Many Body Methods in Quantum Chemistry Certification course is a 12-week certification course that provides students with an understanding of the behaviour of molecular systems. Students are offered a comprehensive exploration of many-body methods which forms an essential toolkit in modern quantum chemistry through the Many Body Methods in Quantum Chemistry Certification by NPTEL.
Many body methods in quantum chemistry online course develops the skills necessary for students to effectively apply many-body methods to a diverse array of chemical problems. The course also equips students with the knowledge and skills to navigate the details of quantum chemistry and make meaningful contributions to the field.
Candidates for the Many Body Methods in Quantum Chemistry certification training are required to have a bachelor's, or master's degree for the programme.
Certification Qualifying Details
Candidates for the Many Body Methods in Quantum Chemistry certification course must qualify for the final examination to receive the completion certificate.
What you will learn
After completing the Many Body Methods in Quantum Chemistry Certification syllabus, students will gain a detailed understanding of the theoretical foundations and practical applications of advanced quantum mechanical techniques. They will acquire comprehensive knowledge of many-body methods which are essential to utilise those applications in real-world scenarios.
The Many Body Methods in Quantum Chemistry training is tailored for graduate students, researchers and professionals in the fields of chemistry, physics, and related disciplines.
The course is apt for the following professionals:
To join the Many Body Methods in Quantum Chemistry classes, candidates must follow the below-mentioned steps:
Step 1: Visit the official course URL:
https://nptel.ac.in/courses/104101366
Step 2: Log in to the website and enrol for the programme.
Step 3: Enter relevant academic and personal details.
Step 4: Pay the course fee to complete the enrollment process
Step 5: Start learning
Application Details
Candidates need to visit the official course page to enrol in the online Many Body Methods in Quantum Chemistry Certification Course. After that, they need to complete the enrollment process by entering their details and course fees.
The Syllabus
Lecture 1: Overview of basics of quantum Mechanics
Lecture 2: Introduction to Slater Determinants
Lecture 3: Form of the exact wave function
Lecture 4: Variation Method
Lecture 5: Slaters Rules for Matrix Elements
Lecture 6: Expectation value of Hamiltonian in single Determinant
Lecture 7: Derivation of Hartree Fock equation
Lecture 8: Derivation of Canonical Hartree Fook equation
Lecture 9: Orbital Energies and their interpretation
Lecture 10: Spin Integrated from of Hartree Fock equation for closed-shell systems
Lecture 11: Hartree Fock Roothaan Equation and introduction of symmetry of two-electron integrals
Lecture 12: Expression of Fock in terms of atomic integrals
Lecture 13: Roothaan equation in orthonomalized basic
Lecture 14: Change density bond order matrix population analysis
Lecture 15: Dipole moment introduction of basis set
Lecture 16: Details of Basic Sets
Lecture 17: Brillouin Theory
Lecture 18: Dissociation of Hydrogen Molecule RHF Problem
Lecture 19: Inadequacies of Restricted Hartree Fook
Lecture 20: Introduction to Correlation energy
Lecture 21: Hartree Fook Perturbation Theory
Lecture 22: Derivation of first-order perturbation wave function for ground state
Lecture 23: Derivation of second order Perturbation energy
Lecture 24: Physical Insight of Pair Correlation Theory
Lecture 25: Introduction to Configuration Interaction Method
Lecture 26: Configuration interaction method structure of the Hamiltonian matrix
Lecture 27: Configuration interaction with only excited configuration
Lecture 28: Configuration interaction DCI in matrix from and single + double CI
Lecture 29: D-CI for Non-Interacting Hydrogen Molecules
Lecture 30: Size Consistency problem and N-dependence of D-CI correlation Energy
Lecture 31: Introduction to Second quantization
Lecture 32: Anti-communication rules of second quantizes operates and operators in second quantization
Lecture 33: Diagrammatic representation of perturbation energy
Lecture 34: Coupled cluster method
Lecture 35: Static correlation and introduction to multi-reference problem
Lecture 36: Introduction to MCSCF based methods
Evaluation process
Candidates for the Many Body Methods in Quantum Chemistry certification course are required to appear for the examinations to receive the completion certificate.