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The dynamics of green innovation in ...
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Rhein, Friederike Esther.
The dynamics of green innovation in B2B industriesa systems approach to explain the diffusion of bioplastics /
Record Type:
Electronic resources : Monograph/item
Title/Author:
The dynamics of green innovation in B2B industriesby Friederike Esther Rhein.
Reminder of title:
a systems approach to explain the diffusion of bioplastics /
Author:
Rhein, Friederike Esther.
Published:
Wiesbaden :Springer Fachmedien Wiesbaden :2021.
Description:
xxxi, 350 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Technological innovationsManagement.
Online resource:
https://doi.org/10.1007/978-3-658-32148-2
ISBN:
9783658321482$q(electronic bk.)
The dynamics of green innovation in B2B industriesa systems approach to explain the diffusion of bioplastics /
Rhein, Friederike Esther.
The dynamics of green innovation in B2B industries
a systems approach to explain the diffusion of bioplastics /[electronic resource] :by Friederike Esther Rhein. - Wiesbaden :Springer Fachmedien Wiesbaden :2021. - xxxi, 350 p. :ill., digital ;24 cm. - Forschungs-/Entwicklungs-/Innovations-Management. - Forschungs-/Entwicklungs-/Innovations-Management..
Introduction -- Green Innovation in the B2B Context -- B2B Innovation Adoption and Diffusion -- Research Design and Methodology -- Exploring why and how B2B Buyers Adopt Bioplastics -- Investigating Relevant Factors in Business Adoption of Bioplastics -- Developing a Diffusion Model for emerging Bioplastic Products -- Integrating Findings and Conclusions.
In this book a quantitative, dynamic model is developed to explain and explore the diffusion of green new products in a business-to-business (B2B) context. Considering the case of emerging bioplastics, this goal is reached through a mixed-methods design, combining qualitative and quantitative methods over three phases. After an interview study with key-value chain actors an experimental vignette technique is applied to further study relevant factors in the micro (firm) level adoption process. Integrating the empirical findings, the diffusion model is developed and simulated at the macro (industry) level using a System Dynamics (SD) approach. Results explain the underlying dynamics and critical conditions for adoption to become self-sustaining. The Author Friederike Esther Rhein is currently business manager Point of Care at a leading medical technology company.
ISBN: 9783658321482$q(electronic bk.)
Standard No.: 10.1007/978-3-658-32148-2doiSubjects--Topical Terms:
200337
Technological innovations
--Management.
LC Class. No.: HD45
Dewey Class. No.: 658.514
The dynamics of green innovation in B2B industriesa systems approach to explain the diffusion of bioplastics /
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Introduction -- Green Innovation in the B2B Context -- B2B Innovation Adoption and Diffusion -- Research Design and Methodology -- Exploring why and how B2B Buyers Adopt Bioplastics -- Investigating Relevant Factors in Business Adoption of Bioplastics -- Developing a Diffusion Model for emerging Bioplastic Products -- Integrating Findings and Conclusions.
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In this book a quantitative, dynamic model is developed to explain and explore the diffusion of green new products in a business-to-business (B2B) context. Considering the case of emerging bioplastics, this goal is reached through a mixed-methods design, combining qualitative and quantitative methods over three phases. After an interview study with key-value chain actors an experimental vignette technique is applied to further study relevant factors in the micro (firm) level adoption process. Integrating the empirical findings, the diffusion model is developed and simulated at the macro (industry) level using a System Dynamics (SD) approach. Results explain the underlying dynamics and critical conditions for adoption to become self-sustaining. The Author Friederike Esther Rhein is currently business manager Point of Care at a leading medical technology company.
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Economics and Finance (SpringerNature-41170)
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EB HD45 .R469 2021 2021
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1 records • Pages 1 •
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https://doi.org/10.1007/978-3-658-32148-2
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