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ICECQE · Registering as Listener

International Conference on Electron Correlation and Quantum Effects

12 - 13 Oct 2026 Kumasi, Ghana Standard / Physical Participation
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$130
virtual · $155 in person
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Registration summary

ConferenceICECQE
ModeStandard / Physical
ParticipationListener
Registration fee$155.00
Bank charges (5.8%)$8.99
Total payable$163.99
Includes all bank processing charges — the amount above is exactly what will be charged.

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• Conference Session Tracks •
SDGs
SDG-Aligned Research Themes

ICECQE conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.

SDG 9 - Industry, Innovation and Infrastructure SDG 12 - Responsible Consumption and Production
01 Advancements in Many-Body Theory +
This track focuses on the latest developments in many-body theory, emphasizing its applications in understanding complex electron interactions. Researchers are invited to present novel methodologies and theoretical frameworks that enhance our comprehension of many-body systems.
02 Wavefunction Correlation Techniques +
This session will explore innovative approaches to wavefunction correlation, including new algorithms and computational strategies. Participants are encouraged to discuss their findings on improving accuracy and efficiency in quantum chemical calculations.
03 Quantum Chemistry and Electron Correlation +
This track highlights the role of electron correlation in quantum chemistry, examining its impact on molecular properties and reactivity. Contributions that bridge theoretical insights with practical computational methods are particularly welcome.
04 Perturbation Theory in Quantum Systems +
This session will delve into the applications of perturbation theory in various quantum systems, focusing on its effectiveness in treating electron correlation. Researchers are invited to share advancements and case studies that illustrate the utility of perturbative approaches.
05 Coupled Cluster Theory Developments +
This track is dedicated to the latest advancements in coupled cluster theory, including new formulations and computational techniques. Presentations should highlight the implications of these developments for understanding electronic structures and dynamics.
06 Configuration Interaction Methods +
This session will cover recent progress in configuration interaction methods, emphasizing their role in accurately describing correlated electronic systems. Participants are encouraged to present novel applications and theoretical insights that enhance these methodologies.
07 Density Matrix Theory Applications +
This track focuses on the applications of density matrix theory in quantum chemistry, particularly in relation to electron correlation and excited states. Contributions that explore the theoretical underpinnings and practical implementations are highly encouraged.
08 Quantum Simulations of Correlated Systems +
This session will explore the use of quantum simulations to investigate correlated electronic systems, highlighting both theoretical and computational advancements. Researchers are invited to present their findings on the effectiveness of various simulation techniques.
09 Ab Initio Methods in Theoretical Chemistry +
This track is dedicated to the exploration of ab initio methods in theoretical chemistry, focusing on their application to electron correlation and molecular systems. Presentations should emphasize novel approaches and their implications for chemical reactivity.
10 Multi-Reference Methods in Quantum Chemistry +
This session will examine multi-reference methods and their significance in accurately describing electron correlation in complex systems. Contributions that showcase innovative applications and theoretical advancements in this area are encouraged.
11 Correlation Functionals and Their Applications +
This track will focus on the development and application of correlation functionals in quantum chemistry, particularly in relation to electron interactions. Researchers are invited to discuss their findings on the effectiveness and limitations of various functional forms.