Fully Funded PhD position in Reinforcement Learning at Orebro University
The School of Science and Technology at Örebro University offers a fully funded 4 years PhD position in Computer Science starting 1st of January 2019.
The PhD student will be affiliated with the research Centre for Applied Autonomous Sensor Systems (AASS).
Örebro University is a modern and prominent broad-based university with the courage to review and the ability to evolve. Our professional degree programmes are among the best in the country and we endeavour to be an attractive place of work where members of staff feel a sense of pride and satisfaction. 1,300 employees and 17,000 students come to work and study at Örebro University.
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The School of Science and Technology at Örebro University offers a fully funded 4 years PhD position in Computer Science starting 1st of January 2019.
The PhD student will be affiliated with the research Centre for Applied Autonomous Sensor Systems (AASS).
Örebro University is a modern and prominent broad-based university with the courage to review and the ability to evolve. Our professional degree programmes are among the best in the country and we endeavour to be an attractive place of work where members of staff feel a sense of pride and satisfaction. 1,300 employees and 17,000 students come to work and study at Örebro University.
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2 Ph.D. Scholarships – GRS-Cluster »Cognitive Dependable Cyber Physical Systems
The BTU Cottbus-Senftenberg established in 2016 the Cluster »Cognitive Dependable Cyber Physical Systems« under the direction of Professor Douglas Cunningham, Chair of Graphical Systems, Faculty 1, in the Graduate Research School (GRS). Clusters are an important instrument for promoting young researchers and they shall strengthen the research profile of the BTU. Outstanding candidates may apply for a scholarship of up to 36 months to conduct their research in a structured and innovative doctoral programme. Prospective candidates can apply until October 15, 2018. For more information please refer to the call for applications.
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The BTU Cottbus-Senftenberg established in 2016 the Cluster »Cognitive Dependable Cyber Physical Systems« under the direction of Professor Douglas Cunningham, Chair of Graphical Systems, Faculty 1, in the Graduate Research School (GRS). Clusters are an important instrument for promoting young researchers and they shall strengthen the research profile of the BTU. Outstanding candidates may apply for a scholarship of up to 36 months to conduct their research in a structured and innovative doctoral programme. Prospective candidates can apply until October 15, 2018. For more information please refer to the call for applications.
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PhD and M.S. in Biology and Society, PhD in History and Philosophy of Science, Arizona State University & Marine Biological Laboratory
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Postdoctoral Position in Affective and Clinical/Translational Neuroscience, University of Maryland
andidates are being considered for a NIMH-funded postdoctoral position in the laboratory of Dr. Alex Shackman in the Department of Psychology at the University of Maryland at College Park (http://shackmanlab.org/). The focus of this position will be to on several projects aimed at understanding the neurobiology of fear and anxiety and its role in the development and maintenance of anxiety disorders, depression, and substance abuse. We are particularly excited about candidates with a strong background in fMRI methods or other kinds of computationally intensive signal processing (e.g. machine learning), but will also consider those with expertise in other areas of affective/cognitive neuroscience or data science/scientific programming. We want someone who is comfortable teaching themselves new techniques and who can jump right into doing science, so decent-or-better coding and statistical skills are mandatory. Applicants should have a Ph.D. in a relevant field and excellent organizational and interpersonal skills. Applicants should send a cover letter or portfolio describing relevant skills, experience, and interests—please provide concrete details about your technical contributions to past projects. Please email your CV, a brief cover letter, and 2-3 letters of reference to Dr. Shackman (shackman@umd.edu). Applicants will be considered until the position is filled. The University of Maryland is an Equal Opportunity/Affirmative-Action Employer.
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Alexander J. Shackman, Ph.D.
Department of Psychology and Neuroscience and Cognitive Science (NACS) Program
University of Maryland
4094 Campus Drive (Biology/Psychology Building)
College Park, MD 20742-4411
Telephone: +1 (608) 358-5025
Email: shackman@umd.edu
Web: http://shackmanlab.org
✔️ @ApplyTime
andidates are being considered for a NIMH-funded postdoctoral position in the laboratory of Dr. Alex Shackman in the Department of Psychology at the University of Maryland at College Park (http://shackmanlab.org/). The focus of this position will be to on several projects aimed at understanding the neurobiology of fear and anxiety and its role in the development and maintenance of anxiety disorders, depression, and substance abuse. We are particularly excited about candidates with a strong background in fMRI methods or other kinds of computationally intensive signal processing (e.g. machine learning), but will also consider those with expertise in other areas of affective/cognitive neuroscience or data science/scientific programming. We want someone who is comfortable teaching themselves new techniques and who can jump right into doing science, so decent-or-better coding and statistical skills are mandatory. Applicants should have a Ph.D. in a relevant field and excellent organizational and interpersonal skills. Applicants should send a cover letter or portfolio describing relevant skills, experience, and interests—please provide concrete details about your technical contributions to past projects. Please email your CV, a brief cover letter, and 2-3 letters of reference to Dr. Shackman (shackman@umd.edu). Applicants will be considered until the position is filled. The University of Maryland is an Equal Opportunity/Affirmative-Action Employer.
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Alexander J. Shackman, Ph.D.
Department of Psychology and Neuroscience and Cognitive Science (NACS) Program
University of Maryland
4094 Campus Drive (Biology/Psychology Building)
College Park, MD 20742-4411
Telephone: +1 (608) 358-5025
Email: shackman@umd.edu
Web: http://shackmanlab.org
✔️ @ApplyTime
Hello all,
Please see the following recruiting information for an open RA position in Technology:
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RA recruiting: Master and/or Ph.D. candidate
Projects: Internet of things, Blockchain, Deep Learning, Software Building, Cloud computing, and/or Cybersecurity based research.
Skills needed: Java, Matlab, C++, Literature analyzing, Paper writing.
Stipend: Part or Full time based salary with fringe based on your background and experience.
Period: Fall 2018. (Can be extend)
Contact:
Please send your C.V. to Dr. Zhang, yzhan226@central.uh.edu. NO phone call please.
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Best wish,
Yunpeng (Jack) Zhang,
Assistant Professor, Ph.D.
Department of Information and Logistics Technology
College of Technology, University of Houston-Main Campus
A Carnegie-designated Tier One public research university
yzhan226@central.uh.edu
✔️ @ApplyTime
Please see the following recruiting information for an open RA position in Technology:
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RA recruiting: Master and/or Ph.D. candidate
Projects: Internet of things, Blockchain, Deep Learning, Software Building, Cloud computing, and/or Cybersecurity based research.
Skills needed: Java, Matlab, C++, Literature analyzing, Paper writing.
Stipend: Part or Full time based salary with fringe based on your background and experience.
Period: Fall 2018. (Can be extend)
Contact:
Please send your C.V. to Dr. Zhang, yzhan226@central.uh.edu. NO phone call please.
--
Best wish,
Yunpeng (Jack) Zhang,
Assistant Professor, Ph.D.
Department of Information and Logistics Technology
College of Technology, University of Houston-Main Campus
A Carnegie-designated Tier One public research university
yzhan226@central.uh.edu
✔️ @ApplyTime
PhD studentship at University of Bath/ University of Exeter
Dear all,
The Universities of Bath and Exeter are seeking applications for a PhD position to explore mutations in ion channels associated with dementia.
The studentship will cover 3.5 years, with a start date of September 2019. However, this is open for EU students only.
The student would primarily be based at the University of Bath (Prof. Alain Nogaret) but would do stints at the University of Exeter (Prof. Andy Randall, Dr. Kyle Wedgwood).
The project will use a combination of mathematical modelling, novel parameter optimisation methodology and wet-lab experiments to
Full details of the project may be found in the attached advert or see the project entitled "In-depth understanding of dementia-associated changes to neuronal signalling" at the following URL http://www.gw4biomed.ac.uk/available-projects-2/neuroscience-and-mental-health-projects/
Best wishes,
Dr. Kyle Wedgwood
MRC Research Fellow
Centre for Biomedical Modelling & Analysis
College of Engineering, Mathematics and Physical Sciences
University of Exeter
✔️ @ApplyTime
Dear all,
The Universities of Bath and Exeter are seeking applications for a PhD position to explore mutations in ion channels associated with dementia.
The studentship will cover 3.5 years, with a start date of September 2019. However, this is open for EU students only.
The student would primarily be based at the University of Bath (Prof. Alain Nogaret) but would do stints at the University of Exeter (Prof. Andy Randall, Dr. Kyle Wedgwood).
The project will use a combination of mathematical modelling, novel parameter optimisation methodology and wet-lab experiments to
Full details of the project may be found in the attached advert or see the project entitled "In-depth understanding of dementia-associated changes to neuronal signalling" at the following URL http://www.gw4biomed.ac.uk/available-projects-2/neuroscience-and-mental-health-projects/
Best wishes,
Dr. Kyle Wedgwood
MRC Research Fellow
Centre for Biomedical Modelling & Analysis
College of Engineering, Mathematics and Physical Sciences
University of Exeter
✔️ @ApplyTime
New MSc in Computational Cognitive Neuroscience -- now accepting 2019-20 applications, Departments of Computing and Psychology at Goldsmiths, University of London (UK)
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Postdoc position (3yr) in autonomous negotiation at Centrum Wiskunde & Informatica (CWI), Amsterdam
Job description
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The world of peer to peer trading is changing rapidly. Whereas in the past, people would contact their vendors personally over phone or e-mail, online trading platforms now make it possible for vendors to match and discover supply and demand in a more effective and scalable way. This creates a new opportunity to use negotiation agents that can support vendors in their negotiations and eventually make deals autonomously on their behalf. This requires a combination of a state-of-the-art multi-agent and machine learning techniques that can support the user in making efficient offers and learn the preferences of the user as well as of the trading partners.
The aim of the vacant position is to develop fundamental and applicable solutions for agent negotiations within a new online trading platform. Depending on the interests and expertise of the candidate, the project draws on tools and techniques from multi-agent learning, preference modeling and elicitation, machine learning, automated negotiation, decision support systems, and sequential multi-agent decision-making under uncertainty. One of the scientific challenges in this project will be to formulate long-term negotiation strategies that can strike partial deals with multiple partners under preference uncertainty, motivated by the challenge of autonomously representing a user in repeated many-to-many negotiations.
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Job description
=====================================
The world of peer to peer trading is changing rapidly. Whereas in the past, people would contact their vendors personally over phone or e-mail, online trading platforms now make it possible for vendors to match and discover supply and demand in a more effective and scalable way. This creates a new opportunity to use negotiation agents that can support vendors in their negotiations and eventually make deals autonomously on their behalf. This requires a combination of a state-of-the-art multi-agent and machine learning techniques that can support the user in making efficient offers and learn the preferences of the user as well as of the trading partners.
The aim of the vacant position is to develop fundamental and applicable solutions for agent negotiations within a new online trading platform. Depending on the interests and expertise of the candidate, the project draws on tools and techniques from multi-agent learning, preference modeling and elicitation, machine learning, automated negotiation, decision support systems, and sequential multi-agent decision-making under uncertainty. One of the scientific challenges in this project will be to formulate long-term negotiation strategies that can strike partial deals with multiple partners under preference uncertainty, motivated by the challenge of autonomously representing a user in repeated many-to-many negotiations.
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✔️ @ApplyTime
Postdoctoral Position at Dartmouth College
The Computational Social Affective Neuroscience Lab, in the Department of Psychology & Brain Sciences at Dartmouth College seeks to recruit a postdoctoral researcher to begin Fall 2018/ Winter 2019 to work on federally-funded research investigating naturalistic elicitations of emotional experiences using fMRI and intracranial EEG.
Ideal candidates will have: (1) a PhD in a relevant quantitative discipline (e.g., neuroscience, computer science, physics, applied math), (2) a strong background in signal processing and data analysis (e.g., computational modeling, time series analysis, machine-learning), (3) a demonstrated record of creativity and innovation, & (4) an interest in contributing to the development of open source software (e.g., Python).
Interested applicants should contact Dr. Luke Chang (luke.j.chang@dartmouth.edu) with a brief statement of interest (1 page maximum), a CV, and 2 letters of reference.
Luke Chang, PhD
Assistant Professor
Department of Psychological and Brain Sciences
Dartmouth College
603.646.2056
http://cosanlab.com
✔️ @ApplyTime
The Computational Social Affective Neuroscience Lab, in the Department of Psychology & Brain Sciences at Dartmouth College seeks to recruit a postdoctoral researcher to begin Fall 2018/ Winter 2019 to work on federally-funded research investigating naturalistic elicitations of emotional experiences using fMRI and intracranial EEG.
Ideal candidates will have: (1) a PhD in a relevant quantitative discipline (e.g., neuroscience, computer science, physics, applied math), (2) a strong background in signal processing and data analysis (e.g., computational modeling, time series analysis, machine-learning), (3) a demonstrated record of creativity and innovation, & (4) an interest in contributing to the development of open source software (e.g., Python).
Interested applicants should contact Dr. Luke Chang (luke.j.chang@dartmouth.edu) with a brief statement of interest (1 page maximum), a CV, and 2 letters of reference.
Luke Chang, PhD
Assistant Professor
Department of Psychological and Brain Sciences
Dartmouth College
603.646.2056
http://cosanlab.com
✔️ @ApplyTime
15 PhD positions (m/f) in the area of magnesium implant imaging
The EU-funded MSCA-ITN ‘MgSafe’ investigates a novel combination of imaging technologies for biodegradable magnesium implants in order to promote patient safety.
The PhD candidates (m/f) will quantify the physical impact and suitability of a variety of modalities on Mg implants. Highly sophisticated imaging techniques (nano and μCT, MRT, PET, USPA, IR) will be developed beyond the forefront of medical device production. This will be done in vivo and with in situ labelling options to deliver non-invasively data on different time and length scales. The body reaction and material behaviour will be investigated during Mg degradation with a precision and plethora of details, which is currently not available.
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The EU-funded MSCA-ITN ‘MgSafe’ investigates a novel combination of imaging technologies for biodegradable magnesium implants in order to promote patient safety.
The PhD candidates (m/f) will quantify the physical impact and suitability of a variety of modalities on Mg implants. Highly sophisticated imaging techniques (nano and μCT, MRT, PET, USPA, IR) will be developed beyond the forefront of medical device production. This will be done in vivo and with in situ labelling options to deliver non-invasively data on different time and length scales. The body reaction and material behaviour will be investigated during Mg degradation with a precision and plethora of details, which is currently not available.
More Info
✔️ @ApplyTime
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1000 PhD grants in Science and Technology,India: Department of Science & Technology (DST)
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Full-Time Research Assistant in Pre-Doctoral Training Program at Harvard University/NBER
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PhD position: Bottom-up engineering of synthetic cells, Max Planck Institute for Medical Research
At the Max Planck Institute for Medical Research, one of the 84 institutes of the Max Planck Society for the Advancement of Science, physicists, chemists and biologists create knowledge of long-term relevance to life and basic medical sciences.
In the Department of Cellular Biophysics we are looking for a highly motivated and enthusiastic individual to join our lab at the Max Planck Institute for Medical Research, for a PhD position. The concerted effort in our lab is directed towards developing of highly innovative and creative approaches in bottom-up synthetic biology. The successful candidate will develop novel approaches for bottom-up reconstitution of dynamic actomyosin and microtubule cytoskeletal networks within the synthetic cells.
Your profile
Candidates should have a Master’s or equivalent degree in Biophysics, Biochemistry, Molecular Cell Biology, Chemistry, or related fields. An experimental background in biophysics and microfluidics is preferable. Excellent verbal and written communication skills in English are required.
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At the Max Planck Institute for Medical Research, one of the 84 institutes of the Max Planck Society for the Advancement of Science, physicists, chemists and biologists create knowledge of long-term relevance to life and basic medical sciences.
In the Department of Cellular Biophysics we are looking for a highly motivated and enthusiastic individual to join our lab at the Max Planck Institute for Medical Research, for a PhD position. The concerted effort in our lab is directed towards developing of highly innovative and creative approaches in bottom-up synthetic biology. The successful candidate will develop novel approaches for bottom-up reconstitution of dynamic actomyosin and microtubule cytoskeletal networks within the synthetic cells.
Your profile
Candidates should have a Master’s or equivalent degree in Biophysics, Biochemistry, Molecular Cell Biology, Chemistry, or related fields. An experimental background in biophysics and microfluidics is preferable. Excellent verbal and written communication skills in English are required.
More Info
✔️ @ApplyTime
Postdoctoral position on memory, sequence replay and sleep
The Diba Lab at the University of Michigan Medical School is currently recruiting a postdoctoral candidate for a project recently funded by two NIMH (R01 and R21) grants. The project involves a collaboration with Dr. Ted Abel’s lab at the University of Iowa to investigate the Molecular, Cellular and Circuit Effects of Sleep Deprivation on Hippocampal Function. The successful candidate will perform and analyze large-scale neuronal recordings from freely-behaving, sleeping and sleep-deprived animals, along with chemogenetic manipulations, immunohistochemistry and biochemical assays. Data analysis of oscillatory and sequential neuronal firing patterns, using MATLAB, python, and other tools, is critical for this research and the prospective candidate should demonstrate quantitive and programming skills. The salary will be based on the National Research Service Award (NRSA) payscale.
Our lab is housed in the Department of Anesthesiology and the Center for Consciousness Science at Michigan Medicine. We are affiliated with the Department of Biomedical Engineering and the Neuroscience Graduate Program. Collectively these programs and the University of Michigan at large provide a highly exciting and stimulating scientific environment for computational and systems neuroscience. The city of Ann Arbor is also consistently ranked among the top places in the U.S. to live (with ready access to cultural events, sports, parks and natural beauty.
Applicants should contact Kamran Diba: kdiba@umich.edu with a detailed C.V. and a description of research background, skills, and interests.
✔️ @ApplyTime
The Diba Lab at the University of Michigan Medical School is currently recruiting a postdoctoral candidate for a project recently funded by two NIMH (R01 and R21) grants. The project involves a collaboration with Dr. Ted Abel’s lab at the University of Iowa to investigate the Molecular, Cellular and Circuit Effects of Sleep Deprivation on Hippocampal Function. The successful candidate will perform and analyze large-scale neuronal recordings from freely-behaving, sleeping and sleep-deprived animals, along with chemogenetic manipulations, immunohistochemistry and biochemical assays. Data analysis of oscillatory and sequential neuronal firing patterns, using MATLAB, python, and other tools, is critical for this research and the prospective candidate should demonstrate quantitive and programming skills. The salary will be based on the National Research Service Award (NRSA) payscale.
Our lab is housed in the Department of Anesthesiology and the Center for Consciousness Science at Michigan Medicine. We are affiliated with the Department of Biomedical Engineering and the Neuroscience Graduate Program. Collectively these programs and the University of Michigan at large provide a highly exciting and stimulating scientific environment for computational and systems neuroscience. The city of Ann Arbor is also consistently ranked among the top places in the U.S. to live (with ready access to cultural events, sports, parks and natural beauty.
Applicants should contact Kamran Diba: kdiba@umich.edu with a detailed C.V. and a description of research background, skills, and interests.
✔️ @ApplyTime
Doctoral Student in Dialogue Systems / Natural Language Processing,
KTH Royal Institute of Technology in Stockholm has grown to become one of Europe's leading technical and engineering universities, as well as a key centre of intellectual talent and innovation. We are Sweden's largest technical research and learning institution and home to students, researchers and faculty from around the world. Our research and education covers a wide area including natural sciences and all branches of engineering, as well as architecture, industrial management, urban planning, history and philosophy.
The aim of the project is to develop models and systems for communication between human and machine in natural language, in particular in geospatial domains where the user walks around in the city and communicates with the system using his smartphone. Particular problems we will study are methods for context-dependent analysis of user utterances, and generation of instructions from the system. An integral part of the project will be to construct practical systems and try them out on users.
- The possibility to study in a dynamic international research environment in close cooperation with industries and advanced universities the world over.
- A personal study plan to support your development within your areas of interest.
- A workplace with many employee benefits and monthly salary according to KTH’s doctoral student salary agreement.
- Work and study in Stockholm, one of Europes fastest growing capitals, which is close to both nature and the sea.
- Help to relocate and get settled in Sweden and at KTH.
- The department of Speech,Music and Hearing (TMH) at KTH has a long research record in speech technology and dialogue systems, and have several leading researchers in the area.
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KTH Royal Institute of Technology in Stockholm has grown to become one of Europe's leading technical and engineering universities, as well as a key centre of intellectual talent and innovation. We are Sweden's largest technical research and learning institution and home to students, researchers and faculty from around the world. Our research and education covers a wide area including natural sciences and all branches of engineering, as well as architecture, industrial management, urban planning, history and philosophy.
The aim of the project is to develop models and systems for communication between human and machine in natural language, in particular in geospatial domains where the user walks around in the city and communicates with the system using his smartphone. Particular problems we will study are methods for context-dependent analysis of user utterances, and generation of instructions from the system. An integral part of the project will be to construct practical systems and try them out on users.
- The possibility to study in a dynamic international research environment in close cooperation with industries and advanced universities the world over.
- A personal study plan to support your development within your areas of interest.
- A workplace with many employee benefits and monthly salary according to KTH’s doctoral student salary agreement.
- Work and study in Stockholm, one of Europes fastest growing capitals, which is close to both nature and the sea.
- Help to relocate and get settled in Sweden and at KTH.
- The department of Speech,Music and Hearing (TMH) at KTH has a long research record in speech technology and dialogue systems, and have several leading researchers in the area.
More Info
✔️ @ApplyTime
PhD position: Intelligent data visualization and mining techniques, Karlsruhe Institute of Technology
Job description
Scientific experiments are currently undergoing a drastic change. New detectors systems offer ever increasing spatial and temporal resolution. Automation enables high throughput of samples. As result the amount acquired data is exploding and puts large challenges to research facilities and scientists. In order to tackle data-driven science, the standard data acquisition schemes need to be extended by advanced visualization and data mining techniques. International collaboration require an intelligent remote data access as the size of the data makes arbitrary data copies slow or even impossible. However, with a size of typical dataset in a gigabyte range, even data visualization becomes a challenging task. Computationally intensive preprocessing is required to extract domain specific information and detect relations between datasets.
You are going to develop a novel data visualization framework for large archives of tomographic volumes. With a 3 stage visualization workflow combining pre-processing as well as a server- and client-side rendering we want to cater a high-quality visualization to clients ranging from handhelds to large visualization stations and keeping load on the server-side infrastructure to a minimum. As a pilot project, an archive of samples produced at synchrotron facilities for research in developmental biology is considered.
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Job description
Scientific experiments are currently undergoing a drastic change. New detectors systems offer ever increasing spatial and temporal resolution. Automation enables high throughput of samples. As result the amount acquired data is exploding and puts large challenges to research facilities and scientists. In order to tackle data-driven science, the standard data acquisition schemes need to be extended by advanced visualization and data mining techniques. International collaboration require an intelligent remote data access as the size of the data makes arbitrary data copies slow or even impossible. However, with a size of typical dataset in a gigabyte range, even data visualization becomes a challenging task. Computationally intensive preprocessing is required to extract domain specific information and detect relations between datasets.
You are going to develop a novel data visualization framework for large archives of tomographic volumes. With a 3 stage visualization workflow combining pre-processing as well as a server- and client-side rendering we want to cater a high-quality visualization to clients ranging from handhelds to large visualization stations and keeping load on the server-side infrastructure to a minimum. As a pilot project, an archive of samples produced at synchrotron facilities for research in developmental biology is considered.
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PhD position: Intelligent cloud-based data acquisition platform, Karlsruhe Institute of Technology
Job description
Complex and distributed detector and control systems are required for modern scientific experiments. The instrumentation integrates custom and commercial components from various sources and generates everincreasing amounts of data. A variety of different formats, underlying storage engines, and data workflows are used. Often proper manual data interpretation and quality assurance is difficult or even impossible due to the tremendously increase of both number and size of datasets. This raises the need for novel automatic or semi-automatic data analysis methods and tools. Information on operation and scientific meaning needs to be extracted from the data stream and provided to the users in visual and easy to interpret form.
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Job description
Complex and distributed detector and control systems are required for modern scientific experiments. The instrumentation integrates custom and commercial components from various sources and generates everincreasing amounts of data. A variety of different formats, underlying storage engines, and data workflows are used. Often proper manual data interpretation and quality assurance is difficult or even impossible due to the tremendously increase of both number and size of datasets. This raises the need for novel automatic or semi-automatic data analysis methods and tools. Information on operation and scientific meaning needs to be extracted from the data stream and provided to the users in visual and easy to interpret form.
More Info
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Ph.D. and postdoctoral opportunities in multiscale modelling of adhesion
We seek qualified applicants for postdoctoral and Ph.D. candidates to model molecular adhesion with multiscale methods, including molecular dynamics. We seek an active engaged researcher who will be responsible for the development and application of new multiscale simulation methods for the description of biotechnological processes, in particular for the interaction between molecules and surfaces.
We expect that you have a university degree (Master level for the Ph.D. position, Ph.D. for the postdoctoral position) in physics, chemistry or biotechnology with a theoretical orientation. The candidate should have sound knowledge in molecular modelling and simulation of biomolecular systems, in thermodynamics as well as programming skills in e.g. C++, Fortran, Python and parallel algorithms. A very good command of spoken and written English is required. The appointment for the postdoctoral researcher will be initially for 2 years, for the Ph.D. position for three years according to the German governmental payscale.
Please send applications with a CV documenting your prior scientific achievements and publication record to wolfgang.wenzel@kit.edu . The group webpage is: www.int.kit.edu/nanosim
Deadline for applications is October 14, 2018.
Prof. Wolfgang Wenzel
Institute of Nanotechnology
Karlsruhe Institute of Technology
Phone: +49-721-608-26386
Mobile: +49-151-142-95504
Web: www.int.kit.edu/nanosim
✔️ @ApplyTime
We seek qualified applicants for postdoctoral and Ph.D. candidates to model molecular adhesion with multiscale methods, including molecular dynamics. We seek an active engaged researcher who will be responsible for the development and application of new multiscale simulation methods for the description of biotechnological processes, in particular for the interaction between molecules and surfaces.
We expect that you have a university degree (Master level for the Ph.D. position, Ph.D. for the postdoctoral position) in physics, chemistry or biotechnology with a theoretical orientation. The candidate should have sound knowledge in molecular modelling and simulation of biomolecular systems, in thermodynamics as well as programming skills in e.g. C++, Fortran, Python and parallel algorithms. A very good command of spoken and written English is required. The appointment for the postdoctoral researcher will be initially for 2 years, for the Ph.D. position for three years according to the German governmental payscale.
Please send applications with a CV documenting your prior scientific achievements and publication record to wolfgang.wenzel@kit.edu . The group webpage is: www.int.kit.edu/nanosim
Deadline for applications is October 14, 2018.
Prof. Wolfgang Wenzel
Institute of Nanotechnology
Karlsruhe Institute of Technology
Phone: +49-721-608-26386
Mobile: +49-151-142-95504
Web: www.int.kit.edu/nanosim
✔️ @ApplyTime
Postdoc in computational neuroscience/mathematical biology
NSF-supported postdoctoral position in mathematical biology/computational neuroscience in my group in the Department of Mathematical Sciences at Indiana University-Purdue University Indianapolis (IUPUI). This position involves research in the mechanisms and properties of synchronization in neural and other living systems including collaboration with experimentalists. The position offers excellent interdisciplinary training possibilities in computational neuroscience and mathematical biology.
Applicants should have (or expected to get in a near future) Ph.D. in mathematics, physics, neuroscience, biomedical engineering, computer science, or another related field. Applicants should have strong quantitative skills in dynamical modeling and data analysis and a strong interest in life sciences applications. Experience in nonlinear dynamics, computational neuroscience, and mathematical biology is a plus.
Please apply via mathjobs.orgat https://www.mathjobs.org/jobs/jobs/12619. Screening of applications will continue until position is filled.
Please address informal inquires to Leonid Rubchinsky via e-mail: lrubchin@iupui.edu
✔ @ApplyTime
NSF-supported postdoctoral position in mathematical biology/computational neuroscience in my group in the Department of Mathematical Sciences at Indiana University-Purdue University Indianapolis (IUPUI). This position involves research in the mechanisms and properties of synchronization in neural and other living systems including collaboration with experimentalists. The position offers excellent interdisciplinary training possibilities in computational neuroscience and mathematical biology.
Applicants should have (or expected to get in a near future) Ph.D. in mathematics, physics, neuroscience, biomedical engineering, computer science, or another related field. Applicants should have strong quantitative skills in dynamical modeling and data analysis and a strong interest in life sciences applications. Experience in nonlinear dynamics, computational neuroscience, and mathematical biology is a plus.
Please apply via mathjobs.orgat https://www.mathjobs.org/jobs/jobs/12619. Screening of applications will continue until position is filled.
Please address informal inquires to Leonid Rubchinsky via e-mail: lrubchin@iupui.edu
✔ @ApplyTime
Postdoctoral Researcher with the function of a Group Leader on "Dislocation-based functionality in oxides"
The ceramics group in the department of Materials- and Geoscience at the Technische Universität Darmstadt focusses on the development of new electroceramics. The international group considers broadly processing as well as functional and structural properties of bulk ceramics. The three current group leaders work in large part independent in a research group of in total about 30 researchers.
Our offer:
In the last three years the new research area of dislocation-based functionality in oxides produced publications in journals with very high impact factor on thermoelectrics and electrical conductivity and has potential for flexo-photovoltaics and hardening of ferroelectrics. We offer opportunities for plastic deformation of single crystals and dislocation creep. A wide variety of collaborations exist in the areas of dark-field X-ray microscopy, NMR investigations, TEM, DFT and phase field simulations. A dynamic, creative atmosphere is testified by 19 alumni of this group who hold faculty positions in seven countries and offer a wide network for further development.
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The ceramics group in the department of Materials- and Geoscience at the Technische Universität Darmstadt focusses on the development of new electroceramics. The international group considers broadly processing as well as functional and structural properties of bulk ceramics. The three current group leaders work in large part independent in a research group of in total about 30 researchers.
Our offer:
In the last three years the new research area of dislocation-based functionality in oxides produced publications in journals with very high impact factor on thermoelectrics and electrical conductivity and has potential for flexo-photovoltaics and hardening of ferroelectrics. We offer opportunities for plastic deformation of single crystals and dislocation creep. A wide variety of collaborations exist in the areas of dark-field X-ray microscopy, NMR investigations, TEM, DFT and phase field simulations. A dynamic, creative atmosphere is testified by 19 alumni of this group who hold faculty positions in seven countries and offer a wide network for further development.
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