Chemistry

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 4 Years
Mode On Campus
Level Postgraduate
Degree PhD
Next Intake TBA

Course Overview

Embark on a transformative academic journey with the Chemistry PhD at Eötvös Loránd University (ELTE). This postgraduate program is meticulously crafted for aspiring researchers eager to delve into the multifaceted world of chemical sciences, from theoretical underpinnings to practical applications. You will engage with a broad spectrum of chemistry, including inorganic, physical, analytical, environmental, theoretical, organic, biochemistry, electrochemistry, structural chemistry, and polymer chemistry. This PhD is designed for students who are passionate about pushing the boundaries of scientific knowledge and contributing to impactful research.

Your doctoral studies at ELTE will be an immersive, research-intensive experience, undertaken full-time on campus over four years. From the outset, you will actively participate in supervised research, working alongside leading academics in state-of-the-art laboratories. The curriculum includes compulsory report days and opportunities to deepen your expertise through a wide array of optional courses, covering advanced topics like computational statistical mechanics, quantum chemistry, and modern synthetic methods. You will graduate with a strong publication record, typically in internationally renowned journals, and be prepared for advanced research roles in academia or industry.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This course focuses on advanced topics in chemistry, including compulsory supervised research and report days. Students can choose from a variety of optional training modules covering areas such as computational statistical mechanics, quantum chemistry, heterocyclic chemistry, bioconjugates, and various analytical and synthetic techniques. The curriculum also delves into physical organic chemistry, organometallic chemistry, and macromolecular science.

1 Compulsory Courses

KÉM/REP1 Report Day Compulsory
KÉM/REP2 Report Day Compulsory
KÉM/REP3 Report Day Compulsory
KÉM/RES1 Supervised research Compulsory
KÉM/RES2 Supervised research Compulsory
KÉM/RES3 Supervised research Compulsory
KÉM/RES4 Supervised research Compulsory
KÉM/RES5 Supervised research Compulsory
KÉM/RES6 Supervised research Compulsory
KÉM/RES7 Supervised research Compulsory
KÉM/RES8 Supervised research Compulsory

2 Training Module

KÉM/TEACH1 Teaching Activity Optional
KÉM/TEACH2 Teaching Activity Optional
KÉM/201 Computational Statistical Mechanics Optional
KÉM/206 Ring Transformations in Heterocyclic Chemistry Optional
KÉM/207 Quantum Chemistry and Structural Determinations, Advanced Optional
KÉM/208 Quantum Mechanics of Molecular Motions Optional
KÉM/212 Quantum Chemical Molecular Modeling Optional
KÉM/215 Electrostatic Interactions in Colloid Systems Optional
KÉM/216 Self-association of Surfactants in Solution Optional
KÉM/218 Heteroaromatic Chemistry Optional
KÉM/223 Bioconjugates Optional
KÉM/224 Selected Chapters of Peptide and Protein Chemistry Optional
KÉM/226 Theoretical Electrochemistry Optional
KÉM/227 Basics of Macromolecular Technology Optional
KÉM/228 Principles of Molecular Engineering of Macromolecules Optional
KÉM/231 New Trends in X-ray Crystallography Optional
KÉM/232 Basic Neurochemistry Optional
KÉM/233 Methods of Applied Statistics Optional
KÉM/234 Modern Reaction Kinetics Optional
KÉM/235 Surface Chemistry of Biomaterials Optional
KÉM/239 Organometallic Compounds in Organic Synthesis Optional
KÉM/240 Modern Synthetic Methods Optional
KÉM/241 Theoretical Background of Experimental Electrochemistry Optional
KÉM/242 Introduction to the Theory of Elementary Reaction Kinetics Optional
KÉM/246 Shape, Similarity, and Complementarity of Molecules Optional
KÉM/247 Preparation of Cyclo- and Oligopeptides Optional
KÉM/251 Structure Elucidation of Peptides and Proteins by NMR Spectroscopy Optional
KÉM/252 Bio-NMR Pulse Sequences Optional
KÉM/254 Methods of Quantum Chemistry Optional
KÉM/255 Modern Methods of Quantum Chemistry Optional
KÉM/256 Disorder in Condensed Phases Optional
KÉM/257 Organofluorine Chemistry Optional
KÉM/260 Physical Organic Chemistry Optional
KÉM/261 Instrumental Nuclear Methods Applied in Environmental Analysis Optional
KÉM/266 Applied NMR Spectroscopy Optional
KÉM/268 Mathematical Methods in Quantum Chemistry I Optional
KÉM/269 Mathematical Methods in Quantum Chemistry II Optional
KÉM/272 Modern Methods of Quantum Chemistry Optional
KÉM/274 Application of Photoionization in Spectroscopy Optional
KÉM/275 Organometallic Chemistry Optional
KÉM/277 Investigation of Metal Corrosion by Electrochemical Methods Optional
KÉM/279 Applied Gas Chromatography Optional
KÉM/280 Separation Techniques in Organic Chemistry Optional
KÉM/282 Combustion Chemistry and Physics Optional
KÉM/283 Investigation of Reaction Mechanisms Optional
KÉM/284 Applied Computer Simulations Optional

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 9,410.00
Second Year Fee Tuition fee
USD 9,410.00
Third Year Fee Tuition fee
USD 9,410.00
Fourth Year Fee Tuition fee
USD 9,410.00
Total Program Cost Estimated total tuition
USD 37,643.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 620.00 - USD 775.00
Food & Groceries USD 2,234.00 - USD 4,467.00
Transport USD 354.00 - USD 708.00
Utilities & Bills USD 931.00 - USD 2,048.00
Estimated Total USD 3,519.00 - USD 7,223.00

Living cost estimates are based on Lagymanyos Campus.

Why Study Chemistry at Eötvös Loránd University (ELTE)

What makes this program stand out

Top 20 in UK For Computer Science

Exeter's Computer Science department consistently ranks among the top 20 in the UK for both teaching quality and research output.

Fast Offers Quick turnaround

Exeter typically responds to applications within 2-3 weeks, giving you clarity on your options quickly.

Flexible Intakes September start

Primary intake in September with January start available for some pathways through the INTO foundation program.

Accredited Industry recognized

Accredited by BCS, The Chartered Institute for IT, meeting requirements for Chartered IT Professional (CITP) status.

Life at Eötvös Loránd University (ELTE) in Hungary

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Chemistry at Eötvös Loránd University (ELTE)

Can I work while studying?

International students can work up to 30 hours per week during term time. They can also work for up to 90 days during breaks without requiring a separate work permit.

What English language score do I need for this course?

For the TOEFL, the required scores are a listening score of 18, an overall score of 72, among others. For IELTS, a minimum overall score of 5.5 is required, with specific scores in listening, reading, speaking, and writing.

What jobs can I get after studying this course?

Potential job titles include research scientist, lab technician, chemical engineer, quality control analyst, and academic researcher.

What will I actually study in this course?

The program covers diverse fields such as inorganic chemistry and environmental chemistry. Students focus on research from the start and participate in annual conferences to report their progress.

When can I start — what are the intake months?

The Hevesy György PhD School of Chemistry accepts new students every September. Make sure to check the application deadlines and requirements ahead of time.
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