Search results for " R&D"

showing 10 items of 33 documents

Upstream Product Market Regulations, ICT, R&D and Productivity

2017

Our study aims to assess the actual importance of the two main channels via which upstream anti-competitive sector regulations are usually considered to impact productivity growth, i.e. by acting as a disincentive to business investments in R&D and in ICT. We estimate the specific impacts of these two channels and their shares in the total impact as opposed to alternative channels of investments in other forms of intangible capital that we cannot explicitly consider for lack of appropriate data such as improvements in skills, management and organization. To achieve this, we specify an extended production function explicitly relating productivity to R&D and ICT capital as well as to upstream…

O43INNOVATIONo47 - "Measurement of Economic Growth; Aggregate Productivity; Cross-Country Output Convergence"jel:C23[SHS]Humanities and Social SciencesC50Economics[ SHS.ECO ] Humanities and Social Sciences/Economies and finances050207 economicsIndustrial organization050205 econometrics CointegrationR&D05 social sciencesEconomic Growth and Aggregate Productivity: OtherHETEROGENEOUS PANELS[SHS.ECO]Humanities and Social Sciences/Economics and Finance047MANUFACTURING FIRMSjel:L5jel:O57Capital (economics)8. Economic growthTESTSENTRYo49 - Economic Growth and Aggregate Productivity: OtherEconomics and EconometricsproductivityProduct marketCOINTEGRATIONgrowthCOMPETITIONMeasurement of Economic Growth; Aggregate Productivity; Cross-Country Output Convergenceregulations0502 economics and business[ SHS ] Humanities and Social Sciencesparasitic diseasesjel:O43Production (economics)jel:O47ProductivityTotal factor productivityUpstream (petroleum industry)MarketProductivity Growth Regulations Competition Catch-up R&D ICTjel:L16ICTjel:O33Panel dataPANEL-DATAReview of Income and Wealth
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Real Options Analysis (ROA)opens innovation: the biopharmaceutical case

2012

Open Innovation Real Options Analysis R&D Portfolio Biopharmacuetical industry
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Forward tracking at the next e+ e- collider part II: Experimental challenges and detector design

2013

Published under the terms of the Creative Commons Attribution 3.0 License.

Particle physicsHighly Granular Calorimetry [9.5]Tracking (particle physics)01 natural sciences7. Clean energylaw.inventionlawParticle tracking detectors0103 physical sciencesDetectors and Experimental Techniques010306 general physicsColliderInstrumentationMathematical PhysicsAdvanced infrastructures for detector R&D [9]PhysicsRange (particle radiation)Series (mathematics)010308 nuclear & particles physicsbusiness.industryLarge detector systems for particle and astroparticle physicsDetectorTracking systemCharged particleParticle tracking detectors (Solid-state detectors)High Energy Physics::ExperimentbusinessEnergy (signal processing)
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Future Linear Colliders: Detector R&D, Jet Reconstruction and Top Physics Potential

2016

RESUMEN: Durante el siglo XX, los descubrimientos de nuevas partículas y las medidas realizadas en los colisionadores, junto con el progreso de la física teórica, nos permitieron formular el Modelo Estándar (SM) de las interacciones entre los constituyentes de la materia. El descubrimiento del bosón de Higgs en el LHC fue un gran paso en nuestra compren- sión de las interacciones fundamentales de la naturaleza y la estructura de la materia descrita por el Modelo Estándar. Con el fin de establecer el mecanismo de ruptura de simetría electrodébil, todas las propiedades del bosón de Higgs (masa, acoplamientos, amplitud de desintegración, espín) deben medirse con precisión. El LHC tiene excelen…

Physics::Instrumentation and Detectorsfuture linear collidersPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentDetectors and Experimental Techniquestop quarkjet reconstructionParticle Physics - Experimentdetector R&D
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Co-Evolutionary Coupling via a Digital-bio Ecosystem : A Suggestion for a New R&D Model in the Digital Economy

2019

A solution to the critical problem of a dilemma between R&D expansion and productivity decline that a majority of information and communication technology (ICT) leaders have been confronting in the digital economy is expected. It can be expected by a spinoff from economic functionality-seeking GDP-based coevolution cycle to supra-functionality beyond an economic value-seeking uncaptured GDP-driven coevolution cycle. However, the transformation dynamism remains a black box. By means of numerical simulations based on empirical analyses of the development trajectories of global ICT leaders, focusing on Amazon and Finland, together with an intensive review of preceding analyses, this paper atte…

R&D modeldigitalized bioeconomytransformationcircular economyuncaptured GDPdilemma between R&D and productivityAmazon and FinlandtuotekehitysCo-evolutionary couplingUPMco-evolutionary coupling
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EVALUATING R&D ALLIANCES UNDER UNCERTAINTY: A REAL OPTIONS APPROACH

Real Options R&D Alliances
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Les incitations à l'innovation dans le secteur privé

2011

En ligne sur http://www.cairn.info/load_pdf.php?ID_ARTICLE=REL_792_0045; International audience; L'innovation est devenue un facteur clé de la croissance économique. La question des incitations à l'innovation au sein des entreprises est donc primordiale. Dans ce papier, nous nous intéressons au type d'incitations monétaires reçues par les inventeurs au sein des entreprises avec une attention particulière à la mobilité inter-entreprise de ces derniers. Les résultats montrent un rendement salarial positif pour les inventeurs, celui-ci est plus important pour les inventeurs ayant connu une mobilité inter-entreprise, ce qui pourrait suggérer que les entreprises sont prêtes à payer les connaissa…

Secteur privéCroissance économiqueIncitationR&DIncitationInnovationEntrepriseSecteur privéR&DJEL : J - Labor and Demographic Economics/J.J3 - Wages Compensation and Labor Costs/J.J3.J33 - Compensation Packages • Payment MethodsJEL: O - Economic Development Innovation Technological Change and Growth/O.O3 - Innovation • Research and Development • Technological Change • Intellectual Property Rights/O.O3.O32 - Management of Technological Innovation and R&DÉconomie de l'innovation[SHS.ECO]Humanities and Social Sciences/Economics and FinanceJEL : O - Economic Development Innovation Technological Change and Growth/O.O3 - Innovation • Research and Development • Technological Change • Intellectual Property Rights/O.O3.O31 - Innovation and Invention: Processes and IncentivesJEL: J - Labor and Demographic Economics/J.J3 - Wages Compensation and Labor Costs/J.J3.J33 - Compensation Packages • Payment Methodsjel:O31jel:J33Entrepriseincitation inventor propensity scoreJEL : O - Economic Development Innovation Technological Change and Growth/O.O3 - Innovation • Research and Development • Technological Change • Intellectual Property Rights/O.O3.O32 - Management of Technological Innovation and R&DIncitation Inventeur Score de propensionjel:O32[ SHS.ECO ] Humanities and Social Sciences/Economies and financesIncitation financièreFranceJEL: O - Economic Development Innovation Technological Change and Growth/O.O3 - Innovation • Research and Development • Technological Change • Intellectual Property Rights/O.O3.O31 - Innovation and Invention: Processes and IncentivesInnovation[SHS.ECO] Humanities and Social Sciences/Economics and FinanceGeneral Economics Econometrics and Finance
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Endogenous asymmetry and cooperative R&D in linear duopoly with spillovers

2009

In a standard model of R&D followed by linear Cournot competition, firm asymmetry is sustainable as equilibrium with non cooperative R&D if and only if the productivity of research is sufficiently large relative to the benefits of imitation. Increasing spillovers distribute R&D results among asymmetric competitors, causing price, firm asymmetry, and joint profit to reduce. With zero spillovers, a symmetric joint lab dominates asymmetric R&D competition in terms of social welfare and consumer surplus, but is sometimes dominated in terms of joint profit. Raising spillovers encourage symmetric collusion but makes the latter potentially harmful to consumers. (JEL : C72; L13; O32).

Settore SECS-P/06 - Economia ApplicataCollusive R&D with spillovers Endogenous Asymmetry
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Co-evolutionary coupling leads a way to a novel concept of R&D - Lessons from digitalized bioeconomy

2020

Given the increasing role of research and development (R&D) in competitive markets in the digital economy while confronting the dilemma between R&D expansion and a productivity decline, transformation of the R&D model has become a crucial subject for global digital leaders. The authors of this paper postulate that neo open innovation harnessing the vigor of external innovation resources which then developed into a new concept of R&D that self-transforms during an R&D process initiated by Amazon by coupling with users. The authors further develop these postulates by proposing the embedding of a growth characteristic identical to biological coupling. An empirical analysis focusing on the fore…

Sociology and Political Science020209 energymedia_common.quotation_subjectHuman Factors and Ergonomics02 engineering and technologyEducationinnovaatiotoimintatutkimus- ja kehittämistoiminta0502 economics and business0202 electrical engineering electronic engineering information engineeringEconomicsDigital economyBusiness and International ManagementFunction (engineering)digitalisaatioProductivityIndustrial organizationnovel R&D conceptbiological couplingmedia_commonOpen innovationco-evolutionary couplingdigitalized bioeconomyCircular economy05 social sciencescircular economyuusi talousGlobal LeadershipDual (category theory)Coupling (computer programming)kiertotalousbiotalous050203 business & management
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DEPFET Active Pixel Detectors for a Future Linear e(+)e(-) Collider

2013

arXiv:1212.2160v1.-- et al.

Vertex (graph theory)Nuclear and High Energy PhysicsParticle physicsPhysics - Instrumentation and DetectorsPhysics::Instrumentation and Detectorsvertex detectorComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONFOS: Physical sciences01 natural sciencesHigh Energy Physics - Experimentlaw.inventionHigh Energy Physics - Experiment (hep-ex)Signal-to-noise ratiolaw0103 physical sciencesElectrical and Electronic EngineeringDetectors and Experimental Techniques010306 general physicsColliderPrecision Pixel Detectors [9.3]ComputingMethodologies_COMPUTERGRAPHICSAdvanced infrastructures for detector R&D [9]PhysicsPixel010308 nuclear & particles physicsDetectorFísicaInstrumentation and Detectors (physics.ins-det)Active pixel sensorNuclear Energy and EngineeringHigh Energy Physics::ExperimentVertex detectorlinear colliderddc:620DEPFETPixel detector
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