APOLLON Hochschule der Gesundheitswirtschaft
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Doctoral Researcher in Logical Reasoning and Machine Learning
University of Helsinki
Finland, Helsingfors (Helsinki)
University of Helsinki
Finland, Helsingfors (Helsinki)
We are recruiting a PhD student interested in combining logical reasoning and machine learning. The research will focus on inductive logic programming, which learns logical rules from data. We primarily use automated reasoning techniques, such as SAT/ASP/SMT/MaxSAT solvers. As a PhD student, you will develop new algorithms, run experiments, write papers, and present at conferences. You will meet regularly with Andrew Cropper and the rest of the logic and learning group. Find out more about working with us here. A start date before September 2026 is ideal but is flexible. The application deadline is June 15, 2026 (at 23:59 UTC +3). Requirements A master's degree in computer science or a related topic Prior experience in logic is desirable Excellent English skills We offer The opportunity to do fundamental research 4-year full-time contract A starting salary of ca. 2700 euros/month. The salary will develop in accordance with the progress of studies and be 3600-3800 euros/month by the end of the contract. Occupational health care and other social benefits Support for internationally recruited employees with their transition to work and live in Finland A chance to live in Helsinki and Finland renowned for their high-quality of life, services, and work-life balance According to the system of the University of Helsinki, all doctoral researchers belong to a doctoral programme. The successful candidate should apply to Doctoral Programme in Science and obtain the study right within the trial period of six months of their employment contract. Please check the admission periods and eligibility criteria at https://www.helsinki.fi/en/admissions-and-education/apply-doctoral-programmes/how-apply-doctoral-programmes. Application instructions Applications shall be submitted through the University of Helsinki´s recruitment system and include the following documents: CV Transcripts from previous degrees A motivation letter (max 2 pages) Contact information of two referees to provide reference letters upon request External applicants, please submit your application via the Apply Now button. Internal applicants, who have a helsinki.fi username and a valid employment/grant/visitor contract, please submit your application via the Employee login button. Additional information For more information on the position and the logic and learning (LOL) group, please contact Associate Professor Andrew Cropper (andrew.cropper@helsinki.fi). With technical questions related to the recruitment system, please contact recruitment@helsinki.fi. The Department of Computer Science is a leading unit in Finland in its area and responsible for the teaching and research in computer science at the University of Helsinki. The main research fields at the department are artificial intelligence, big data frameworks, bioinformatics, data analysis, data science, discrete and machine learning algorithms, distributed, intelligent, and interactive systems, networks, security, and software and database systems. The department has extensive international collaboration with companies and universities. Within teaching, the department’s professors and staff are in charge of the Bachelor’s, Master’s, and Doctoral Programmes in Computer Science, as well as the separate Master’s Programme in Data Science, in which other departments also participate.
Salary
2,700 - 3,800 euros/month
Posted
21 May 2026
Research Fellow (Biosensor) - AW4
Singapore Institute of Technology (SIT)
Singapore
Singapore Institute of Technology (SIT)
Singapore
As a University of Applied Learning, SIT works closely with industry in our research pursuits. Our research staff will have the opportunity to be equipped with applied research skill sets that are relevant to industry demands while working on research projects in SIT. Job Purpose The Research Fellow will lead the development of a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform for rapid detection of microbial bioburden in biopharmaceutical cleaning validation processes. The role involves aptamer discovery, nanomaterial-based SERS sensor development, and integration with microfluidic systems for real-time monitoring of cleaning validation washout fluids. Opportunities to contribute to patent filings, translational research, and commercialization pathways will be available. Key Responsibilities Technical Responsibilities Design and screen high-affinity ssDNA aptamers targeting environmental microorganisms listed in the US Pharmacopeia. Develop nanoparticle-based SERS substrates (Ag/Au nanoclusters) for enhanced Raman signal detection. Design and fabricate microfluidic sensing interfaces for continuous monitoring of cleaning validation fluids. Perform sensor validation using Raman spectroscopy, microbial cultures, and cleaning validation samples. Develop data analysis pipelines for Raman spectral classification, potentially integrating machine learning methods. Research & Project Responsibilities Plan and execute experimental workflows to achieve project milestones. Lead prototype development and performance optimization of the SERS biosensor system. Communicate research outcomes through technical reports, conference presentations, and scientific publications. Collaborate with industry partners and interdisciplinary research teams where applicable. Operational Responsibilities Conduct risk assessments and ensure compliance with Work Safety and Health (WSH) regulations. Manage procurement of specialized equipment and research consumables. Mentorship Mentor research engineers, graduate students, and undergraduate researchers. Contribute to training activities within the research group. Others To communicate in any relevant internal or external stakeholders to ensure project deliverables are met. Any ad-hoc duties assigned by Supervisor. Job Requirements Essential PhD in Bioengineering, Chemical Engineering, Materials Science, Nanotechnology, Analytical Chemistry, or related fields. Strong publication record in biosensors, nanomaterials, Raman spectroscopy, or microfluidics. Demonstrated experience in nanoparticle-based biosensor development or SERS sensing platforms. Proficiency in CAD software (e.g., SolidWorks) for microfluidic device design. Experience with Raman spectroscopy instrumentation and spectral data analysis. Preferred Experience in microfluidic chip fabrication (soft lithography, PDMS, or micro-machining). Experience with aptamer selection or molecular recognition elements. Experience applying machine learning to spectral data (Raman, LC–MS, or similar). Experience working on translational or industry-linked research projects.
Salary
Competitive
Posted
21 May 2026
Emergency and Critical Care Veterinarian
Adelaide University
Australia, Gawler
Adelaide University
Australia, Gawler
Based at Roseworthy Campus, University of Adelaide Casual role, various shifts available on a 24/7 roster (HEO 7) $64.33 to $74.46 per hour plus an employer contribution of 12% superannuation applies. In addition, loadings between 15% and 40% apply when working outside the normal span of hours in accordance with the University of Adelaide Enterprise Agreement. At Adelaide University, we create the opportunities you need to achieve your ambitions – because when you thrive, we thrive. We are transforming education for contemporary learners and global citizens. Building on a proud legacy and shaped by bold ambition, it’s a place of excellence and equity, where our vibrant community of staff are united by our purpose to inspire Australia’s future change-makers and create a better tomorrow. Work that matters As a member of the Emergency and Critical Care (ECC) team at the Roseworthy Veterinary Hospital, you will provide high-quality care to a varied and growing caseload of small animal patients through a 24/7 roster. You will have access to advanced imaging modalities, including CT, and work closely with a dedicated radiographer and onsite veterinary diagnostic laboratory, enabling collaboration with pathologists to achieve the best patient outcomes. As part of the Roseworthy Veterinary Hospital team, you will provide high-quality emergency and critical care for small animals while contributing to the clinical education of future veterinarians. Your work will directly impact patient outcomes, student learning, and the ongoing development of a vibrant teaching hospital. Curious to learn more? Explore the full role description to discover more about this opportunity. The team You will join a motivated and experienced team of veterinarians, nurses, and support staff delivering emergency and critical care services 24/7. Reporting to the Head of Emergency and Critical Care, your role will contribute to both patient care and veterinary education. Supported by a team of experienced academic specialists, you will engage in daily case discussions and contribute to complex clinical decision-making. In addition, you will play a key role in the education of final-year veterinary students, involving them in case management and providing hands-on learning opportunities while modeling the highest standards of clinical and professional practice, helping to shape the next generation of veterinarians. Visit the AU website to learn more about the Veterinary Health Centre: https://www.adelaide.edu.au/vet/ Our people Our people are guided by purpose, curiosity, and a commitment to lifelong learning. We embrace authenticity, innovation, and collaboration, and harness diverse thinking in our pursuit of excellence. This role is perfect for someone who enjoys a dynamic and varied clinical environment, working with a wide range of patients, colleagues, and final-year students, keeping each workday engaging and rewarding. Learn more about our people, what we stand for, and what we offer at Careers at AU. Experience To join our community and thrive in this role, you will likely have the following skills and experience: Veterinary qualification with eligibility to be registered in South Australia Experience in first-opinion or emergency services, including emergency surgery Strong communication and interpersonal skills with clients and team members Enthusiasm and experience in assisting, teaching, or mentoring others High-level written communication skills, including medical records, referral letters, and client correspondence Our commitment to inclusion and diversity We are committed to fostering a culture of inclusion where diversity is celebrated and everyone feels respected and valued. Adelaide University is an equal opportunity employer, supporting flexible working arrangements and reasonable adjustments throughout the recruitment process. Launch your future with Adelaide University now Applying is simple. Simply click on the Apply Now button and upload: Your current CV A cover letter that tells us why you’re excited about the role This will remain open until all roles filled The University reserves the right to close this advertisement before the closing date if a suitable candidate is identified. For further information about this opportunity, please contact: Simone Patterson Talent Acquisition Adviser +61 8 8302 1700 | careers.adelaideuniversity@adelaide.edu.au
Salary
$64.33 to $74.46 per hour plus an employer contribution of 12% superannuation
Posted
21 May 2026
Lead Professional Officer (Industrial Design & Innovation), Design Factory
Singapore Institute of Technology (SIT)
Singapore
Singapore Institute of Technology (SIT)
Singapore
Schemes of Service: Professional Officers Division: Professional Officers Employment Type: Permanent Job Purpose The Professional Officer leads SIT’s Design Factory in advancing design-led education, research, and enterprise collaboration. This role emphasizes strategic leadership in industrial design, guiding multidisciplinary teams to deliver impactful solutions across product, service, and system innovation. The incumbent will champion human-centred design, foster industry partnerships, and drive the Centre’s vision as a hub for applied innovation and leadership in design. Key Responsibilities Applied R&D and Design Innovation Leadership Human-Centred Research: Direct advanced research in ergonomics, usability, and design thinking, ensuring projects address real-world challenges. Lead integrated applied R&D and design projects for SMEs, MNCs, and public sector partners, overseeing full project lifecycles from research framing, ideation, and user insights through to prototyping, validation, and manufacturing considerations. Apply human-centred design, systems thinking, and futures methodologies to translate research insights into functional prototypes, design frameworks, and scalable innovation outcomes. Spearhead the curation and growth of specialist labs and material exploration environments, supporting experimentation across emerging materials, structural design, and advanced fabrication methods. Bridge creative design with engineering feasibility to develop manufacturable, real-world product and service solutions. Industrial Design Leadership Set Strategic Direction: Lead the vision and standards for industrial design across the Design Factory’s initiatives, ensuring excellence in product aesthetics, usability, and manufacturability. Define and oversee mechanical design standards across projects, ensuring structural integrity, manufacturability, and performance excellence. Champion Human-Centred Design: Embed ergonomics, user research, and co-creation practices into all projects, aligning outcomes with real-world needs and industry expectations. Engineering Integration: Champion the fusion of mechanical engineering principles with design innovation, bridging technical feasibility with creative outcomes. Mentorship & Technical Oversight: Provide critique, guidance, and quality assurance for student and project team outputs, cultivating design rigor and professional practice. Guide students and project teams in CAD modelling, simulation, and mechanical prototyping, ensuring precision and reliability in outputs. Drive Innovation: Lead the integration of sustainable design, circular innovation, and advanced prototyping into project deliverables, ensuring relevance in evolving markets. Innovation in Mechanical Systems: Drive the adoption of advanced materials, sustainable engineering practices, and emerging technologies into mechanical design projects Capability Building: Develop toolkits, frameworks, and learning pathways that strengthen SIT’s industrial design capacity and equip collaborators with transferable design skills. Strategic Platform and Programme Development Co-lead the Design Factory as a design-led platform bridging applied R&D, industry collaboration, education, and enterprise adoption; growing its role within SIT's innovation ecosystem. Identify and develop opportunities for programme growth in human-centred design, circular innovation, applied R&D, and cross-disciplinary learning. Contribute to strategic planning and long-term development of the Design Factory in alignment with SIT's institutional goals. Partnership and Business Development Build Strategic Relationships: Establish and manage partnerships with industry, academia, government, and international design ecosystems. Drive Collaboration: Identify opportunities, develop proposals, and formalize agreements to advance innovation projects. Activate Networks: Lead a multi-stakeholder innovation community spanning students, researchers, and external partners. Capability Building and Education Build SIT’s mechanical design expertise through curated methodologies, workshops, and collaborative frameworks that strengthen applied engineering design skills. Design and deliver applied learning programmes, masterclasses, workshops, and structured learning experiences integrating design thinking, human-centred research, prototyping, and real-world application. Translate Design Factory methodologies, applied R&D projects, and industry case studies into structured content for internal and external programmes, including CET modules and industry workshops. Support academic delivery through preparation of learning resources, demonstrations, and supervision of student work across interdisciplinary projects. Mentor and guide interdisciplinary teams across design, engineering, and research domains within lab, workshop, and applied project environments. Project and Operational Management Plan, implement, and monitor multiple concurrent applied R&D and innovation projects, ensuring delivery on time and within budget. Manage budgets, procurement, and reporting for internal and external initiatives, with a strong track record of on-time and on-budget performance. Oversee daily operations of the Design Factory, including facilities, safety, scheduling, and resource utilisation. Maintain records, documentation, and performance metrics for projects, programmes, and collaborations. Requirements Degree in Industrial Design, Mechanical Engineering, Human Factors, or Innovation Management; postgraduate qualifications in design leadership or applied engineering are advantageous. Minimum 5–8 years in industrial design, mechanical design, innovation management, or R&D, with a proven record of delivering industry-relevant outcomes. Project Leadership: Demonstrated ability to lead complex projects and multi-stakeholder collaborations across academic, research, and industry contexts. Technical Proficiency: Expertise in design research, prototyping, fabrication, CAD modelling, simulation, and applied learning environments. Team Leadership: Proven track record in guiding multidisciplinary teams, mentoring talent, and ensuring design rigor in both industrial and mechanical outputs. Industrial Design Practice: Strong proficiency in product development, ergonomics, usability testing, and industry-standard design tools; portfolio evidencing leadership in industrial design projects is preferred. Mechanical Design Expertise: Experience in mechanical systems, material selection, structural design, and integration of engineering principles into innovative solutions.
Salary
Competitive
Posted
21 May 2026
Research Fellow (Sound and Vibration) - ATCH2
Singapore Institute of Technology (SIT)
Singapore
Singapore Institute of Technology (SIT)
Singapore
Cluster: Engineering Job Purpose We are seeking a Research Fellow at the Singapore Institute of Technology (SIT) to undertake high-quality applied research for a funded project at the Singapore Institute of Technology aimed at advancing understanding of lift-generated noise in residential buildings. The role supports the achievement of the grantor’s objectives and proposed research outcomes through rigorous investigation, close collaboration with the PI and research team, and the development of industry-relevant insights for the built environment sector. We are looking for a passionate and detail-oriented researcher who is committed to producing careful, high-quality technical work. The primary responsibility of this role is to plan and execute field measurements and analytical investigations of lift traction motor noise and vibration in residential buildings, including conducting sound intensity and vibration measurements, analysing acousto-structural transmission paths, developing predictive models, and producing research outputs that support practical noise mitigation solutions for the built environment industry. Key Responsibilities Participate in and manage the research project with the Principal Investigator (PI), Co-PI, and research team members to ensure that all technical milestones and project deliverables are achieved. Undertake the following responsibilities in the project: i. Plan and conduct field measurements of lift traction motor noise and vibration in residential buildings using sound intensity probes, accelerometers, and multi-channel data acquisition systems. ii. Perform signal processing, vibration analysis, and acousto-structural transmission path investigations to identify dominant noise sources and structural coupling mechanisms. iii. Develop and implement measurement protocols, experimental setups, and data acquisition procedures for airborne and structure-borne noise studies. iv. Analyse measurement data using specialised acoustic and vibration analysis software, and develop predictive or simulation models to interpret noise propagation and structural vibration behaviour. v. Prepare technical reports, research publications, and presentations to disseminate findings to academic, industry, and funding stakeholders. vi. Assist in the development of mitigation strategies or engineering guidelines to reduce lift-related noise transmission in residential environments. Coordinate site access, field measurements, and technical discussions with project collaborators, industry partners, and building stakeholders. Coordinate procurement of equipment, liaison with vendors/suppliers, and ensure proper calibration, operation, and maintenance of measurement instrumentation. Carry out laboratory and project risk assessments, and ensure compliance with Work, Safety and Health (WSH) regulations during field measurements and experimental work. Co-supervise undergraduate student projects related to acoustics and vibration measurements when required. Work independently, as well as within a multidisciplinary research team, to ensure timely completion of project tasks and research outputs. To communicate in any relevant internal or external stakeholders to ensure project deliverables are met. Any ad-hoc duties assigned by Supervisor. Job Requirements PhD in Acoustics, Mechanical Engineering, Aerospace Engineering, Civil Engineering, or a closely related field. Have relevant competence in acoustics, vibration, and structural dynamics. Familiarity with signal processing and vibration/acoustic analysis techniques. Experience with data analysis using tools such as MATLAB, Python, or equivalent engineering software. Experience with experimental and instrumentation measurements setup for noise and vibration (e.g., sound intensity probes, vibration sensors, or similar instrumentation) involving microphones and accelerometers, or multi-channel data acquisition systems will be advantageous. Knowledge of building acoustics, structure-borne noise, or machinery vibration will be advantageous. Prior research experience with peer-reviewed publications in acoustics, noise control, or vibration engineering will be advantageous. Key Competencies Possess strong analytical and critical thinking skills in solving engineering and research problems. Proficient in technical writing and presentation for reports, publications, and stakeholder communication. Able to work independently while also contributing effectively within a multidisciplinary research team. Demonstrate strong initiative and take ownership of assigned research tasks and project deliverables. Able to organise and manage field measurements, instrumentation setup, and experimental data collection. Good problem-solving ability in addressing technical issues encountered during experiments or measurements. Able to build and maintain effective working relationships with project collaborators, industry partners, and research staff. Self-directed learner who is committed to continuous learning and professional development. Self-directed learner who believes in continuous learning and development. Proficient in technical writing and presentation. Possess strong analytical and critical thinking skills. Show strong initiative and take ownership of work.
Salary
Competitive
Posted
21 May 2026