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1 – 10 of 150Michael Rachinger and Julian M. Müller
Business Model Innovation is increasingly created by an ecosystem of related companies. This paper aims to investigate the transition of a manufacturing ecosystem toward electric…
Abstract
Purpose
Business Model Innovation is increasingly created by an ecosystem of related companies. This paper aims to investigate the transition of a manufacturing ecosystem toward electric vehicles from a business model perspective.
Design/methodology/approach
The authors investigate an automotive manufacturing ecosystem that is in transition toward electric and electrified vehicles, conducting semi-structured interviews with 46 informants from 27 ecosystem members.
Findings
The results reveal that the actions of several ecosystem members are driven by regulations relating to emissions. Novel requirements regarding components and complementary offers necessitate the entry of actors from other industries and the formation of new ecosystem members. While the newly emerged ecosystem has roots in an established ecosystem, it relies on new value offers. Further, the findings highlight the importance of ecosystem governance, while the necessary degree of change in the members' business models depends on their roles and positions in the ecosystem. Therefore, upstream suppliers of components must perform business model adaptation, whereas downstream providers must perform more complex business model innovation.
Originality/value
The paper is among the first to investigate an entire manufacturing ecosystem and analyze its transition toward electric vehicles and the implications for business model innovation.
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Keywords
Theodore S. Ransaw, Michael Lachney and Kevin K. Green
Research suggests there are at least three challenges to Black male interest and success in STEM careers: increasing access to STEM resources and curriculum, increasing Black and…
Abstract
Research suggests there are at least three challenges to Black male interest and success in STEM careers: increasing access to STEM resources and curriculum, increasing Black and male inclusiveness in STEM initiatives, and increasing cultural and technical competency in STEM fields. African American schools typically do not have equitable STEM resources or instruction. In addition, there is limited research on supporting Black males' success in STEM in the culturally responsive computing (CRC) literature. Most STEM initiatives prioritize increasing the number of girls in STEM fields. STEM field employers are not active recruiters of Black male hires and have little experience with diversity and cultural inclusiveness. Research also suggests that Black students may not be interested working in White corporate America that undervalues their unique cultural perspectives and are more concerned with schooling that improves their communities. This chapter utilized CRC as a lens to examine the complexity of engaging Black males in STEM. As a result, the authors suggest adopting an equity ethic to help teachers help Black males connect themselves and their communities to STEM technology by utilizing smartphones and smartphone technology to engage Black males who may not have access to computers. We end with an example of CRC called barbershop computing, which combines computing, engineering, and innovation as a method to attract and retain Black males in STEM classes and help them persist in STEM careers.
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