publisher : Lembaga Yasin AlSys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/arzusin.v4i3.2861

Abstract

In this research paper, we have obtained some new applications of exponential and logarithmic functions. This report deals all the validity of previous works. This work is motivated by the work of [1-12].