At a Glance
- Tasks: Develop AI-driven ultrasonic methods for materials evaluation and solve real-world engineering problems.
- Company: University of Sussex, a vibrant research community near Brighton.
- Benefits: Fully funded studentship with a tax-free stipend and opportunities for international collaboration.
- Other info: Access to advanced resources and a dynamic research environment.
- Why this job: Make a real impact using cutting-edge AI to innovate in materials science.
- Qualifications: Strong degree in physics, engineering, or related fields; enthusiasm for interdisciplinary learning.
The predicted salary is between 60000 - 80000 £ per year.
University of Sussex
Qualification Type: PhD
Location: Falmer
Funding for: UK Students, International Students
Funding amount: For 3.5 years, you will receive a tax-free stipend at a standard rate of £21,805 per year and your fees will be waived (at the UK or International rate). In addition, to a one-off Research and Training Support Grant of £2,000.
Hours: Full Time
Placed On: 20th July 2026
Closes: 11th September 2026
Would you like to use cutting-edge artificial intelligence to solve real-world physics and engineering problems that matter? This fully funded PhD studentship offers an exceptional opportunity to do exactly that, working at the forefront of AI-driven ultrasonic evaluation of materials. Ultrasound plays a critical role in keeping our world safe and reliable. From inspecting aircraft components and pipelines to monitoring batteries in electric vehicles, ultrasonic measurements let us “see” inside materials without damaging them. Yet interpreting the resulting signals is far from straightforward: waves in real materials behave in complex ways, and turning measurements back into quantitative information about a material’s internal state is a notoriously difficult inverse problem. This is where AI can be a game changer.
Deep learning models can learn the mapping between material states and ultrasonic responses from simulation data, delivering quantitative predictions once trained, and remarkably, can be transferred to work directly on experimental measurements. In this PhD, you will develop AI-driven ultrasonic methods for quantitative materials evaluation, focusing on inverse models that extract material properties or defect information from measurements. You will work across the full research pipeline: running large-scale ultrasound simulations to generate rich training datasets, designing and benchmarking modern neural network architectures, quantifying the uncertainty of model predictions, and validating your models in our ultrasonic laboratory to bridge the simulation-to-experiment gap. Application areas include metals and layered structures.
You will join a dynamic and rapidly growing research centre at Sussex, with access to advanced ultrasonic instrumentation, high-performance computing resources, and a strong network of academic and industrial partners. Throughout your PhD, you will gain a highly valuable interdisciplinary skill set spanning ultrasonic physics, large-scale numerical simulation, experimental measurement, and state-of-the-art AI, opening up excellent career opportunities in academia, industry, and beyond.
What We Are Looking For
We welcome applications from enthusiastic, curious, and self-motivated candidates with (or expecting) a strong undergraduate or Master's degree in physics, engineering, applied mathematics, materials science, computer science, or a related discipline. Prior experience in any of the following is a plus but not essential: ultrasound or wave physics, numerical simulation, Python programming, and machine learning frameworks. Most importantly, we are looking for someone who enjoys learning across disciplines, thinks creatively, and is keen to make real research impact.
What You Will Get
- A fully funded studentship covering tuition fees and a stipend (open to UK and international applicants).
- World-class supervision and training in an interdisciplinary, research-active environment.
- Opportunities to publish in leading journals, attend international conferences, and collaborate with industry.
- A vibrant student community at the University of Sussex, located near the beautiful coastal city of Brighton.
Please note that this is a re-advertisement of an earlier position; previous applicants need not apply. For informal enquiries, please contact Dr Ming Huang or Dr Ivor Simpson.
PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026) in Brighton employer: Emerging Scholars Council
Newcastle University is an exceptional employer, offering a vibrant academic environment that fosters innovation and collaboration. With a strong commitment to research excellence and professional development, employees benefit from access to cutting-edge resources and opportunities for growth in the field of implementation science. Located in a dynamic city known for its rich cultural heritage and supportive community, Newcastle University provides a unique setting for meaningful and impactful work.
StudySmarter Expert Advice🤫
We think this is how you could land PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026) in Brighton
✨Join Engineering Meetups!
Get yourself along to local engineering meetups or tech conferences. These are great places to connect with like-minded folks and industry leaders who might just have a lead on that full-time PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026) role you’re after at Emerging Scholars Council.
✨Show Off Your Projects!
Don’t be shy about showcasing your engineering projects. Whether it’s a funky app, a mechanical design, or a complex algorithm, having a solid portfolio on platforms like GitHub can really make you stand out. Plus, it gives potential employers at Emerging Scholars Council a taste of what you can bring to the table!
✨Engage with Online Communities
Dive into engineering forums and online communities, like Reddit or specific engineering Discord channels. Sharing your insights, asking questions, and being active can help you build connections that might lead to job opportunities at Emerging Scholars Council.
✨Apply Through Company Websites
When you spot a role like PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026) at Emerging Scholars Council, apply directly through their website. Often, this can show your genuine interest in the company and you might just get noticed quicker than via typical job boards.
We think you need these skills to ace PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026) in Brighton
Some tips for your application 🫡
Showcase Your Technical Expertise:When applying for an engineering role like PhD Studentship: AI-Driven Ultrasound for Materials Evaluation (2026), it’s essential to highlight your technical skills. Include any relevant software or tools you're proficient in on your CV—think CAD software, simulation tools, or programming languages. Don't skimp on any engineering projects you've worked on that demonstrate your ability to solve complex problems.
Focus on Results and Impact:In the engineering world, we love numbers and real-world impact. Quantify your achievements wherever possible—like reducing costs by a certain percentage, improving efficiency, or successfully completing a project ahead of schedule. This gives your future employers at Emerging Scholars Council a clear picture of the value you can bring.
Craft a Compelling Cover Letter:Use your cover letter to express your passion for engineering and explain why you’re drawn to Emerging Scholars Council specifically. Share what aspects of their work excite you and how your values align with theirs. This is your chance to show a bit of personality while keeping it professional!
Include Relevant Certifications:If you have any engineering certifications, especially ones that are recognised in your field, make sure to feature them prominently on your CV. They demonstrate not just your knowledge, but also your commitment to professional development, which is something we at StudySmarter value highly.
How to prepare for a job interview at Emerging Scholars Council
✨Brush Up on Core Engineering Principles
Before heading into the interview with Emerging Scholars Council, make sure you're solid on the fundamental engineering principles relevant to the role. Be ready to discuss concepts such as thermodynamics, fluid mechanics, or structural analysis, depending on the specifics mentioned in the job description. Don’t skip any hands-on projects or coursework; these can be excellent talking points!
✨Show Off Your Problem-Solving Skills
Expect technical questions or case studies during your interview—after all, engineering is all about solving problems! Prepare a few examples of how you've tackled engineering challenges in the past, whether at university or in any practical experience. Practising with mock technical interviews can really help you articulate your thought process and solutions.
✨Relate Your Experience to the Role
In a full-time role, employers like Emerging Scholars Council want to see that you can adapt and grow within their team. Be ready to discuss how your previous internships, projects, or studies relate directly to the work you'll be doing. Highlight specific experiences that showcase your collaborative skills and how you've successfully worked within a team environment.
✨Know Your Tools and Software
Most engineering roles require familiarity with specific tools and software. Prepare to talk about your proficiency with programmes like AutoCAD, MATLAB, or SolidWorks if they’re relevant to the role. Even better, have examples of projects where you’ve used these tools, as it'll demonstrate your hands-on experience and readiness for the job.