Results 201 to 210 of about 8,346,626 (381)
Headway statistics of public transport in Mexican cities [PDF]
Milan Krbálek, P. Šeba
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The demand for urban transport: An application of discrete choice model for Cadiz [PDF]
The study of the demand for transport has among others applications, the valuation of travel time saving that is a very important question in cost-benefit analysis, and to adopt transport policy tools. Since McFadden developed a discrete choice model for
Candelaria Barrios Gonzalez+1 more
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This review provides an in‐depth understanding of all theoretical reaction mechanisms to date concerning zinc–iodine batteries. It revisits the inherent issues and solutions of zinc–iodine batteries from the perspective of industrial application. By integrating existing examples of energy storage applications, it identifies the challenges faced on the ...
Haokun Wen+10 more
wiley +1 more source
Particle Number Concentration Measurements on Public Transport in Bangkok, Thailand. [PDF]
Matthews JC+6 more
europepmc +1 more source
Tram-Train: New Public Transport System [PDF]
Margarita Novales+2 more
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Public transport subsidies and affordability in Mumbai, India [PDF]
This paper describes the role of public transport and the nature and incidence of transport subsidies in Mumbai, India. Mumbai has an extensive rail and bus network, and public transport is used for over 75 percent of all motorized trips in Greater ...
Bhattacharya, Soma, Cropper, Maureen
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Iridium Oxide Inverse Opal Anodes with Tailored Porosity for Efficient PEM Electrolysis
The synthesis of Iridium‐based Inverse Opals (Ir‐IO) is reported as electrocatalyst for Proton exchange membrane water electrolysis (PEM‐WE). Using the developed protocol it produces highly porous materials consisting either of metallic, oxidic Iridium or a combination thereof with large surface areas.
Sebastian Möhle+2 more
wiley +1 more source
Les infrastructures de transport et la logique financière du partenariat public-privé : quelques paradoxes [PDF]
Alain Bonnafous
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Electrically conductive and room temperature magnetic atomically thin (≈0.8 nm) vanadium doped MoS2 (V‐MoS2) is demonstrated for its spintronic applications. Here, the spin transport at the interface of permalloy (Py) and high spin‐orbit coupling V‐MoS2 magnetic monolayers is shown.
Krishna Rani Sahoo+8 more
wiley +1 more source