Hybrid Conferencee

International Conference on Gravitational Physics and Relativity (ICGPR - 26)

19th - 20th November 2026 | Montreal, Canada

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Conference Notifications:

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Call for Papers Extended:
"The deadline for full paper submissions has been extended for the Research Plus International Conference in Montreal. Submit your research by today to participate in one of the top conferences."
Certificate of Presentation:
"Present your research and receive a Certificate of Presentation to recognise your valuable contribution to the conference."
Abstract Submissions Open:
"Abstract submissions for the Montreal event are now open! Don’t miss the chance to present your research. Submit now."
Networking with Global Experts:
"Engage with researchers and professionals from around the world at the Montreal conference. Build collaborations and gain insights from leading experts."
Keynote Speaker Sessions:
"Don’t miss our Keynote Sessions in Montreal, featuring global leaders and innovators sharing their knowledge."
Best Paper & Best Paper Presentation Award:
"Submit your paper and stand a chance to win the Best Paper Presentation Award. The winner will be recognized at the conference in Montreal."
SDG-Inspired Conference Focus:
"Our conference will highlight research that addresses global sustainability, inclusive education, and solutions for environmental challenges."

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 7
SDG 7 Affordable and Clean Energy
SDG 9
SDG 9 Industry, Innovation and Infrastructure
Track 01

Foundations of Gravitational Physics

This track will explore the fundamental principles of gravitational physics, including the historical development of gravitational theories. Discussions will focus on the mathematical formulations and conceptual frameworks that underpin our understanding of gravity.

Track 02

General Relativity: Theory and Applications

This session will delve into the intricacies of general relativity, examining both theoretical advancements and practical applications. Participants will present recent findings that enhance our comprehension of spacetime and gravitational interactions.

Track 03

Black Holes: Formation and Characteristics

This track will focus on the formation, properties, and observational signatures of black holes. Researchers will discuss the latest models and simulations that shed light on the nature of these enigmatic objects.

Track 04

Gravitational Waves: Detection and Implications

This session will cover the detection of gravitational waves and their significance in modern astrophysics. Presentations will highlight recent discoveries and the implications for our understanding of cosmic events.

Track 05

Cosmology and the Evolution of the Universe

This track will address the large-scale structure of the universe and the role of gravitational physics in cosmological models. Discussions will include the implications of dark energy and matter in shaping cosmic evolution.

Track 06

Spacetime Curvature and Its Consequences

This session will investigate the effects of spacetime curvature on physical phenomena. Researchers will present theoretical and experimental studies that explore the implications of curvature in various contexts.

Track 07

Relativistic Astrophysics: Observations and Theories

This track will focus on the intersection of relativity and astrophysics, examining phenomena such as relativistic jets and the behavior of matter in strong gravitational fields. Participants will share observational data and theoretical insights.

Track 08

Orbital Dynamics in Strong Gravitational Fields

This session will explore the dynamics of orbits in the presence of strong gravitational fields, including those near compact objects. Researchers will discuss numerical simulations and analytical approaches to understanding orbital behavior.

Track 09

Gravitational Lensing: Techniques and Applications

This track will cover the principles and applications of gravitational lensing in astrophysics. Presentations will highlight how lensing can be used to study distant galaxies and the distribution of dark matter.

Track 10

Experimental Tests of General Relativity

This session will focus on experimental approaches to testing the predictions of general relativity. Researchers will present innovative methodologies and results that challenge or confirm established theories.

Track 11

Numerical Relativity and Computational Techniques

This track will delve into the computational methods used in numerical relativity to simulate gravitational phenomena. Discussions will include advancements in algorithms and their applications to complex astrophysical scenarios.