Pre-Enrollment

4th November 2026

Final Paper Submission

9th November 2026

Registration Deadline

19th November`2026

Conference Date

4th Dec - 5th Dec 2026

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 4
SDG 4 Quality Education
SDG 9
SDG 9 Industry, Innovation and Infrastructure
SDG 12
SDG 12 Responsible Consumption and Production
TRACK 01

Advancements in Molecular Modeling Techniques

This track focuses on the latest developments in molecular modeling methodologies, emphasizing their applications in chemical sciences. Participants will explore innovative approaches to simulate molecular systems and predict their properties.

TRACK 02

Quantum Chemistry: Theoretical Foundations and Applications

This session delves into the theoretical underpinnings of quantum chemistry and its practical applications in understanding chemical phenomena. Discussions will include advancements in computational techniques and their implications for molecular systems.

TRACK 03

Molecular Dynamics Simulations: Techniques and Applications

This track highlights the role of molecular dynamics simulations in elucidating the behavior of complex chemical systems. Researchers will present case studies demonstrating the effectiveness of these simulations in various chemical contexts.

TRACK 04

Density Functional Theory: Innovations and Challenges

This session addresses recent innovations in density functional theory (DFT) and the challenges faced in its application to chemical problems. Presentations will cover new functionals, computational strategies, and their impact on electronic structure calculations.

TRACK 05

Ab Initio Methods in Chemical Research

This track explores the application of ab initio methods in predicting molecular properties and reactivity. Participants will discuss the latest advancements and their implications for theoretical and experimental chemistry.

TRACK 06

Reaction Simulation Techniques: From Theory to Practice

This session focuses on various simulation techniques used to model chemical reactions, bridging the gap between theoretical predictions and experimental observations. Researchers will share insights into the accuracy and efficiency of these methods.

TRACK 07

Electronic Structure and Its Role in Chemical Reactivity

This track examines the relationship between electronic structure and chemical reactivity, emphasizing computational approaches to analyze these interactions. Discussions will include case studies that illustrate the predictive power of electronic structure calculations.

TRACK 08

Conformational Analysis in Molecular Systems

This session is dedicated to the exploration of conformational analysis and its significance in understanding molecular behavior. Participants will present methodologies for analyzing and predicting conformational states in various chemical systems.

TRACK 09

Energy Calculations and Their Implications in Chemistry

This track addresses the importance of energy calculations in chemical research, focusing on methods to accurately determine potential energy surfaces. Presentations will highlight the role of these calculations in predicting molecular stability and reactivity.

TRACK 10

Predictive Modeling in Chemical Sciences

This session emphasizes the development and application of predictive modeling techniques in chemical research. Participants will discuss case studies that demonstrate the effectiveness of computational predictions in guiding experimental work.

TRACK 11

Computational Spectroscopy: Techniques and Applications

This track explores the intersection of computational methods and spectroscopy, focusing on how theoretical approaches can enhance spectroscopic analysis. Researchers will present innovative applications of computational spectroscopy in various chemical contexts.