141 research outputs found

    Choh and Janssen Funct Ecol 2023

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    Data of Choh and Janssen 2023   A tiny cuckoo: risk-dependent interspecific brood parasitism in a predatory mite.  Functional Ecology </p

    Choh and Janssen Funct Ecol 2023

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    Data of Choh and Janssen 2023   A tiny cuckoo: risk-dependent interspecific brood parasitism in a predatory mite.  Functional Ecology </p

    Choh and Janssen Funct Ecol 2023

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    Data of Choh and Janssen 2023   A tiny cuckoo: risk-dependent interspecific brood parasitism in a predatory mite.  Functional Ecology </p

    Choh and Janssen Funct Ecol 2023

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    Data of Choh and Janssen 2023   A tiny cuckoo: risk-dependent interspecific brood parasitism in a predatory mite.  Functional Ecology </p

    Life tables Estimating r

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    Life tables predatory mites used for Janssen et al. 2022, Exper Appl Acarol.<br

    Choh and Janssen Funct Ecol 2023

    No full text
    Data of Choh and Janssen 2023   A tiny cuckoo: risk-dependent interspecific brood parasitism in a predatory mite.  Functional Ecolog

    Data Choh and Janssen Funct Ecol 2023

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    Data of Choh and JanssenFunct Ecol 2023</p

    Data Choh and Janssen Funct Ecol 2023

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    Data of Choh and JanssenFunct Ecol 2023</p

    Interne lozing in stofverspreidingsmodel t.b.v. programma CALAM

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    Op de Technische Universiteit te Delft is in 1986/1987 door de afstudeerders J.F.X. Urbanus en J.H.G. Vreeburg een computerprogramma ontwikkeld dat de waterbeweging en de stofverspreiding in een waterbeheerseenheid beschrijft. Dit programma "CALAM" is geschreven als calamiteitenmodel voor het Noordelijk Deltabekken waar zich belangrijke innamepunten van oppervlaktewater bevinden. Het programma "CALAM" dat geschreven is in "FORTRAN" is als uitgangspunt gebruikt voor het computerprogramma t.b.v. het afstudeerproject "De waterhuishouding van de Wieringermeer en de sanering van de afvalwaterlozingen" van A.R.M. van Nispen. Om dit programma te kunnen gebruiken voor de beschrijving van de waterbeweging en de stofverspreiding in de Wieringermeer, waren enkele verbeteringen en aanvullingen op het programma noodzakelijk. De belangrijkste aanvulling is de mogelijkheid om een lozing van stof in een interne knoop van het systeem op te geven en door te rekenen. Deze aanvulling was noodzakelijk om de verspreide afvalwaterlozingen en de effluentlozing van een rioolwater zuiveringsinstallatie op het watersysteem van de Wieringermeer polder door te rekenen. De wijze waarop deze nieuwe optie in het invoer- en rekenprogramma is aangebracht is het onderwerp van dit deelontwerp.Hydraulic EngineeringCivil Engineering and Geoscience

    Open Design Systems

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    Current systems design and decision management methodologies can be single-sided, ignoring or failing to capture the dynamic interplay between multi-stakeholder preferences (‘what they want’) and system performances (‘what they can’). In addition, these methodologies often contain fundamental modelling errors and do not provide single best-fit solutions. This leaves designers or decision-makers without unique answers to their problems. Above all, mainstream higher education primarily applies instructivist and research-based learning methods, and therefore does not adequately prepare students for designing solutions to future complex problems.This book introduces both a state-of-the-art participatory design methodology (Odesys), and a design-based learning concept (ODL), which together overcome the aforementioned issues. Odesys is a pure act of open design integration to confront conflicting socio-technical interests and is the key to unlocking these complexities to deliver socially responsible systems. Odesys’ design engine, the Preferendus, enables stakeholders to cooperatively identify their best-fit design synthesis. It employs a novel optimisation method that maximises the aggregated preferences, integrating sound mathematical and extended U-modelling via open technical-, social-, and purpose cycles. The art of ODL is a constructivist design-based and well-proven learning concept fostering students’ design capabilities to become open and persistent problem solvers. It is a reflective, creative, and engaged learning approach that opens human development and unlocks new knowledge and solutions.The author also introduces new management features such as the corporate social identifier (CSI), the ‘socio-eco’ threefold organization model and U-model based open loop management. Finally, the author places Odesys &amp; ODL within the integrative context of empiricism, rationalism, spiritualism, and constructivism to unite the open design impulse.This book will be of interest to both academics and practitioners working in the field of complex systems design and managerial decision-making, and functions as a textbook on systems design and management for master students from diverse backgrounds.Engineering Structure
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