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  •  Frei abrufbar
    Four theories based on a meta-study on life-cycle analyses
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Transformation of mobility to the GHG-neutral post-fossil age
    Frankfurt am Main : FVV e.V., 2022
  •  Nur an Rechnern der Bibliothek abrufbar
    Transformation of Mobility to the GHG-neutral Post-fossil Age
    Frankfurt am Main : FVV e.V., 2021
  •  Nur an Rechnern der Bibliothek abrufbar
    Acoustic investigation and modelling of the wastegate and dynamic operating conditions in turbochargers
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Improvement of understanding of penetration and ignition behaviour of high-pressure gas jets in Gas-Diesel combustion systems
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Investigation of interactions between fuels and fuel leading components in Plug-in Hybrid Electric Vehicles (PHEV)
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Primary Atomization of Gasoline E-Fuels at RDE-Conditions
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Concept of a generic fuel cell which allows for a pre-competetive comparison of research results
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Modelling emissions of diesel engine combustion with variable valve timing
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Optimization of the transient performance of gas-driven ship propulsion plants
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Validation of homogeneous CNG DI combustion processes in combination with high-load EGR, Miller cycle and alternative ignition systems
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Efficiency increase of diesel combustion by influencing wall heat flux
    Frankfurt am Main : FVV e.V., 2020
  •  Nur an Rechnern der Bibliothek abrufbar
    Development of a fuel cell system model to describe the membrane humidification under dynamic conditions and methodology to transfer the model to a HiL application for the optimization of the operation strategy
    Frankfurt am Main : FVV e.V., 2020