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DTU, Danmarks Tekniske Universitet

PhD scholarship in Magnetothermal energy harvesting from waste heat - DTU Energy

Kgs. Lyngby

Do you want to contribute to a future where we can harvest energy from waste heat using a novel magnetothermal device, that you will get to help realize? If yes, this PhD-position is exactly for you.

Your role as a PhD student will be to design, model and build an experimental magnetothermal energy harvesting device setup where we can test new designs of the various sub-components of the systems. The project has many aspects. You will work on building the device and testing this, but working on a numerical model of the system is also a potential option.

DTU, Danmarks Tekniske Universitet

Tekniker til testfaciliteter for 3D print af betonkonstruktioner - DTU Construct

Kgs. Lyngby

DTU Construct søger en tekniker til vores testfaciliteter, hvor vi tester materialer, konstruktioner og meget andet. Specifikt for denne stilling er fokus på undersøgelser af 3D printede betonkonstruktioner, men der vil være rig mulighed for at være en del at de talrige andre tests af materialer og konstruktioner der foregår på DTU Construct.

Vi tilbyder dig en spændende og varierende arbejdsopgaver, og en mulighed for selv at sætte dit præg på din arbejdsdag. Du vil indgå i et team af engagerede kolleger, hvor trivsel og faglig dygtighed værdsættes, og hvor der er plads til humor i en ellers travl hverdag.

Danmarks Tekniske Universitet

PhD scholarship in Efficient Numerical Modelling of Smart Hearables while Fitted to Users – DTU Electro

Kgs. Lyngby

Are you interested in learning and extending on state-of-the-art numerical modelling techniques and, at the same time, contribute to improving the listening experience of smart hearable users and hearing impaired?

As a PhD candidate with us you will create models of audio devices that are worn in or over the ear and including the wearer’s acoustical and mechanical influence. You will deal with a large modelling task with uncertain input data, and to do this you will acquire knowledge on fields like advanced numerical modelling techniques, improvement of model efficiency and numerical optimization, among others.

Teknologisk Institut

El-teknisk supporter til Campus Service i Taastrup

Taastrup

Se video om Teknologisk Institut som arbejdsplads

Brænder du for at udvikle, strukturere og afvikle planlagte vedligehold? Kan du se dig selv supportere interne kunder med din el-faglige viden og stå i spidsen for mange af vores fornyelsesprojekter?

Du vil få en varieret hverdag, hvor du yder operationel driftsstøtte til fagcentre og campus som helhed. Du vil i samarbejde med teamet være med til at designe, planlægge og gennemføre store som mindre projekter.

Teknologisk Institut
Danmarks Tekniske Universitet

PhD scholarships on “Live” Visualizations of Single Nanoparticle Catalysts at the Atomic-Scale - DTU Physics

Kgs. Lyngby

Could you envision “seeing” chemical reactions being catalyzed at the atomic-scale? Two or more scholarships are now open for experimental research in nanoparticle catalysis using advanced operando electron microscopy at the Center for Visualizing Catalytic Processes (VISION).

VISION is developing and applying a new unique platform for visualizing catalytic nanoparticles and reactions at the atomic-level by integrating cutting-edge electron microscopy, microfabricated nanoreactors, nanoparticle synthesis and computational modelling. This approach enables new, direct operando observations that are urgently needed to advance mechanistic insight into catalytic processes at the atomic-scale.

DTU, Danmarks Tekniske Universitet

PhD scholarship in integrated blue optical phased array on thin-film lithium niobate platform for underwater optical communication - DTU Electro

Kgs. Lyngby

We are seeking a candidate for a PhD position to research integrated blue optical phased array (OPA) on thin-film lithium niobate (TFLN) platform, which can enable solid-state optical beam steering and will be used for the next-generation photonic chip-based UOWC system.

This PhD project aims at developing an integrated OPA on TFLN platform at blue light (~450 nm) wavelength band for UOWC systems. You will first design an OPA on TFLN platform at blue-light wavelength. The designed blue OPA will then be fabricated using our advanced cleanroom facilities at DTU Nanolabs and characterized using our state-of-the-art lab facilities.

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