£99.53

Springer Integrated Computational Life Cycle Engineering for Traction Batteries (Sustainable Production, Life Cycle Engineering and Management)

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Last 53 days • 53 data points (No recent data available)

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£99.53 £96.00 £96.77 £97.54 £98.31 £99.08 £99.85 24 January 2026 06 February 2026 19 February 2026 04 March 2026 17 March 2026

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Price distribution over 53 days • 3 price levels

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28 days 24 days 1 day · current 0 7 14 21 28 £96 £97 £100 Days at Price

Price Analysis

Most common price: £96 (28 days, 52.8%)

Price range: £96 - £100

Price levels: 3 different prices over 53 days

Description

Product Description The environmental burden caused by private transportation represents a significant challenge towards sustainability. Electric vehicles are considered a key technology to reduce the environmental impact caused by the mobility sector. However, the global adoption of electromobility implies shift and diversification of the environmental impacts caused by the transportation sector mainly driven by the production of the battery system. Modeling the life cycle environmental impacts of traction batteries is a time demanding and interdisciplinary task as it involves a high variability and requires an in-depth knowledge of the product system under analysis. To face these challenges, an Integrated Computational Life Cycle Engineering ICLCE framework for EVs has been developed. The ICLCE framework described aims at supporting fast and comprehensive modelling of complex foreground systems in the electromobility field and their interaction with diverse backgrounds and partial contexts. From the Back Cover The environmental burden caused by private transportation represents a significant challenge towards sustainability. Electric vehicles are considered a key technology to reduce the environmental impact caused by the mobility sector. However, the global adoption of electromobility implies shift and diversification of the environmental impacts caused by the transportation sector mainly driven by the production of the battery system. Modeling the life cycle environmental impacts of traction batteries is a time demanding and interdisciplinary task as it involves a high variability and requires an in-depth knowledge of the product system under analysis. To face these challenges, an Integrated Computational Life Cycle Engineering ICLCE framework for EVs has been developed. The ICLCE framework described aims at supporting fast and comprehensive modelling of complex foreground systems in the electromobility field and their interaction with diverse backgrounds and partial contexts.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
31 August 2021
Listed Since
26 June 2021

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