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1.5yr contract
About Us
Singapore Management University is a place where high-level professionalism blends together with a healthy informality. The ‘family-like’ atmosphere among the SMU community fosters a culture where employees work, plan, organise and play together – building a strong collegiality and morale within the university.
Our commitment to attract and retain talent is ongoing. We offer attractive benefits and welfare, competitive compensation packages, and generous professional development opportunities – all to meet the work-life needs of our staff. No wonder, then, that SMU continues to be given numerous awards and recognition for its human resource excellence.
Job Description
Work done will be at the direction of the PI, and where relevant, the Industry Director and Centre Director. As the Programme is interdisciplinary and multidisciplinary by nature, you will be expected to convey your domain expertise and edify others (and vice versa) in as productive, constructive, and collaborative a manneras possible.
You may be asked to participate in the development of use cases and delivery of proof-of-concept prototypesfor government and industry partners in the areas of computable contracts and “rules as code”. Experience inrequirements analysis and agile, iterative methodologies will be useful at this stage.The work of the team will be largely determined by these use cases and customers. We will work with multipleuse cases so that we can abstract across them and develop generalized, reusable infrastructure. We will workwith specific customers so we can build useful applications on top of that infrastructure.You will contribute to the design and development of open-source software written to serve those use cases.You will work as part of a team of research engineers, developers, and domain expertise and you will beexpected to actively participate in team meetings and text-based communications. You will be expected to beactive members of the applied research community, by validating and contributing to advances incomputational law.
You may be asked to conduct use-inspired research at the direction of the Principal Investigator. This includes
You will be expected to participate in software development as a supervisory domain expert, this includes:
in each case, documenting, reporting, and/or presenting the same in clearly and efficiently, both internally and externally.
Qualifications
Researchers under the Programme should possess both mastery of their academic speciality, and demonstrated practical experience producing and supporting high-quality open-source code through community engagement across multiple media. Candidates must have Bachelor’s, Master’s, Ph.D., or alternative qualifications in computer science, software engineering, (symbolic) artificial intelligence,computational linguistics, or formal methods.
Fluency in multiple natural languages, and any experience with law, are a plus.us.
Minimum qualifications:
Open-Source Software & Open-Standard Infrastructure Engineering
Internet · Unix · TCP/IP · HTTP(S) · XML · JSON · Schemas · YAML · Git · Github · Technical Writing · Developer Relations and Evangelism
Parsers, Compilers, and Programming Language Theory
Lex/YACC · alex/happy · Bison · CFGs · EBNF · BNFC
App Development
Test-Driven Development · Continuous Integration · Software Project Management · Agile / XP / Scrum · Pair Programming · Literate Programming · Unit Testing · Amazon Web Services · Docker · Full-Stack Development
Programming Languages and Frameworks:
Preferred: Haskell or OCaml. Python.
Possible alternatives: Common Lisp · Racket · Scheme · Javascript / Typescript / Node.
Computational Linguistics – Natural Language Generation
Computational Semantics (in Haskell, Prolog, or Lisp) · Montague Semantics · Grammatical Framework · Text planning · Surface realization
Familiarity with: WordNet · FrameNet · SenseNet · Controlled Natural Languages · Attempto Controlled English · ACErules
Formal Verification and Specification Languages
Some familiarity with any of: TLA+ · Alloy · IVy · B Method · Z notation · VDM++ · LTL ·
Preferred qualifications:
Theorem Proving and Strongly Typed Languages:
CoQ · Agda · Idris · Lean Prover · F* · Advanced Haskell (Template etc) · OCaml · Elm · Isabelle/HOL · StrangeLoop · Pony
Model Checkers and SAT/SMT solvers: Z3 · PAT · SMTlib · NuSMV · SPIN · Sentient
IDEs, Language Workbenches, and PLT frameworks: K Framework · JetBrains MPS · IDEs (Vim, Emacs, Visual Studio Code, Atom, Sublime Text) · Language Server Protocol
Rule Systems and Logics
Formalization of Contracts, Rules, and Business Logic: Akoma Ntoso · LegalRuleML · Petri Nets · Drools · iLog · OPA · Neota Logic · Constraint Handling Rules · ICAIL · JURIX · RuleML+RR
Model Driven Architecture: UML · BPMN · DMN · OCL · SBVR · Statecharts · Activity Diagrams · Parnas Tables
Logics: Hoare Logic · Kripke structures · Modal mu-calculus · Dynamic Logic · Deontic, Temporal, and Epistemic modals · Situation Calculus · Process Calculi · Multivalent logics · Defeasible Logic · BDI · Abductive Logic · F-Logic · Intuitionistic · Non-monotonic Logics · Skolemization · Well-Founded Semantics
Good Old-Fashioned Artificial Intelligence and Semantic Web
Knowledge Representation and Reasoning: Lisp · Prolog · F-Logic · Flora-2 · Datalog · Answer-Set Programming · Defeasible Logic · Expert Systems · DocAssemble · lps.doc.ic.ac.uk
Semantic Web and Ontologies: RDFa · RDFt · RDF · RIF · SWRL · OWL · Cyc · KBpedia · SUMO · UFO · Protégé
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