Results for 'design problem'

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  1.  28
    Design Problems in Life and AI生命と人工知能におけるデザイン問題.Jun Otsuka - 2019 - Journal of the Japan Association for Philosophy of Science 46 (2):71-77.
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  2. Representational and Realised Design: Problems for Analogies between Organisms and Artifacts.Greg Bamford - 2010 - Copenhagen Working Papers on Design 2010 // No. 2.
  3.  43
    The structure of Design Problem Spaces.Vinod Goel & Peter Pirolli - 1992 - Cognitive Science 16 (3):395-429.
    It is proposed that there are important generalizations about problem solving in design activity that reach across specific disciplines. A framework for the study of design is presented that (a) characterizes design as a radial category and fleshes out the task environment of the prototypical cases; (b) takes the task environment seriously; (c) shows that this task environment occurs in design tasks, but does not occur in every nondesign task; (d) explicates the impact of this (...)
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  4.  20
    The structure of Design Problem Spaces.Vinod Goel & Peter Pirolli - 1992 - Cognitive Science 16 (3):395-429.
    It is proposed that there are important generalizations about problem solving in design activity that reach across specific disciplines. A framework for the study of design is presented that (a) characterizes design as a radial category and fleshes out the task environment of the prototypical cases; (b) takes the task environment seriously; (c) shows that this task environment occurs in design tasks, but does not occur in every nondesign task; (d) explicates the impact of this (...)
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  5. Dilemmas in Designing Problems in ‘Realistic’ School Mathematics: A Sociological Overview and some Research Findings.Barry Cooper - 2007 - Philosophy of Mathematics Education Journal 20.
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  6. The Structure of Design Problem Space.P. PGoel Vind - 1992 - Cognitive Science 16:390-430.
     
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  7.  9
    Solving a Two-stage Supply Chain Network Design Problem with Fixed Costs by a Hybrid Genetic Algorithm.Ovidiu Cosma, Petrică C. Pop & Cosmin Sabo - 2022 - Logic Journal of the IGPL 30 (4):622-634.
    In this paper we investigate a particular two-stage supply chain network design problem with fixed costs. In order to solve this complex optimization problem, we propose an efficient hybrid algorithm, which was obtained by incorporating a linear programming optimization problem within the framework of a genetic algorithm. In addition, we integrated within our proposed algorithm a powerful local search procedure able to perform a fine tuning of the global search. We evaluate our proposed solution approach on (...)
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  8.  7
    Chaotic Fruit Fly Algorithm for Solving Engineering Design Problems.M. A. El-Shorbagy - 2022 - Complexity 2022:1-19.
    The aim of this article is to present a chaotic fruit fly algorithm as an optimization approach for solving engineering design problems. In CFFA, the fruit fly algorithm, which is recognized for its durability and efficiency in addressing optimization problems, was paired with the chaotic local search method, which allows for local exploitation. CFFA will be set up to work in two phases: in the first, FFA will be used to discover an approximate solution, and in the second, chaotic (...)
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  9. Addressing the Continued Circulation of Retracted Research as a Design Problem.Nathan D. Woods, Jodi Schneider & The Risrs Team - 2022 - GW Journal of Ethics in Publishing 1 (1).
    In this article, we discuss the continued circulation and use of retracted science as a complex problem: Multiple stakeholders throughout the publishing ecosystem hold competing perceptions of this problem and its possible solutions. We describe how we used a participatory design process model to co-develop recommendations for addressing this problem with stakeholders in the Alfred P. Sloan-funded project, Reducing the Inadvertent Spread of Retracted Science (RISRS). After introducing the four core RISRS recommendations, we discuss how the (...)
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  10.  34
    An efficient Reverse Distribution System for solving sustainable supply chain network design problem.Petrică C. Pop, Camelia-M. Pintea, Corina Pop Sitar & Mara Hajdu-Măcelaru - 2015 - Journal of Applied Logic 13 (2):105-113.
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  11. Mentalist evidentialism vindicated (and a super-blooper epistemic design problem for proper function justification).Todd R. Long - 2012 - Philosophical Studies 157 (2):251-266.
    Michael Bergmann seeks to motivate his externalist, proper function theory of epistemic justification by providing three objections to the mentalism and mentalist evidentialism characteristic of nonexternalists such as Richard Feldman and Earl Conee. Bergmann argues that (i) mentalism is committed to the false thesis that justification depends on mental states; (ii) mentalism is committed to the false thesis that the epistemic fittingness of an epistemic input to a belief-forming process must be due to an essential feature of that input, and, (...)
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  12.  49
    Consent and randomized clinical trials: Are there moral or design problems?Loretta Kopelman - 1986 - Journal of Medicine and Philosophy 11 (4):317-345.
    The purpose of this paper is to examine whether randomized clinical trial (RCT) methods are necessarily morally problematic. If they are intrinsically problematic, then there may be a dilemma such that tragic choices might have to be made between this socially very useful method for making medical progress on the one hand, and patients' rights and welfare, or physicans' duties on the other. It is argued that the dilemma may be avoided if RCTs can sometimes be viewed as an honorable (...)
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  13.  53
    Alternative Solutions to a Language Design Problem: The Role of Adjectives and Gender Marking in Efficient Communication.Melody Dye, Petar Milin, Richard Futrell & Michael Ramscar - 2018 - Topics in Cognitive Science 10 (1):209-224.
    A central goal of typological research is to characterize linguistic features in terms of both their functional role and their fit to social and cognitive systems. One long-standing puzzle concerns why certain languages employ grammatical gender. In an information theoretic analysis of German noun classification, Dye, Milin, Futrell, and Ramscar enumerated a number of important processing advantages gender confers. Yet this raises a further puzzle: If gender systems are so beneficial to processing, what does this mean for languages that make (...)
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  14.  47
    Problem-solving Strategies and Expertise in Engineering Design.Linden J. Ball, Jonathan StB. T. Evans, Ian Dennis & Thomas C. Ormerod - 1997 - Thinking and Reasoning 3 (4):247-270.
    A study is reported which focused on the problem-solving strategies employed by expert electronics engineers pursuing a real-world task: integrated-circuit design. Verbal protocol data were analysed so as to reveal aspects of the organisation and sequencing of ongoing design activity. These analyses indicated that the designers were implementing a highly systematic solution-development strategy which deviated only a small degree from a normatively optimal top-down and breadth-first method. Although some of the observed deviation could be described as opportunistic (...)
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  15.  60
    Why is brain size so important:Design problems and solutions as neocortex gets biggeror smaller. [REVIEW]Jon H. Kaas - 2000 - Brain and Mind 1 (1):7-23.
    As bridges or brains become bigger or smaller, the changes pose problems of design thatneed to be solved. Larger brains could have larger or more neurons, or both. With largerneurons, it becomes difficult to maintain conduction times over longer axons andelectrical cable properties over longer dendrites. With more neurons, it becomes difficultfor each neuron to maintain its proportion of connections with other neurons. Theseproblems are addressed by making brains more modular, thereby reducing the lengths ofmany connections, and by altering (...)
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  16.  13
    Algorithm design: a methodological approach--150 problems and detailed solutions.Patrick Bosc - 2023 - Boca Raton: CRC Press. Edited by Lauren Miclet & Marc Guyomard.
    A best-seller in its French edition, the construction of this book is original and its success in the French market demonstrates its appeal. It is based on three principles: 1. An organization of the chapters by families of algorithms : exhaustive search, divide and conquer, etc. At the contrary, there is no chapter only devoted to a systematic exposure of, say, algorithms on strings. Some of these will be found in different chapters. 2. For each family of algorithms, an introduction (...)
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  17.  96
    Designing user interfaces for problem solving, with application to hypertext and creative writing.Harold Thimbleby - 1994 - AI and Society 8 (1):29-44.
    Interactive computer systems can support their users in problem solving, both in Performing their work tasks and in using the systems themselves. Not only is direct support for heuristics beneficial, but to do so modifies the form of computer support provided. This Paper defines and explores the use of problem solving heuristics in user interface design.
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  18.  44
    Design, science and wicked problems.Robert Farrell & Cliff Hooker - unknown
    We examine the claim that design is demarcated from science by having wicked problems while science does not and argue that it is wrong. We examine each of the ten features Rittel and Weber hold to be characteristic of wicked problems and show that they derive from three general sources common to science and design: agent finitude, system complexity and problem normativity, and play analogous roles in each. This provides the basis for a common core cognitive process (...)
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  19. Intelligent design and the problem of evil.William Dembski - manuscript
    Intelligent design—the idea that a designing intelligence plays a substantive and empirically significant role in the natural world—no longer sits easily in our intellectual environment. Science rejects it for invoking an unnecessary teleology. Philosophy rejects it for committing an argument from ignorance. And theology rejects it for, as Edward Oakes contends, making the task of theodicy impossible.1 I want in this lecture to address all these concerns but especially the last. For many thinkers, particularly religious believers, intelligent design (...)
     
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  20.  8
    Design Principles for Promoting Students’ Social Scientific Reasoning About Social Problems.Thomas Klijnstra, Gerhard L. Stoel, Gerard J. F. Ruijs, Geerte M. Savenije & Carla A. M. van Boxtel - forthcoming - Journal of Social Studies Research.
    Social scientific reasoning (SSR) is essential to social science education and to a democratic society as a whole. Students are challenged to analyze and reason about social problems such as social inequality, crime, and poverty. However, students experience difficulties with SSR. This study addresses the research question: Which design principles can guide teachers in designing lessons that promote social scientific reasoning? In this design-based research, four social science teachers employed a conceptualization of SSR and its levels together with (...)
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  21.  19
    Accelerating Complex Problem-Solving Skills: Problem-Centered Training Design Methods.Raman K. Attri - 2018 - Singapore: Speed To Proficiency Research: S2Pro©.
    This book explains the importance to acquire complex problem-solving in today’s job environment. The book describes how to use five problem-centered methods to design training for real-world complex problem-solving skills. The book briefly describes the five methods in the context of the complex problem-solving skills - Problem-based learning (PBL), Project-based learning, Scenario-based learning (SBL), Case-based learning method (CBL), and Simulation-based learning. The book also specifies six research-based guidelines, and how training experts can design (...)
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  22.  7
    Question Design Affects Students' Sense‐Making on Mathematics Word Problems.Patrick K. Kirkland & Nicole M. McNeil - 2021 - Cognitive Science 45 (4):e12960.
    Mathematics word problems provide students with an opportunity to apply what they are learning in their mathematics classes to the world around them. However, students often neglect their knowledge of the world and provide nonsensical responses (e.g., they may answer that a school needs 12.5 buses for a field trip). This study examined if the question design of word problems affects students' mindset in ways that affect subsequent sense‐making. The hypothesis was that rewriting standard word problems to introduce inherent (...)
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  23.  13
    Problems and Solutions in Logic Design.D. Zissos & F. G. Duncan - 1976 - London ; Oxford University Press.
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  24. Phenomenal and access consciousness and the "hard" problem: A view from the designer stance.Aaron Sloman - 2010 - International Journal of Machine Consciousness 2 (1):117-169.
  25.  54
    The Problems of Biological Design.Tim Lewens - 2005 - Royal Institute of Philosophy Supplement 56:14-15.
    Here is one way that philosophers and biologists sometimes speak of Darwin’s explanatory innovation: ‘Eyes, organs of echolocation, camouflage and the like are all wonderful instances of contrivance, of complex adaptation, of good design. Paley and the other natural theologians sought to explain this good design by appeal to an intelligent designer. Darwin, on the other hand, offers us a superior explanation for the appearance of this same property: Darwin shows us that we can explain good design (...)
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  26.  31
    The Mind Technology Problem and the Deep History of Mind Design.Robert W. Clowes, Klaus Gärtner & Inês Hipólito - 2021 - In Inês Hipólito, Robert William Clowes & Klaus Gärtner (eds.), The Mind-Technology Problem : Investigating Minds, Selves and 21st Century Artefacts. Springer Verlag. pp. 1-45.
    We are living through a new phase in human development where much of everyday life – at least in the most technologically developed parts of the world – has come to depend upon our interaction with “smart” artefacts. Alongside this increasing adoption and ever-deepening reliance on intelligent machines, important changes have been taking place, often in the background, as to how we think of ourselves and how we conceptualize our relationship with technology. As we design, create and learn to (...)
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  27.  15
    Using of optimization geometric design methods for the problems of the spent nuclear fuel safe storage.Chugay A. M. & Alyokhina S. V. - 2020 - Artificial Intelligence Scientific Journal 25 (3):51-63.
    Packing optimization problems have a wide spectrum of real-word applications. One of the applications of the problems is problem of placement of containers with spent nuclear fuel on the storage platform. The solution of the problem can be reduced to the solution of the problem of finding the optimal placement of a given set of congruent circles into a multiconnected domain taking into account technological restrictions. A mathematical model of the prob-lem is constructed and its peculiarities are (...)
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  28.  59
    Ethics as Design: Doing Justice to Moral Problems.Caroline Whitbeck - 1996 - Hastings Center Report 26 (3):9-16.
    Solving actual moral problems is not simply a matter of choosing the “best” of several possible responses. It is also a matter of devising possible responses. Design practice in engineering affords important lessons about addressing practical problems.
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  29.  52
    Acquiring an understanding of design: evidence from children's insight problem solving.Margaret Anne Defeyter & Tim P. German - 2003 - Cognition 89 (2):133-155.
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  30. Ethische Probleme des Designs und der Zugangsvoraussetzungen klinischer AIDS Versuchsreihen.Udo Schüklenk - 1997 - Ethik in der Medizin 9 (1):15-30.
     
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  31.  36
    Designing Democratic Institutions and the Problem of Evil: A Liberal Chinese Perspective.Baogang He - 1995 - Social Philosophy and Policy 12 (2):292-321.
    Chinese liberals have been searching for a just society, one regulated by democratic institutions and rules—a society where the human potential for evil is properly controlled. It is in this context that Chinese liberal intellectuals such as Yan Jiaqi, Hu Ping, and Liao Xun, drawing on their respective experiences of the tragedies in China, have taken the idea that there is always a potential for evil in human nature as a starting-point for a just society and for designing democratic institutions.
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  32. Designing for Power, Agency, and Equity in Digital Literacies: New Tools, Same Problems.Katie Henry & Bud Hunt - 2019 - In Kristen Hawley Turner (ed.), The ethics of digital literacy: developing knowledge and skills across grade levels. Lanham, Maryland: Rowman & Littlefield.
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  33.  7
    “Intelligent design” as both problem and symptom.Adam S. Wilkins - 2006 - Bioessays 28 (4):327-329.
  34. Designing for productive failure in mathematical problem solving.Manu Kapur & June Lee - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society. pp. 2632--7.
     
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  35.  8
    Computational protein design as an optimization problem.David Allouche, Isabelle André, Sophie Barbe, Jessica Davies, Simon de Givry, George Katsirelos, Barry O'Sullivan, Steve Prestwich, Thomas Schiex & Seydou Traoré - 2014 - Artificial Intelligence 212 (C):59-79.
  36.  46
    On the design of inductive systems: Some philosophical problems.C. West Churchman & Bruce G. Buchanan - 1969 - British Journal for the Philosophy of Science 20 (4):311-323.
  37.  15
    The application of factorial design to a psychological problem.Brent Baxter - 1940 - Psychological Review 47 (6):494-500.
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  38.  79
    Scientific Creationism, Intelligent Design, and the Demarcation Problem.Doren Recker - 2007 - Southwest Philosophy Review 23 (1):27-38.
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  39. robot is going to operate in is completely understood and the actions it is going to take in the environment to achieve its goals are also completely understood. The problem is that this kind of design does not allow for encountering unknown obstacles and doing something different to get around them.Adaptable Robots - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Malden, MA: Blackwell. pp. 78.
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  40.  20
    Dissolving the 'problem of the absent artifact': design representations as means for counterfactual understanding and knowledge generalisation.Dingmar van Eck - unknown
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  41.  22
    Improving the Design of Intelligent Systems: Outstanding Problems and Some Solutions.L. J. Kohout & I. Stabile - 1998 - Journal of Intelligent Systems 8 (3-4):225-238.
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  42.  21
    Logical and Combinatorial Problems in Computer Design.Robert Mcnaughton - 1957 - Journal of Symbolic Logic 22 (2):222-222.
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  43.  59
    Experimental and quasi-experimental designs for generalized causal inference.William R. Shadish - 2001 - Boston: Houghton Mifflin. Edited by Thomas D. Cook & Donald Thomas Campbell.
    Sections include: experiments and generalised causal inference; statistical conclusion validity and internal validity; construct validity and external validity; quasi-experimental designs that either lack a control group or lack pretest observations on the outcome; quasi-experimental designs that use both control groups and pretests; quasi-experiments: interrupted time-series designs; regresssion discontinuity designs; randomised experiments: rationale, designs, and conditions conducive to doing them; practical problems 1: ethics, participation recruitment and random assignment; practical problems 2: treatment implementation and attrition; generalised causal inference: a grounded theory; (...)
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  44.  9
    Prenatal parental designing of children and the problem of acceptance.David A. Jensen - 2018 - Medicine, Health Care and Philosophy 21 (4):529-535.
    Seemingly ever improving medical technology and techniques portend the possibility of prenatally enhancing otherwise healthy, normal children—seamlessly enhancing or adding to a child’s natural abilities and characteristics. Though parents normally engage in enhancing children, i.e., child rearing, these technologies present radically new possibilities. This sort of enhancement, I argue, is morally problematic for the parent: the expectations of the enhancing parent necessarily conflict with attitudes of acceptance that moral parenting requires. Attitudes of acceptance necessitate that parents are open to the (...)
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  45.  48
    Gender Bias in Medical Implant Design and Use: A Type of Moral Aggregation Problem?Katrina Hutchison - 2019 - Hypatia 34 (3):570-591.
    In this article, I describe how gender bias can affect the design, testing, clinical trials, regulatory approval, and clinical use of implantable devices. I argue that bad outcomes experienced by women patients are a cumulative consequence of small biases and inattention at various points of the design, testing, and regulatory process. However, specific instances of inattention and bias can be difficult to identify, and risks are difficult to predict. This means that even if systematic gender bias in implant (...)
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  46.  31
    From participatory design to participating problem solving: Enhancing system adaptability through user modelling. [REVIEW]Zhengxin Chen - 1993 - AI and Society 7 (3):238-247.
    The issue on the role of users in knowledge-based systems can be investigated from two aspects: the design aspect and the functionality aspect. Participatory design is an important approach for the first aspect while system adaptability supported by user modelling is crucial to the second aspect. In the article, we discuss the second aspect. We view a knowledge-based computer system as the partner of users' problem-solving process, and we argue that the system functionality can be enhanced by (...)
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  47.  22
    How Experts Solve a Novel Problem in Experimental Design.Jan Maarten Schraagen - 1993 - Cognitive Science 17 (2):285-309.
    Research on expert‐novice differences has mainly focused on how experts solve familiar problems. We know far less about the skills and knowledge used by experts when they are confronted with novel problems within their area of expertise. This article discusses a study in which verbal protocols were taken from subjects of various expertise designing an experiment in an area with which they were unfamiliar. The results showed that even when domain knowledge is lacking, experts solve a novel problem within (...)
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  48. Darwin, Design and Dawkins' Dilemma.David H. Glass - 2012 - Sophia 51 (1):31-57.
    Richard Dawkins has a dilemma when it comes to design arguments. On the one hand, he maintains that it was Darwin who killed off design and so implies that his rejection of design depends upon the findings of modern science. On the other hand, he follows Hume when he claims that appealing to a designer does not explain anything and so implies that rejection of design need not be based on the findings of modern science. These (...)
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  49.  72
    Design Thinking in Argumentation Theory and Practice.Sally Jackson - 2015 - Argumentation 29 (3):243-263.
    This essay proposes a design perspective on argumentation, intended as complementary to empirical and critical scholarship. In any substantive domain, design can provide insights that differ from those provided by scientific or humanistic perspectives. For argumentation, the key advantage of a design perspective is the recognition that humanity’s natural capacity for reason and reasonableness can be extended through inventions that improve on unaided human intellect. Historically, these inventions have fallen into three broad classes: logical systems, scientific methods, (...)
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  50.  43
    Creating parts that allow for rational design: Synthetic biology and the problem of context-sensitivity.Stephan Güttinger - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):199-207.
    The parts-based engineering approach in synthetic biology aims to create pre-characterised biological parts that can be used for the rational design of novel functional systems. Given the context-sensitivity of biological entities, a key question synthetic biologists have to address is what properties these parts should have so that they give a predictable output even when they are used in different contexts. In the first part of this paper I will analyse some of the answers that synthetic biologists have given (...)
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