Springer Spektrum The Flight Physics Concept Inventory Boek

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Bol mso-fareast-font-family: 'Times New Roman'; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; The Flight Physics Concept Inventory (FliP-CoIn) is the first research-based conceptual assessment instrument for improving (fluid dynamics) learning and teaching. This work gives insights into why and how the FliP-CoIn was developed as well as how it is best used for improving conceptual learning. Further, this dissertation presents evidence for several dimensions of the FliP-CoIn’s validity and reliability. Finally, the author discusses key insights from the development process, the data analysis, and gives recommendations for future research. As such, this work is also written as a blueprint for future education researchers and instrument developers of other contexts. The FliP-CoIn’s context areas are flow, fluid dynamics and flight physics. The FliP-CoIn tests concepts of aerodynamic lift, aerodynamic drag, stall, center of mass, angle of attack and streamlines. The latest version and translations are available for educators at physport.org (or via [email protected]). About the AuthorFlorian Genz is a test developer and education researcher at the Institute of Physics Education (University of Cologne, Germany). The Flight Physics Concept Inventory (FliP-CoIn) is the first research-based conceptual assessment instrument for improving (fluid dynamics) learning and teaching. This work gives insights into why and how the FliP-CoIn was developed as well as how it is best used for improving conceptual learning. Further, this dissertation presents evidence for several dimensions of the FliP-CoIn’s validity and reliability. Finally, the author discusses key insights from the development process, the data analysis, and gives recommendations for future research. As such, this work is also written as a blueprint for future education researchers and instrument developers of other contexts. The FliP-CoIn’s context areas are flow, fluid dynamics and flight physics. The FliP-CoIn tests concepts of aerodynamic lift, aerodynamic drag, stall, center of mass, angle of attack and streamlines. The latest version and translations are available for educators at physport.org (or via [email protected]).

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mso-fareast-font-family: 'Times New Roman'; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-fareast-font-family: 'Times New Roman'; The Flight Physics Concept Inventory (FliP-CoIn) is the first research-based conceptual assessment instrument for improving (fluid dynamics) learning and teaching. This work gives insights into why and how the FliP-CoIn was developed as well as how it is best used for improving conceptual learning. Further, this dissertation presents evidence for several dimensions of the FliP-CoIn’s validity and reliability. Finally, the author discusses key insights from the development process, the data analysis, and gives recommendations for future research. As such, this work is also written as a blueprint for future education researchers and instrument developers of other contexts. The FliP-CoIn’s context areas are flow, fluid dynamics and flight physics. The FliP-CoIn tests concepts of aerodynamic lift, aerodynamic drag, stall, center of mass, angle of attack and streamlines. The latest version and translations are available for educators at physport.org (or via [email protected]). About the AuthorFlorian Genz is a test developer and education researcher at the Institute of Physics Education (University of Cologne, Germany). The Flight Physics Concept Inventory (FliP-CoIn) is the first research-based conceptual assessment instrument for improving (fluid dynamics) learning and teaching. This work gives insights into why and how the FliP-CoIn was developed as well as how it is best used for improving conceptual learning. Further, this dissertation presents evidence for several dimensions of the FliP-CoIn’s validity and reliability. Finally, the author discusses key insights from the development process, the data analysis, and gives recommendations for future research. As such, this work is also written as a blueprint for future education researchers and instrument developers of other contexts. The FliP-CoIn’s context areas are flow, fluid dynamics and flight physics. The FliP-CoIn tests concepts of aerodynamic lift, aerodynamic drag, stall, center of mass, angle of attack and streamlines. The latest version and translations are available for educators at physport.org (or via [email protected]).


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  • 9783658475147
  • 9783658475154
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