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09 PhD Positions-Fully Funded at Karlsruhe Institute of Technology (KIT), Germany

Karlsruhe Institute of Technology (KIT), Germany invites online Application for number of  Fully Funded PhD Positions at various Departments. We are providing a list of Fully Funded PhD Programs available at Karlsruhe Institute of Technology (KIT), Germany.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Positions – Fully Funded

PhD position summary/title: PhD student (f/m/d) in the field of theoretical catalysis

Chemical reactions in zeolites are to be investigated using quantum chemical methods. The processes unter investigation (methanol-to-olefins, syngas-to-olefins) involve the production of hydrocarbons from renewable raw materials. In addition to periodic density functional theory (DFT), ab initio methods and molecular dynamics (MD) simulations will also be performed for the investigations. Furthermore, machine learning can be tested to accelerate MD simulations.

Deadline : 09.11.2025

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(02) PhD Positions- Fully Funded

PhD position summary/title: PhD Position (f/m/d) in Seismology: Full-Waveform Inversion of the Adriatic Plate

The tectonic structure of the Adriatic microplate and its interaction with surrounding orogens (Alps, Apennines, Dinarides, Hellenides) remain debated, with unresolved questions on slab tearing, detachment, and subduction polarity. As part of the large-scale international Adria-Array project we will construct the first high-resolution multiscale 3D P- and S-wave velocity model of the circum-Adria region using a full-waveform inversion (FWI) approach and jointly inverting for regional earthquake waveforms, ambient noise cross-correlations, and teleseismic waveforms. This project is imbedded in the multidisciplinary DEFOMR project funded by DFG on shedding new light on slab dynamics, crust–mantle coupling, and the driving parameters of mantle and crustal processes on geohazards.

Deadline : 02.11.2025

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View All Fully Funded PhD Positions Click Here

 

(03) PhD Positions – Fully Funded

PhD position summary/title: Scientist (f/m/d), PhD position position on the development of automated segmentation and analysis of imaging datasets

The ERC-funded Synergy project “NanoX: Nanoscale X-ray tissue imaging: understanding the pathophysiology of hepatitis E infection” combines the expertise of a diverse team with synergistic skills in infectious disease, physics, engineering, and structural biology to pioneer several technological innovations. At the heart of the project is the development of novel integrative approaches to assessing structural changes in soft X-ray tomography data in correlation with traditional medical assays.

Deadline : 16.11.2025

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(04) PhD Positions – Fully Funded

PhD position summary/title: Scientist (f/m/d), PhD position on the development of microbiopsies for soft X-ray imaging

The ERC-funded Synergy project “NanoX: Nanoscale X-ray tissue imaging: understanding the pathophysiology of hepatitis E infection” combines the expertise of a diverse team with synergistic skills in infectious disease, physics, engineering, and structural biology to pioneer several technological innovations. At the heart of the project is the development of a targeted micro-biopsy tool for rapid tissue extraction, which is compatible with soft X-ray tomography and can be used in high biological risk facilities.

Deadline : 16.11.2025

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(05) PhD Positions – Fully Funded

PhD position summary/title: PhD Candidate (f/m/d) in Chemical Engineering or Physics for Research in the Field of Physical Cryptography

The cryptocurrency Bitcoin operates without a central authority. This is made possible by (digital) proof of work , which, however, comes with enormous energy consumption and CO₂ emissions. Our project transfers this principle into the physical world: we are conducting research on physical one-way functions , reproducible physical processes that generate measurable outputs from input parameters, but for which solving the inverse problem is difficult. Based on this, we are developing a proof of physical work protocol that has the potential to significantly reduce global CO₂ emissions.

As an interdisciplinary junior research group, we are opening up a new field of research at the interface of cryptography, engineering, and natural sciences. The project runs for five years and is funded by the Carl-Zeiss-Stiftung .

Deadline : October 31, 2025

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(06) PhD Positions- Fully Funded

PhD position summary/title: PhD Candidate (m/f/d) in Computer Science / Cryptography for Research in the Field of Physical Cryptography

The cryptocurrency Bitcoin operates without a central authority. This is made possible by (digital) proof of work, which, however, comes with enormous energy consumption and CO₂ emissions. Our project transfers this principle into the physical world: we are conducting research on physical one-way functions, reproducible physical processes that generate measurable outputs from input parameters, but for which solving the inverse problem is difficult. Based on this, we are developing a proof of physical work protocol that has the potential to significantly reduce global CO₂ emissions.

As an interdisciplinary junior research group, we are opening up a new field of research at the interface of cryptography, engineering, and natural sciences. The project runs for five years and is funded by the Carl-Zeiss-Stiftung.

Deadline : October 31, 2025

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(07) PhD Positions – Fully Funded

PhD position summary/title: Doktorandin / Doktorand (w/m/d) im Bereich Nichtlineare Dynamik

  • Modellierung, Simulation und Optimierung nichtlinearer dynamischer (mechatronischer) Systeme
  • Analyse und Interpretation von nichtlinearen Effekten anhand von Bewegungsmustern
  • Experimentelle Validierung und Modellabgleich
  • Veröffentlichung der Ergebnisse in Fachzeitschriften und Präsentation auf nationalen und internationalen Tagungen
  • Mitwirkung in der Lehre am Institut für Technische Mechanik

Es besteht die Möglichkeit zur berufsbegleitenden Promotion sowie die Möglichkeiten zum Forschungsaustausch mit nationalen und internationalen Partnern.

Deadline : 30.10.2025

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(08) PhD Positions – Fully Funded

PhD position summary/title: PhD Position on Origami-inspired Shape Memory Microrobots

This research aims to develop origami-inspired microrobots using shape memory alloys (SMA) for advanced biomedical applications, such as minimally invasive surgery, targeted drug delivery, and in-situ diagnostics. Drawing inspiration from the principles of origami and the SMA microactuation effect, these microrobots are composed of interconnected, programmable microscale tiles capable of dynamically folding into complex three-dimensional shapes. This capability enables the creation of highly adaptive systems that respond to changing environmental conditions and perform precise tasks at the microscale with high precision and efficiency. The project focuses on pioneering methodologies for the design, fabrication, and control of these microrobots.

We are seeking an enthusiastic and talented PhD candidate (f/m/d) to contribute to this groundbreaking project at the intersection of robotics, biomedical engineering, and materials science. The successful candidate will work on designing programmable microrobot systems with reconfigurable 3D shapes, leveraging advanced materials and clean room microfabrication techniques. These microrobots will provide reversible and precise folding and unfolding mechanisms, opening the door to transformative applications in minimally invasive surgery, targeted drug delivery, and diagnostics.

Deadline : 31.10.2025

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(09) PhD Positions – Fully Funded

PhD position summary/title: PhD Position on Microfluidic Elastocaloric Cooling

In Germany, cooling comprises around 20% of total electricity consumption. A promising alternative to conventional cooling methods is elastocaloric cooling, which utilizes stress-induced temperature changes in superelastic shape memory alloys (SMAs). Unlike traditional systems, elastocaloric cooling avoids the environmental risks associated with refrigerant leakage, as it relies on solid-state materials. Moreover, it offers high efficiency potential, with material-level performance approaching thermodynamic limits.

This project aims to develop a next-generation high-performance elastocaloric cooling device based on microfluidic-integrated shape memory alloys. The objective is to design and fabricate microchannels within superelastic SMA materials and use them to build an elastocaloric cooling device. By enhancing heat transfer through these microchannel structures, the project seeks to improve cooling performance and enable new opportunities for sustainable cooling applications. This interdisciplinary research lies at the interface of materials science, mechanical engineering, and microtechnology, and is highly relevant for various applications, including battery thermal management in electric vehicles and the cooling of critical electronic components.

Deadline : 31.10.2025

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About Karlsruhe Institute of Technology (KIT), Germany  –Official Website

The Karlsruhe Institute of Technology is a public research university and one of the largest research and educational institutions in Germany. KIT was created in 2009 when the University of Karlsruhe (Universität Karlsruhe), founded in 1825 as a public research university and also known as the “Fridericiana”, merged with the Karlsruhe Research Center , which had originally been established in 1956 as a national nuclear research center 

KIT is a member of the TU9, an incorporated society of the largest and most notable German institutes of technology. As part of the German Universities Excellence Initiative KIT was one of three universities which were awarded excellence status in 2006 In the following “German Excellence Strategy” KIT was awarded as one of eleven “Excellence Universities” in 2019. KIT is among the leading technical universities in Germany and Europe and established the first German faculty for computer science in 1972.

As of 2018, six Nobel laureates are affiliated with KIT. The Karlsruhe Institute of Technology is well known for many inventors and entrepreneurs who studied or taught there, including Heinrich Hertz, Karl Friedrich Benz and the founders of SAP SE.

 

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