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Does attribute order influence attribute-information processing in discrete choice experiments?
Logar, I., Brouwer, R., & Campbell, D. (2020). Does attribute order influence attribute-information processing in discrete choice experiments? Resource and Energy Economics, 60, 101164 (21 pp.). https://doi.org/10.1016/j.reseneeco.2020.101164
Combining risk attitudes in a lottery game and flood risk protection decisions in a discrete choice experiment
Glatt, M., Brouwer, R., & Logar, I. (2019). Combining risk attitudes in a lottery game and flood risk protection decisions in a discrete choice experiment. Environmental and Resource Economics, 74(4), 1533-1562. https://doi.org/10.1007/s10640-019-00379-y
Do the societal benefits of river restoration outweigh their costs? A cost-benefit analysis
Logar, I., Brouwer, R., & Paillex, A. (2019). Do the societal benefits of river restoration outweigh their costs? A cost-benefit analysis. Journal of Environmental Management, 232, 1075-1085. https://doi.org/10.1016/j.jenvman.2018.11.098
Choice certainty, consistency, and monotonicity in discrete choice experiments
Mattmann, M., Logar, I., & Brouwer, R. (2019). Choice certainty, consistency, and monotonicity in discrete choice experiments. Journal of Environmental Economics and Policy, 8(2), 109-127. https://doi.org/10.1080/21606544.2018.1515118
Substitution effects and spatial preference heterogeneity in single- and multiple-site choice experiments
Logar, I., & Brouwer, R. (2018). Substitution effects and spatial preference heterogeneity in single- and multiple-site choice experiments. Land Economics, 94(2), 302-322. https://doi.org/10.3368/le.94.2.302
Multi-criteria decision analysis for integrated water quality assessment and management support
Schuwirth, N., Honti, M., Logar, I., & Stamm, C. (2018). Multi-criteria decision analysis for integrated water quality assessment and management support. Water Research X, 1, 100010 (11 pp.). https://doi.org/10.1016/j.wroa.2018.100010
Choice consistency and preference stability in test-retests of discrete choice experiment and open-ended willingness to pay elicitation formats
Brouwer, R., Logar, I., & Sheremet, O. (2017). Choice consistency and preference stability in test-retests of discrete choice experiment and open-ended willingness to pay elicitation formats. Environmental and Resource Economics, 68(3), 729-751. https://doi.org/10.1007/s10640-016-0045-z
The effect of risk communication on choice behavior, welfare estimates and choice certainty
Logar, I., & Brouwer, R. (2017). The effect of risk communication on choice behavior, welfare estimates and choice certainty. Water Resources and Economics, 18, 34-50. https://doi.org/10.1016/j.wre.2016.11.004
Testing choice theory using discrete choice experiments in Swiss energy policy
Mattmann, M. (2017). Testing choice theory using discrete choice experiments in Swiss energy policy [Doctoral dissertation]. Vrije Universiteit Amsterdam.
The effect of giving respondents time to think in a choice experiment: a conditional cash transfer programme in South Africa
Tilley, E., Logar, I., & Günther, I. (2017). The effect of giving respondents time to think in a choice experiment: a conditional cash transfer programme in South Africa. Environment and Development Economics, 22(2), 202-227. https://doi.org/10.1017/S1355770X16000280
Hydropower externalities: a meta-analysis
Mattmann, M., Logar, I., & Brouwer, R. (2016). Hydropower externalities: a meta-analysis. Energy Economics, 57, 66-77. https://doi.org/10.1016/j.eneco.2016.04.016
Wind power externalities: a meta-analysis
Mattmann, M., Logar, I., & Brouwer, R. (2016). Wind power externalities: a meta-analysis. Ecological Economics, 127, 23-36. https://doi.org/10.1016/j.ecolecon.2016.04.005
Valuing water resources in Switzerland using a hedonic price model
van Dijk, D., Siber, R., Brouwer, R., Logar, I., & Sanadgol, D. (2016). Valuing water resources in Switzerland using a hedonic price model. Water Resources Research, 52(5), 3510-3526. https://doi.org/10.1002/2015WR017534
D5.2 - Cost-effective restoration measures that promote wider ecosystem and societal benefits. REstoring rivers FOR effective catchment Management
Brouwer, R., Kuik, O., Sheremet, O., Jiang, Y., Brands, D., Gerdes, H., … González del Tánago, M. (2015). D5.2 - Cost-effective restoration measures that promote wider ecosystem and societal benefits. REstoring rivers FOR effective catchment Management. European Commission.
Rejoinder to Kallis et al.'s response to our criticism
Gsottbauer, E., Logar, I., & van den Bergh, J. (2015). Rejoinder to Kallis et al.'s response to our criticism. Ecological Economics, 118, 285-286. https://doi.org/10.1016/j.ecolecon.2015.07.030
Towards a fair, constructive and consistent criticism of all valuation languages: comment on Kallis et al. (2013)
Gsottbauer, E., Logar, I., & van den Bergh, J. (2015). Towards a fair, constructive and consistent criticism of all valuation languages: comment on Kallis et al. (2013). Ecological Economics, 112, 164-169. https://doi.org/10.1016/j.ecolecon.2014.12.014
Wert der Spurenstoffelimination. Eine ökonomische Analyse zum Ausbau Schweizer Abwasserreinigungsanlagen
Logar, I., Brouwer, R., Maurer, M., & Ort, C. (2015). Wert der Spurenstoffelimination. Eine ökonomische Analyse zum Ausbau Schweizer Abwasserreinigungsanlagen. Aqua & Gas, 95(2), 42-48.
[Review of the book <i>Determining the economic value of water: concepts and methods (2nd edition)</i>, by R.A. Young & J.B. Loomis]
Logar, I. (2015). [Review of the book Determining the economic value of water: concepts and methods (2nd edition), by R.A. Young & J.B. Loomis]. Water Resources and Economics, 11, 47-49. https://doi.org/10.1016/j.wre.2015.04.002
Costing natural hazards
Kreibich, H., van den Bergh, J. C. J. M., Bouwer, L. M., Bubeck, P., Ciavola, P., Green, C., … Thieken, A. H. (2014). Costing natural hazards. Nature Climate Change, 4(5), 303-306. https://doi.org/10.1038/nclimate2182
Cost-benefit analysis of the Swiss national policy on reducing micropollutants in treated wastewater
Logar, I., Brouwer, R., Maurer, M., & Ort, C. (2014). Cost-benefit analysis of the Swiss national policy on reducing micropollutants in treated wastewater. Environmental Science and Technology, 48(21), 12500-12508. https://doi.org/10.1021/es502338j