Search by property

Jump to navigation Jump to search

This page provides a simple browsing interface for finding entities described by a property and a named value. Other available search interfaces include the page property search, and the ask query builder.

Search by property

A list of all pages that have property "HasTitle" with value "Climate impact of transportation A model comparison". Since there have been only a few results, also nearby values are displayed.

Showing below up to 26 results starting with #1.

View (previous 50 | next 50) (20 | 50 | 100 | 250 | 500)


    

List of results

  • Bauer et al., 2015  + (CO2 emission mitigation and fossil fuel markets: Dynamic and international aspects of climate policies)
  • Palma et al., 2021  + (Calculating the Biodiversity Intactness Index: the PREDICTS implementation)
  • Moody and Woodcock, 1996  + (Calibration-based models for correction of area estimates derived from coarse resolution land-cover data)
  • Morandin et al., 2007  + (Can pastureland increase wild bee abundance in agriculturally intense areas?)
  • UNEP-WCMC, 2008  + (Carbon and biodiversity: a demonstration atlas)
  • Van Vuuren et al., 2016b  + (Carbon budgets and energy transition pathways)
  • Forster et al., 2007  + (Changes in atmospheric constituents and in radiative forcing. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change)
  • Bouwer et al., 2010  + (Changes in future flood risk due to climate and development in a Dutch polder area)
  • Alcamo et al., 2005  + (Changes in nature's balance sheet: Model-based estimates of future worldwide ecosystem services)
  • Woltjer et al., 2011  + (Chapter 2: MAGNET)
  • Brakkee et al., 2008  + (Characterisation factors for greenhouse gases at a midpoint level including indirect effects based on calculations with the IMAGE model)
  • Struijs et al., 2011  + (Characterization factors for inland water eutrophication at the damage level in life cycle impact assessment)
  • Anttila and Salmi, 2006  + (Characterizing temporal and spatial patterns of urban PM10 using six years of Finnish monitoring data)
  • IPCC, 2007a  + (Climate Change 2007 - The physical science basis: contribution of working group I to the fourth assessment report of the Intergovernmental Panel on Climate Change)
  • IPCC, 2007b  + (Climate Change 2007: Synthesis Report. Contribution of working groups I, II and III to the fourth assessment of the Intergovernmental Panel on Climate Change)
  • IPCC, 2013  + (Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change)
  • ESA, 2017  + (Climate Change Initiative (ESA-CCI) V2.0.7)
  • Van Vuuren and Carter, 2014  + (Climate and socio-economic scenarios for climate change research and assessment: Reconciling the new with the ol)
  • Stehfest et al., 2009  + (Climate benefits of changing diet)
  • Nelson et al., 2014  + (Climate change effects on agriculture: Economic responses to biophysical shocks)
  • Jeppesen et al., 2009  + (Climate change effects on runoff, catchment phosphorus loading and lake ecological state, and potential adaptations.)
  • Müller et al., 2009  + (Climate change impacts on agricultural yields)
  • Gernaat et al., 2021  + (Climate change impacts on renewable energy supply)
  • Johns et al., 2011  + (Climate change under aggressive mitigation: The ENSEMBLES multi-model experiment)
  • Seneviratne et al., 2018  + (Climate extremes, land-climate feedbacks and land-use forcing at 1.5°C)
  • Füssel et al., 2003  + (Climate impact response functions as impact tools in the tolerable windows approach)
  • Randall et al., 2007  + (Climate models and their evaluation)
  • Hendriks et al., 2002  + (Climate neutral energy carriers in the regulatory energy tax)
  • Girod et al., 2014d  + (Climate policy through changing consumption choices: Options and obstacles for reducing greenhouse gas emissions)
  • Voldoire et al., 2007  + (Climate simulation of the twenty-first century with interactive land-use changes)
  • Waha et al., 2012  + (Climate-driven simulation of global crop sowing dates)
  • Kroeze et al., 1999  + (Closing the global N2O budget: A retrospective analysis 1500-1994)
  • Van Vuuren and Kram, 2011  + (Comment)
  • Haines-Young and Potschin, 2013  + (Common International Classification of Ecosystems Services (CICES): Consultation on Version 4)
  • Höhne et al., 2006  + (Common but differentiated convergence (CDC): A new conceptual approach to long-term climate policy)
  • Van Sluisveld et al., 2018  + (Comparing future patterns of energy system change in 2 °C scenarios to expert projections)
  • Van Sluisveld et al., 2015  + (Comparing future patterns of energy system change in 2°C scenarios with historically observed rates of change)
  • Van Meijl et al., 2018  + (Comparing impacts of climate change and mitigation on global agriculture by 2050)
  • Molotoks et al., 2020  + (Comparing the impact of future cropland expansion on global biodiversity and carbon storage across models and scenarios)
  • Jewell et al., 2016  + (Comparison and interactions between the long-term pursuit of energy independence and climate policies)
  • Van Vuuren et al., 2009b  + (Comparison of different climate regimes: the impact of broadening participation)
  • De Vries et al., 2011  + (Comparison of land nitrogen budgets for European agriculture by various modeling approaches)
  • Van Vuuren et al., 2009c  + (Comparison of top-down and bottom-up estimates of sectoral and regional greenhouse gas emission reduction potentials)
  • Daioglou et al., 2015  + (Competing uses of biomass for energy and chemicals: Implications for long-term global CO2 mitigation potential)
  • Smith et al., 2010  + (Competition for land)
  • Kreileman and Bouwman, 1994  + (Computing land use emissions of greenhouse gases)
  • Van Vuuren et al., 2008  + (Conditional probabilistic estimates of 21st century greenhouse gas emissions based on the storylines of the IPCC-SRES scenarios)
  • Bouwman, 1990a  + (Conference on soils and the greenhouse effect. organized by the International Soil Reference and Information Centre on behalf of the Netherlands' Ministry of Housing, Physical Planning and Environment, Wageningen, the Netherlands, 14-18 August 1989)
  • Bouwman et al., 2010  + (Consequences of the cultivation of energy crops for the global nitrogen cycle)
  • Smeets et al., 2009  + (Contribution of N2O to the greenhouse gas balance of first-generation biofuels (Global Change Biology vol. 15 (1)))