Upcoming Programmes
One day Rashtriya Karmayogi Jan Seva Program
31 January 2026
(Mission Karmayogi | Department of Higher Education, Ministry of Education)
Program Type: Government Capacity Building
National Framework: Mission Karmayogi
Implementing Office: Office of Vocational Training & Upskilling (OVTU), IIT Jodhpur
Program Overview
The Rashtriya Karmayogi – Jan Seva Program is a one-day intensive capacity- building program designed to strengthen citizen-centric service delivery, public service values, and behavioural competencies among government functionaries. The program focuses on embedding the Jan Seva (Citizen First) ethos within public service roles, in alignment with the Mission Karmayogi vision of a future-ready, responsive, and accountable civil service.
Target Audience
- Government officials
- Academic administrators
- Officers and staff nominated under Mission Karmayogi
- Participants identified through DoHE / Ministry-aligned channels,
Pedagogical Approach
- Experiential and discussion-driven sessions
- Case-based learning rooted in public service contexts
- Reflection on citizen engagement, service outcomes, and accountability
- Alignment of individual roles with national development objectives
One-Day Hands-On Training on COMSOL Multiphysics
07 February 2026
Program Overview
The one-day hands-on training session is designed to provide in-depth exposure to the modeling and simulation of real-world multi-physical problems using COMSOL Multiphysics. The program will guide participants through the fundamentals as well as advanced features of the software, enabling them to develop, analyze, and interpret multiphysics models relevant to practical engineering and scientific applications.
Participants will gain practical experience with advanced simulation techniques that are extensively used in academia and industry, supported by guided demonstrations and hands-on exercises. The session will be conducted by an experienced industry expert nominated by COMSOL Multiphysics, ensuring industry-relevant insights and best practices. The program places strong emphasis on application-based learning and is intended to benefit students, research scholars, faculty members, and professionals seeking to enhance their modeling and simulation capabilities.
Register here using the following link: https://erponline.iitj.ac.in/exapp/auth/apps.htm
Target Audience
Audience: UG&PG students, faculty, and staff members of IIT Jodhpur, external participants
Mode: Hybrid (offline and online participation)
Duration: one day
Certification: IIT Jodhpur
Certificate Program: Fundamentals of Quantum Computing
(Proposed Executive / Professional Certificate Program)
Program Type: Advanced Technology Upskilling
Sector: Quantum Technologies | Emerging Computing
Academic Office: Office of Vocational Training & Upskilling (OVTU), IIT Jodhpur>
Program Overview
The Fundamentals of Quantum Computing program is a compact, intensive certificate program designed to build strong theoretical foundations combined with hands-on laboratory exposure in quantum computing. Unlike hybrid quantum-AI programs offered elsewhere, this program adopts a fundamentals-first approach, enabling learners to develop deep conceptual clarity and practical competence in quantum computing platforms.
The program directly addresses India’s growing demand for quantum-ready professionals under the National Quantum Mission.
Academic Structure
- Credits: 4.0
- Total Duration: 60 Hours
- Theory: 30 Hours (Foundational Concepts)
- Laboratory: 30 Hours (Hands-on Quantum Computing Platforms)
- Format: Compact Intensive (suitable for working professionals)
- Mode: Hybrid
Target Audience
- Engineering Graduates (CSE, ECE, Physics) seeking specialization
- Working Professionals (Software Engineers, Data Scientists, Researchers) aiming to pivot to quantum computing
- Academic Researchers and PhD scholars planning quantum-enabled research initiatives
Training Program on Government e-Marketplace (GeM) and General Financial Rules (GFR)
July 11–12, 2026
Program Overview:
This training program is designed to provide participants with a practical and comprehensive understanding of public procurement systems in India, combining regulatory knowledge with hands-on exposure to digital procurement workflows. Participants will learn how to efficiently navigate the GeM platform, ensure compliance with GFR provisions, and execute procurement processes with accuracy and transparency. The program is particularly valuable for professionals involved in procurement, administration, finance, and institutional operations.
Target Audience:
- Internal Participants (IITJ employees)
- External participants (others) from:
- Central Government Departments
- State Government Departments
- Centrally Funded Technical Institutions (CFTIs)
- Public Sector Undertakings (PSUs)
- Other private/government institutions
Program Contents:
Day 1
- Introduction to GFR and its role in government procurement
- Detailed exploration of GFR provisions
- GFR compliance in tendering and documentation
- Methods of procurement
- Components and evaluation of bids
- Introduction to GeM interface
Day 2
- Demonstration of procurement of goods on GeM
- Demonstration of procurement of services on GeM
- Formulation of bids (product-based)
- Bid/reverse auction awarding
- Single packet bid, limited tender, and rate contracts
Program Timeline:
| Program Dates | July 11–12, 2026 |
|---|---|
| Last Date of Registration & Payment | July 09, 2026 |
| Duration and Time | 2 Days (10:00 AM – 5:30 PM) |
| Mode | Hybrid (Online via Google Meet and Offline at CC Lab, IIT Jodhpur) |
| Certification | IIT Jodhpur |
| Fees |
External Participants (Others): ₹2,542/- + GST Internal Participants (IITJ employee): No registration fee |
Registration & Payment:
Register using the link below:
👉
https://erponline.iitj.ac.in/exapp/auth/signup.htm?module_id=13
FAQs (Frequently Asked Questions)
-
What is the last date to register & payment?
The last date for registration and payment is July 09, 2026. -
Who can attend this training program?
The training program is open to participants from government departments, PSUs, academic institutions, and other organizations involved in procurement activities. -
Is prior experience with GeM required?
No prior experience is necessary. The program starts from the basics and progresses to advanced topics. -
How can participants attend in hybrid mode?
Participants can choose to attend either:- Online via Google Meet
- Offline at IIT Jodhpur (CC Lab)
-
Will TA/DA be provided to external participants attending offline sessions?
No, TA/DA (Travel Allowance/Dearness Allowance) will not be provided. Participants are required to bear their own travel, accommodation, and related expenses.
Fundamentals of Quantum Computing By IIT Jodhpur
The Fundamentals of Quantum Computing Program introduces learners to the principles of quantum mechanics, quantum information, and quantum algorithms through a balanced mix of theory and hands-on practice. Using Python and Qiskit, learners design and run quantum circuits, explore real quantum hardware, and build the foundational skills needed for advanced study and careers in the emerging quantum computing ecosystem.
Admission Process
Admission would be taken on merit basis. The candidates need to pass an eligibility test and/or interview. The same would also serve the purpose of availed Scholarship.
Course Fee:
Rs. 30,000 (including GST) (Scholarship up to 30% is available)
Payment Options:
- One-Time Payment
- 3 Months Installment Plans
Program Highlights
Affordable learning, unmatched IIT Jodhpur credibility.
- Certification from IIT Jodhpur
- Theory and Hands-ON sessions by IIT Jodhpur Faculties
- Mentorship & Curriculum by IIT Jodhpur
- Industry Validated Program
- 100% Placement Support
- 1 Capstone & 3 Minor Projects
3 Months - Weekend (Sat-Sun)
60 Hours (Theory:30 Hours & Practical:30 Hours) Live Program
Awarding Body
IIT Jodhpur
Certificate
IIT Jodhpur
Faculties IIT Jodhpur Faculties
Qualification Type
Future Skills Qualification & OEM Qualification
Number of Credits
4About The Program
The Fundamentals of Quantum Computing Program offers a structured, concept-to-implementation learning journey that builds a strong foundation in quantum computing. The program connects quantum physics, mathematical fundamentals, and hands-on quantum programming to help learners understand how quantum computers operate and where they can be applied. Learners start with core concepts such as qubits, Dirac notation, quantum gates, superposition, entanglement, and the postulates of quantum computing. The curriculum advances into quantum communication protocols, error correction, and key ideas like quantum teleportation, superdense coding, and quantum cryptography. The program emphasizes practical learning through mathematical foundations and hands-on work with Python and Qiskit, enabling learners to design, simulate, and run quantum circuits on real quantum hardware. Learners also explore foundational quantum algorithms, preparing them for advanced studies and emerging opportunities in the quantum technology ecosystem.
Campus Immersion Program
Enrolled students would have the opportunity to join the Campus Immersion Program at IIT Jodhpur at their own expenses.Who Is This Program For?
This program is designed for learners who have a strong interest in advanced computing and emerging technologies, including:- Final-year B.E./B.Tech students from IT, Computer Science, Electronics, Electronics & Communication, Electrical, Electrical & Electronics, Instrumentation, Electronics & Instrumentation, or allied engineering branches
- Final-year MCA or M.Sc. students in IT, Computer Science, Electronics, Electronics & Communication, Electrical, Electrical & Electronics, Instrumentation, or allied disciplines
- Learners qualified under NSQF Level 5 or 5.5 in IT, Computer Science, Electronics, Electrical, Electronics & Communication, Instrumentation, or related domains
- Students and professionals seeking foundational knowledge in Quantum Computing to prepare for higher studies, research, or future technology roles
- Individuals with a background in mathematics, computing, or electronics who want to transition into next-generation computing technologies
Eligibility
Final Year B.E/B. Tech in IT/Electronics/ CS/Electronics & Communication/ Electrical/ Electrical and Electronics/Instrumentation/ Electronics & Instrumentation/allied branches Or Final year MCA/M.Sc.in IT/Electronics/ CS/Electronics & Communication/ Electrical/ Electrical and Electronics/Instrumentation/ Electronics & Instrumentation/allied branches Or NSQF Level 5.5 in IT/Electronics/ CS/Electronics & Communication/ Electrical/ Electrical and Electronics/Instrumentation/ Electronics & Instrumentation /allied branches Or NSQF Level 5 in IT/Electronics/ CS/Electronics & Communication/ Electrical/ Electrical and Electronics/Instrumentation/ Electronics & Instrumentation /allied branches
Program Outcomes
By the end of this program, learners will be able to:
- Develop a strong conceptual foundation in Quantum Computing, including core principles and an understanding of modern quantum hardware architectures.
- Set up and configure the Python-based quantum computing environment, enabling the development and execution of quantum applications.
- Build proficiency in Qiskit, gaining a clear understanding of quantum circuit design, gates, and program execution using industry-standard quantum frameworks.
- Design, implement, and analyze quantum algorithms, gaining hands-on experience in solving computational problems through quantum approaches.
Certificate
Upon successful completion of the program, you will be awarded a Fundamentals of Quantum Computing certificate by the National Institute of Electronics and Information Technology (NIELIT) as Awarding Body. This certification validates your expertise in Quantum Computing.
Curriculum
Introduction to Quantum Computing
- Quantum Bits
- Dirac Notation
- Single and Multiple Qubit Gates
- No Cloning Theorem
- Quantum Interference
Postulates of Quantum Computing
- Quantum State
- Quantum Evolution
- Quantum Measurement
- Bell’s Inequality Test
- Density Coding
- Quantum Teleportation
- BB84 Protocol
- Quantum error correction
Qubit & Physics
- Introduction to Qubit
- Superposition and Interference
- Entanglement
- Qubit State
- Braket
- Multi Qubit
Foundations to Mathematics
- Intro to Mathematical Foundations
- How Classical Computers Work?
- Probability
- Statistics
- Complex Numbers
- Matrix
- Matrix Operations
- Special Matrices
- Linear Transformation
Python and Qiskit Setup
- Python and Qiskit Setup on Windows
Qiskit
- Introduction to Qiskit
- Classical Gates
- Quantum Gates
- Entanglement
- Qiskit
- First Circuit
- Running on Simulator
- Getting Real Quantum Computer Properties
- Running on Real Quantum Computer
- Toffoli
Qiskit Tools
- Beautiful Circuits
- Beautiful Results
- Arbitrary State Initialization
- Arbitrary Gate Initialization
- Inverse and Transform Circuit to Gate
- Depth and Width
- Obtain Information about Backend Part I
- Use real Quantum Computers
Quantum Communication Tools
- Quantum Teleportation
- SuperDense Coding
Quantum Algorithms
- Deutch Jozsa Algorithm
- Bernstein Vazirani Algorithm
- Simons Algorithm
- Grover's Algorithm
- Shor's Algorithm
Quantum Application
- Quantum Computing Application using Algorithms
Tools:
- Python
- Qiskit
- Qiskit Terra
- Qiskit Aer
- IBM Quantum
- Quantum Circuit Simulator
- Quantum Gate Libraries
- Quantum Algorithm Libraries
- Quantum Measurement Tools
- Quantum Visualization Tools
- Quantum Communication Tools
Skills You Will Master
- Quantum computing fundamentals
- Qubit modeling and state representation
- Dirac (Bra–Ket) notation
- Quantum gate operations (single & multi-qubit)
- Superposition and quantum interference
- Quantum entanglement
- Quantum measurement and state evolution
- Quantum communication protocols
- Quantum error correction basics
- Mathematical foundations for quantum computing
- Quantum circuit design and simulation
- Qiskit-based quantum programming
- Execution on real quantum hardware
- Quantum algorithm design and analysis
- Problem-solving using quantum algorithms
Career Opportunities:
Learners completing this Quantum Computing program can explore the following emerging and future-focused career paths:
- Quantum Computing Engineer – Design and implement quantum circuits and applications using quantum frameworks
- Quantum Software Developer – Develop, simulate, and optimize quantum algorithms using tools like Qiskit
- Quantum Research Associate – Assist in research related to quantum algorithms, quantum information, and hardware
- Quantum Algorithm Engineer – Analyze and build quantum algorithms for optimization, cryptography, and search problems
- Quantum Hardware Analyst – Understand and evaluate quantum hardware behavior, noise, and performance
- Quantum Cryptography Specialist – Work on secure communication systems using quantum protocols
- Quantum Simulation Engineer – Model and simulate complex quantum systems and processes
- Quantum Data Scientist (Entry-Level) – Apply quantum approaches to data analysis and computational problems
- Quantum Technology Consultant – Support organizations exploring quantum adoption and use cases
FAQs:
Q: How can I apply for a scholarship, and what documents are required?
Ans: When you're applying for admission, submit your CV/Resume using the application form which has all the information about your education & professional background. These will be reviewed to help with your application.
Q: How long does it take for the admission confirmation after applying?
Ans: Your admission will be confirmed within a day on successful verification of all the documents and applications
Q: Do I need to appear for any test or interview during the admission process?
Ans: There is no test required for admission. Applications go through a review process by the admission panel for selection.
Q: Who is eligible for the scholarship and what is the scholarship criteria?
Ans: Working Professionals, Freshers, Graduates, Postgraduates, and PhD Holders are eligible to apply for up to 30% scholarship. How much scholarship you will get will depend on your education & professional background.
Q: How many total hours of learning and training are included in the program and how many capstone projects are part of the curriculum?
Ans: This program offers over 60 hours of learning, complete with assignments and 10+ hands-on projects to equip you with the latest skills.
Why QC Now? Projects