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Published online by Cambridge University Press:  19 March 2023

Simon Sharpe
Affiliation:
World Resources Institute, London
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Five Times Faster
Rethinking the Science, Economics, and Diplomacy of Climate Change
, pp. 316 - 328
Publisher: Cambridge University Press
Print publication year: 2023

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Adger, W. N., Pulhin, J. M., Barnett, J., et al., 2014. Human security. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C. B., Barros, V. R., Dokken, D. J., et al. (eds.)]. Cambridge University Press, pp. 755792.Google Scholar
Aichele, R. and Felbermayr, G., 2013. The effect of the Kyoto Protocol on carbon emissions. Journal of Policy Analysis and Management, 32(4), 731757.Google Scholar
Aklin, M. and Mildenberger, M., 2020. Prisoners of the wrong dilemma: why distributive conflict, not collective action, characterizes the politics of climate change. Global Environmental Politics, 20(4), 427.CrossRefGoogle Scholar
Aleem, Z., 2021. Joe Manchin’s coal ties are worse than we thought – yet legal. [online] MSNBC.com. Available at: https://www.msnbc.com/opinion/joe-manchin-s-coal-ties-are-worse-we-thought-yet-n1285934 [Accessed 28 June 2022].Google Scholar
Ambec, S., Cohen, M. A., Elgie, S., and Lanoie, P., 2011. The Porter Hypothesis at 20: can environmental regulation enhance innovation and competitiveness? Resources for the Future Discussion Paper No. 11-01. SSRN Electronic Journal. [online] Available at: https://ssrn.com/abstract=1754674 or https://doi.org/10.2139/ssrn.1754674 [Accessed 23 June 2022].Google Scholar
Anderson, P. W., 1972. More is different. Science, 177(4047), 393396.CrossRefGoogle ScholarPubMed
Andrews, O., Le Quéré, C., Kjellström, T., Lemke, B., and Haines, A., 2018. Implications for workability and survivability in populations exposed to extreme heat under climate change: a modelling study. The Lancet Planetary Health, 2(12), e540e547.CrossRefGoogle ScholarPubMed
Appleyard, D., 2014. Comparing the costs of biomass conversion and offshore wind. [online] Available at: https://www.renewableenergyworld.com/baseload/comparing-the-costs-of-biomass-conversion-and-offshore-wind/#gref [Accessed 24 June 2022].Google Scholar
Arthur, W. B., 2013. Complexity economics: a different framework for economic thought. [online] Available at: https://www.santafe.edu/research/results/working-papers/complexity-economics-a-different-framework-for-eco [Accessed 23 June 2022].Google Scholar
Australian Financial Review, 2015. Climate change model environmental damage claims are just smoke. [online] Available at: https://www.afr.com/opinion/climate-change-model-environmental-damage-claims-are-just-smoke-20150707-gi6ux0 [Accessed 23 June 2022].Google Scholar
Bank of England Prudential Regulation Authority, 2015. The impact of climate change on the UK insurance sector. [online] Available at: https://www.bankofengland.co.uk/-/media/boe/files/prudential-regulation/publication/impact-of-climate-change-on-the-uk-insurance-sector.pdf [Accessed 23 June 2022].Google Scholar
Barrett, S., 2008. Climate treaties and the imperative of enforcement. Oxford Review of Economic Policy, 24(2), 239258.Google Scholar
Barrett, S., 2014. Why have climate negotiations proved so disappointing? [online] Available at: https://www.pas.va/content/dam/casinapioiv/pas/pdf-volumi/extra-series/es41pas-acta19pass.pdf [Accessed 27 June 2022].Google Scholar
Beinhocker, E., 2010. The Origin of Wealth. Harvard Business School Press.Google Scholar
Beinhocker, E., Farmer, D., and Hepburn, C., 2018. The tipping point: how the G20 can lead the transition to a prosperous clean energy economy – G20 insights. [online] Available at: https://www.g20-insights.org/policy_briefs/the-tipping-point-how-the-g20-can-lead-the-transition-to-a-prosperous-clean-energy-economy/ [Accessed 24 June 2022].Google Scholar
Bettis, O., 2014. Risk management and climate change: risk of ruin. [online] Available at: https://www.lse.ac.uk/GranthamInstitute/wp-content/uploads/2014/01/Oliver-Bettis-Risk-Management-and-Climate-Change-Risk-of-Ruin.pdf [Accessed 23 June 2022].Google Scholar
Betts, R., 2018. Hothouse Earth: here’s what the science actually does – and doesn’t – say. [online] Available at: https://helixclimate.eu/the-conversation-featured-article-hothouse-earth-heres-what-the-science-actually-does-and-doesnt-say/ [Accessed 23 June 2022].Google Scholar
Black, J., 2003. A Dictionary of Economics. Oxford University Press.Google Scholar
BloombergNEF, 2021. EV Outlook 2021. [online] Available at: https://bnef.turtl.co/story/evo-2021/ [Accessed 23 June 2022].Google Scholar
Boers, N. and Rypdal, M., 2021. Critical slowing down suggests that the western Greenland ice sheet is close to a tipping point. Proceedings of the National Academy of Sciences, 118(21), https://www.pnas.org/doi/10.1073/pnas.2024192118Google Scholar
Boulton, C., Lenton, T., and Boers, N., 2022. Pronounced loss of Amazon rainforest resilience since the early 2000s. Nature Climate Change, 12(3), 271278.CrossRefGoogle Scholar
Brulle, R., 2013. Institutionalizing delay: foundation funding and the creation of U.S. climate change counter-movement organizations. Climatic Change, 122(4), 681694.Google Scholar
Chappin, E., 2011. Stimulating Energy Transitions. PhD thesis, TU Delft, pp. 101–114. Available at: http://chappin.com/ChappinEJL-PhDthesis.pdfGoogle Scholar
Chatham House, 2021. Climate change risk assessment 2021. [online] Available at: https://www.chathamhouse.org/2021/09/climate-change-risk-assessment-2021 [Accessed 23 June 2022].Google Scholar
Church, J. A., Clark, P. U., Cazenave, A., et al., 2013. Sea level change. In: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Stocker, T.F., Qin, D, Plattner, G.-K, et al. (eds.)]. Cambridge University Press, pp. 11371216.Google Scholar
Climate Action Tracker, 2015. Climate pledges will bring 2.7°C of warming, potential for more action. [online] Available at: https://climateactiontracker.org/publications/climate-pledges-will-bring-27c-of-warming-potential-for-more-action/ [Accessed 23 June 2022].Google Scholar
Climate Action Tracker, 2021. Glasgow’s one degree 2030 credibility gap: Net Zero’s lip service to climate action. [online] Available at: https://climateactiontracker.org/press/Glasgows-one-degree-2030-credibility-gap-net-zeros-lip-service-to-climate-action/ [Accessed 27 June 2022].Google Scholar
CNA Military Advisory Board, 2014. National security and the accelerating risks of climate change. [online] Available at: https://www.cna.org/archive/CNA_Files/pdf/mab_5-8-14.pdf [Accessed 23 June 2022].Google Scholar
Committee on Climate Change, 2017. UK climate change risk assessment 2017. [online] Available at: https://www.theccc.org.uk/uk-climate-change-risk-assessment-2017/ [Accessed 23 June 2022].Google Scholar
Cui, H., Hall, D., Li, J., and Lutsey, N., 2021. Update on the global transition to electric vehicles through 2020. [online] Available at: https://theicct.org/sites/default/files/publications/global-update-evs-transition-oct21.pdf [Accessed 28 June 2022].Google Scholar
Cullen, J. and Allwood, J., 2010. The efficient use of energy: tracing the global flow of energy from fuel to service. Energy Policy, 38(1), 7581.Google Scholar
De Meyer, K., Howarth, C., Jackson, A., et al., 2018. Developing better climate mitigation policies: challenging current climate change risk assessment approaches. UCL Policy Commission on Communicating Climate Science Report 2018–01.Google Scholar
Department for Business, Energy & Industrial Strategy, 2017. Industrial Strategy: Building a Britain Fit for the Future. HM Government, UK.Google Scholar
Depledge, J., 2022. The ‘top-down’ Kyoto Protocol? Exploring caricature and misrepresentation in literature on global climate change governance. International Environmental Agreements: Politics, Law and Economics, https://doi.org/10.1007/s10784-022-09580-9Google Scholar
Diamond, J., 2011. Collapse. Penguin, p. 436.Google Scholar
Dickens, G. and Forswall, C., n.d. Methane hydrates, carbon cycling, and environmental change. Encyclopedia of Earth Sciences Series, pp. 560566.Google Scholar
Downey, E., 1910. The futility of marginal utility. Journal of Political Economy, 18(4), 253268.Google Scholar
Drollette, D., 2016. Taking stock: Steven Chu, former secretary of the Energy Department, on fracking, renewables, nuclear weapons, and his work, post-Nobel Prize. Bulletin of the Atomic Scientists, 72(6), 351358.Google Scholar
Earle, J., Moran, C., and Ward-Perkins, Z., 2017. The Econocracy. Manchester University Press.Google Scholar
Economists’ Statement on Carbon Dividends Organized by the Climate Leadership Council, 2019. Economists’ Statement on Carbon Dividends Organized by the Climate Leadership Council. [online] Available at: https://www.econstatement.org [Accessed 24 June 2022].Google Scholar
Environment Agency, 2012. Thames Estuary 2100: managing risks through London and the Thames Estuary. TE2100 Plan; 2012. [online] Available at: https://brand.environment-agency.gov.uk/mb/CtyxlR [Accessed 23 June 2022].Google Scholar
European Commission, 2021. France, Germany, UK, US and EU launch ground-breaking International Just Energy Transition Partnership with South Africa. [online] Available at: https://ec.europa.eu/commission/presscorner/detail/en/IP_21_5768 [Accessed 28 June 2022].Google Scholar
FACT Dialogue, 2021. FACT Dialogue roadmap. [online] Available at: https://www.factdialogue.org/fact-roadmap [Accessed 28 June 2022].Google Scholar
Farmer, J. D., Hepburn, C., Ives, M. C., et al., 2019. Sensitive intervention points in the post-carbon transition. Science, 364(6436), 132134.CrossRefGoogle ScholarPubMed
Femia, F. and Werrell, C., 2012. Syria: climate change, drought and social unrest. The Center for Climate and Security. [online] Available at: http://climateandsecurity.org/2012/02/29/syria-climate-change-drought-and-social-unrest/ [Accessed 23 June 2022].Google Scholar
Femia, F. and Werrell, C. (eds.), 2013. The Arab Spring and climate change. Center for American Progress, The Center for Climate and Security. [online] Available at: https://climateandsecurity.files.wordpress.com/2012/04/climatechangearabspring-ccs-cap-stimson.pdf [Accessed 23 June 2022].Google Scholar
Friedman, M., 1966. The methodology of positive economics. In: Essays in Positive Economics. University of Chicago Press, pp. 316, 3043.Google Scholar
Funke, F. and Mattauch, L., 2018. Why is carbon pricing in some countries more successful than in others? [online] Our World in Data. Available at: https://ourworldindata.org/carbon-pricing-popular [Accessed 24 June 2022].Google Scholar
Funtowicz, S. and Ravetz, J., 1994. The worth of a songbird: ecological economics as a post-normal science. Ecological Economics, 10(3), 197207.Google Scholar
Geels, F., 2002. Technological transitions as evolutionary reconfiguration processes: a multi-level perspective and a case-study. Research Policy, 31(8–9), 12571274.Google Scholar
Geels, F., 2005a. Technological Transitions and System Innovations. Edward Elgar.Google Scholar
Geels, F. W., 2005b. The dynamics of transitions in socio-technical systems: a multi-level analysis of the transition pathway from horse-drawn carriages to automobiles (1860–1930). Technology Analysis & Strategic Management, 17(4), 445476.Google Scholar
Geels, F. W., 2006a. Co-evolutionary and multi-level dynamics in transitions: the transformation of aviation systems and the shift from propeller to turbojet (1930–1970). Technovation, 26(9), 9991016.Google Scholar
Geels, F. W., 2006b. The hygienic transition from cesspools to sewer systems (1840–1930): the dynamics of regime transformation. Research Policy, 35(7), 10691082.CrossRefGoogle Scholar
Geels, F., 2014. Regime resistance against low-carbon transitions: introducing politics and power into the multi-level perspective. Theory, Culture & Society, 31(5), 2140.CrossRefGoogle Scholar
Geels, F. and Schot, J., 2007. Typology of sociotechnical transition pathways. Research Policy, 36(3), 399417.Google Scholar
Gibbs, H., Rausch, L., Munger, J., et al., 2015. Brazil’s soy moratorium. Science, 347(6220), 377378.Google Scholar
Grubb, M., Drummond, P., Mercure, J. F., et al., 2021. The new economics of innovation and transition: evaluating opportunities and risks. [online] Available at: https://eeist.co.uk/eeist-reports/ [Accessed 27 June 2022].Google Scholar
Grubb, M., McDowall, W., and Drummond, P., 2017. On order and complexity in innovations systems: conceptual frameworks for policy mixes in sustainability transitions. Energy Research & Social Science, 33, 2134.Google Scholar
Haldane, A. and Turrell, A., 2017. An interdisciplinary model for macroeconomics. Bank of England Staff Working Paper No. 696. [online] Available at: https://www.bankofengland.co.uk/-/media/boe/files/working-paper/2017/an-interdisciplinary-model-for-macroeconomics.pdf [Accessed 23 June 2022].CrossRefGoogle Scholar
Hallegatte, S. and Rozenberg, J., 2019. All hands on deck: mobilizing all available instruments to reduce emissions. [online] Available at: https://blogs.worldbank.org/climatechange/all-hands-deck-mobilizing-all-available-instruments-reduce-emissions [Accessed 24 June 2022].Google Scholar
Hansen, J., 2009. Storms of My Grandchildren. Bloomsbury.Google Scholar
Haupt, F., Streck, C., Schulte, I., and Chagas, T., 2017. Progress on the New York Declaration on Forests: Finance for Forests – Goals 8 and 9 Assessment Report. [online] Available at: https://www.climatefocus.com/publications/progress-new-york-declaration-forests-finance-forests-goals-8-and-9-assessment-report [Accessed 28 June 2022].Google Scholar
Henbest, S., 2020. The first phase of the transition is about electricity, not primary energy. [online] BloombergNEF. Available at: https://about.bnef.com/blog/the-first-phase-of-the-transition-is-about-electricity-not-primary-energy/ [Accessed 24 June 2022].Google Scholar
Henrich, J., 2015. The Secret of Our Success. Princeton University Press.CrossRefGoogle Scholar
HM Treasury, 2020. Final Report of the 2020 Green Book Review. [online] Available at: https://www.gov.uk/government/publications/final-report-of-the-2020-green-book-review [Accessed 23 June 2022].Google Scholar
Hoegh-Guldberg, O., Cai, R., Poloczanska, E. S., et al., 2014. The ocean. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part B: Regional Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Barros, V. R. , Field, C. B, Dokken, D. J, et al. (eds.)]. Cambridge University Press, pp. 16551731.Google Scholar
Hoggan, J. and Littlemore, R., 2010. Climate Cover-up. Greystone Books.Google Scholar
Horton, B. P., Rahmstorf, S., Engelhardt, S.E., and Kemp, A. C., 2014. Expert assessment of sea-level rise by AD2100 and AD2300. Quaternary Science Reviews, http://www.sciencedirect.com/science/article/pii/S0277379113004381Google Scholar
Huerta de Soto, J., 2009. Four Hundred Years of Dynamic Efficiency. Available at: https://mises.org/library/four-hundred-years-dynamic-efficiency [Accessed 23 June 2022].Google Scholar
Huerta de Soto, J., 2014. The Theory of Dynamic Efficiency. Routledge/Taylor & Francis Group.Google Scholar
IEA, 2019. Global EV outlook 2019. [online] Available at: https://www.iea.org/reports/global-ev-outlook-2019Google Scholar
IEA, 2020. Energy technology perspectives 2020. [online] Available at: https://www.iea.org/reports/energy-technology-perspectives-2020 [Accessed 23 June 2022].Google Scholar
IEA, 2021. Net Zero by 2050. A roadmap for the global energy sector. [online] Available at: https://iea.blob.core.windows.net/assets/deebef5d-0c34-4539-9d0c-10b13d840027/NetZeroby2050-ARoadmapfortheGlobalEnergySector_CORR.pdf [Accessed 28 June 2022].Google Scholar
IMF, 2010. Rethinking macroeconomic policy. [online] Available at: https://www.imf.org/external/pubs/ft/spn/2010/spn1003.pdf [Accessed 24 June 2022].Google Scholar
IMF, 2019a. How to mitigate climate change. [online] Available at: https://www.imf.org/en/Publications/FM/Issues/2019/10/16/Fiscal-Monitor-October-2019-How-to-Mitigate-Climate-Change-47027 [Accessed 24 June 2022].Google Scholar
IMF, 2019b. The economics of climate. [online] Available at: https://www.imf.org/external/pubs/ft/fandd/2019/12/pdf/fd1219.pdf [Accessed 25 June 2022].Google Scholar
International Council for Clean Transportation, 2019. Overview of global zero-emission vehicle mandate programs. [online] Available at: https://theicct.org/wp-content/uploads/2021/06/Zero-Emission-Vehicle-Mandate-Briefing-v2.pdf [Accessed 25 June 2022].Google Scholar
IPCC, 2013. Summary for Policymakers. In:Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Stocker, T. F., Qin, D., Plattner, G.-K., et al. (eds.)]. Cambridge University Press.Google Scholar
IPCC, 2014a. Climate Change 2014: Impacts, Adaptation, and Vulnerability. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [online]. Cambridge University Press. Available at: https://www.ipcc.ch/report/ar5/wg2/ [Accessed 23 June 2022].Google Scholar
IPCC, 2014b. Summary for Policymakers. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C. B., Barros, V. R., Dokken, D. J., et al. (eds.)]. Cambridge University Press.Google Scholar
IPCC, 2018. Summary for Policymakers. In: Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty [Masson-Delmotte, V., Zhai, P., Pörtner, H.-O., et al. (eds.)]. Cambridge University Press, pp. 324. https://doi.org/10.1017/9781009157940.001Google Scholar
IPCC, 2021. Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., Zhai, P., Pirani, A., et al. (eds.)]. Cambridge University Press, p. 11. https://doi.org/10.1017/9781009157896.001Google Scholar
IPCC, 2022. Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Pörtner, , H.-O., Roberts, D. C, Tignor, M, et al. (eds.)]. Cambridge University Press.Google Scholar
IRENA, 2019. Renewable capacity statistics 2019. [online] Available at: https://www.irena.org/publications/2019/Mar/Renewable-Capacity-Statistics-2019 [Accessed 27 June 2022].Google Scholar
IRENA, 2021. Renewable capacity highlights. [online] Available at: https://www.irena.org/-/media/Files/IRENA/Agency/Publication/2021/Apr/IRENA_-RE_Capacity_Highlights_2021.pdf [Accessed 24 June 2022].Google Scholar
Jennings, T., Andrews Tipper, H., Daglish, J., Grubb, M., and Drummond, P., 2020. Policy, innovation and cost reduction in UK offshore wind. [online] Available at: https://www.carbontrust.com/resources/policy-innovation-and-cost-reduction-in-uk-offshore-wind [Accessed 24 June 2022].Google Scholar
Kattel, R., Mazzucato, M., Ryan-Collins, J., and Sharpe, S., 2018. The economics of change: policy and appraisal for missions, market shaping and public purpose. [online] Available at: https://www.ucl.ac.uk/bartlett/public-purpose/publications/2018/jul/economics-change-policy-and-appraisal-missions-market-shaping-and-public [Accessed 23 June 2022].Google Scholar
Kauffman, S., 2003. Investigations. Oxford University Press.Google Scholar
Kavlak, G., McNerney, J., and Trancik, J., 2016. Evaluating the changing causes of photovoltaics cost reduction. [online] Available at: https://papers.ssrn.com/sol3/papers.cfm?abstract_id=2891516 [Accessed 24 June 2022].Google Scholar
Kean, T. and Hamilton, L., 2004. Public statement on the release of 9/11 Commission Report. [online] Available at: https://govinfo.library.unt.edu/911/report/911Report_Statement.pdf [Accessed 23 June 2022].Google Scholar
Keen, S., 2017. Why economists have to embrace complexity to avoid disaster. [Blog] Evonomics. Available at: https://evonomics.com/why-economists-have-to-embrace-complexity-steve-keen/ [Accessed 24 June 2022].Google Scholar
Kelley, C. P., Mohtadi, S., Cane, M. A., Seager, R., and Kushnir, Y., 2015. Climate change in the Fertile Crescent and implications of the recent Syrian drought. Proceedings of the National Academy of Sciences, 11, 32413246.Google Scholar
King, D., Schrag, D., Zhou, D., Qi, Y., and Ghosh, A., 2015. Climate change: a risk assessment. [online] Available at: https://www.csap.cam.ac.uk/projects/climate-change-risk-assessment/ [Accessed 22 June 2022].Google Scholar
Knobloch, F., Hanssen, S., Lam, A., et al., 2020. Net emission reductions from electric cars and heat pumps in 59 world regions over time. Nature Sustainability, 3(6), 437447.Google Scholar
Kriegler, E., Hall, J. W., Held, H., Dawson, R., and Schellnhuber, H. J., 2009. Imprecise probability assessment of tipping points in the climate system. Proceedings of the National Academy of Sciences, 106, 50415046. https://doi.org/10.1073/pnas.0809117106Google Scholar
Krugman, P., 2009. Opinion | Fighting off depression. [online] Nytimes.com. Available at: https://www.nytimes.com/2009/01/05/opinion/05krugman.html?_r=0 [Accessed 24 June 2022].Google Scholar
Kuhn, T., 1970. The Structure of Scientific Revolutions. University of Chicago Press.Google Scholar
Lenton, T., 2011. Early warning of climate tipping points. Nature Climate Change, 1, 201209. https://doi.org/10.1038/nclimate1143Google Scholar
Lenton, T., 2020. Tipping positive change. Philosophical Transactions of the Royal Society B: Biological Sciences, 375(1794), 20190123.Google Scholar
Lovejoy, T. and Nobre, C., 2018. Amazon tipping point. Science Advances, 4(2), https://doi.org/10.1126/sciadv.aat2340Google Scholar
Lowe, J. and Bernie, D., 2018. The impact of Earth system feedbacks on carbon budgets and climate response. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 376(2119), 20170263.Google Scholar
Lubchenco, J., 1998. Entering the century of the environment: a new social contract for science. Science, 279(5350), 491497.Google Scholar
Lucas, R. E., 2004. Professional memoir. In: Lives of the Laureates, 4th ed. [Breit, W. and Hirsh, B. T. (eds.)]. MIT PressGoogle Scholar
MacKay, D., 2015. Why ‘good energy policy’ is difficult. [online] Available at: https://www.eprg.group.cam.ac.uk/presentation-why-good-energy-policy-is-difficult-reflections-on-5-years-in-the-decc-by-d-mackay/ [Accessed 23 June 2022].Google Scholar
MacKay, D., Cramton, P., Ockenfels, A., and Stoft, S., 2015. Price carbon – I will if you will. Nature, 526(7573), 315316.Google Scholar
Mazzucato, M., 2018. Mission-oriented innovation policies: challenges and opportunities. Industrial and Corporate Change, 27(5), 803815.Google Scholar
McGrath, A., 2018. The clockwork god: Isaac Newton and the mechanical universe. Available at: https://s3-eu-west-1.amazonaws.com/content.gresham.ac.uk/data/binary/2628/2018-01-23_AlisterMcGrath_TheClockworkGod.pdf [Accessed 23 June 2022].Google Scholar
Meadows, D., 2008. Thinking in Systems: A Primer. Chelsea Green.Google Scholar
Mercure, J., Pollitt, H., Bassi, A., Viñuales, J., and Edwards, N., 2016. Modelling complex systems of heterogeneous agents to better design sustainability transitions policy. Global Environmental Change, 37, 102115.Google Scholar
Mercure, J., Sharpe, S., Vinuales, J., et al., 2021. Risk-opportunity analysis for transformative policy design and appraisal. Global Environmental Change, 70, 102359.Google Scholar
Mirowski, P. and Plehwe, D., 2009. The Road from Mont Pèlerin. Harvard University Press.Google Scholar
National Research Council, 2009. Panel on Strategies and Methods for Climate-Related Decision Support. National Academies Press.Google Scholar
Nelson, R. and Winter, S., 1982. An Evolutionary Theory of Economic Change. Belknap Press of Harvard University.Google Scholar
New Weather Institute, 2017. The new reformation: 33 theses for an economics reformation. [online] Available at: https://www.newweather.org/2017/12/12/the-new-reformation-33-theses-for-an-economics-reformation/ [Accessed 27 June 2022].Google Scholar
Nordhaus, W., 2018. Climate change: the ultimate challenge for economics. Available at: https://www.nobelprize.org/prizes/economic-sciences/2018/nordhaus/lecture/ [Accessed 23 June 2022].Google Scholar
O’Neill, B., van Aalst, M., Zaiton Ibrahim, Z., et al., 2022. Key risks across sectors and regions. In: Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Pörtner, , H.-O., Roberts, D. C, Tignor, M, et al. (eds.)]. Cambridge University Press, pp. 98119.Google Scholar
Oberthür, S. and Ott, H., 2011. The Kyoto Protocol: International Climate Policy for the 21st Century. Springer.Google Scholar
OECD, 2016. The economic consequences of Brexit: a taxing decision. [online] Available at: https://www.oecd.org/unitedkingdom/The-economic-consequences-of-Brexit-27-april-2016.pdf [Accessed 23 June 2022].Google Scholar
Oppenheimer, M., Campos, M., Warren, R., et al., 2014. Emergent risks and key vulnerabilities. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C. B., Barros, V. R., Dokken, D. J., et al. (eds.)]. Cambridge University Press.Google Scholar
Otto, F. E. L., Massey, N., vanOldenborgh, G. J., Jones, R. G., and Allen, M. R., 2012. Reconciling two approaches to attribution of the 2010 Russian heat wave. Geophysical Research Letters, 39, L04702.Google Scholar
Overdevest, C. and Zeitlin, J., 2017. Experimentalism in transnational forest governance: implementing European Union Forest Law Enforcement, Governance and Trade (FLEGT) voluntary partnership agreements in Indonesia and Ghana. Regulation & Governance, 12(1), 6487.Google Scholar
Page, S. E., 1999. Computational models from A to Z. Complexity, 5(1), 3541.3.0.CO;2-B>CrossRefGoogle Scholar
Perez, C., 2014. Technological Revolutions and Financial Capital. Edward Elgar.Google Scholar
Pindyck, R., 2017. The use and misuse of models for climate policy. Review of Environmental Economics and Policy, 11(1), 100114.CrossRefGoogle Scholar
Porter, J. R., Xie, L., Challinor, A. J., et al., 2014. Food security and food production systems. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C. B., Barros, V. R., Dokken, D. J., et al. (eds.)]. Cambridge University Press, pp. 485534.Google Scholar
Prospect Magazine, 2017. Dismal ignorance of the ‘dismal science’ – a response to Larry Elliot. [online] Available at: https://www.prospectmagazine.co.uk/economics-and-finance/dismal-ignorance-of-the-dismal-science-a-response-to-larry-elliot [Accessed 23 June 2022].Google Scholar
Prospect Magazine, 2018. In defence of the economists. [online] Available at: https://www.prospectmagazine.co.uk/economics-and-finance/dianecoyle [Accessed 23 June 2022].Google Scholar
PwC, 2013. International threats and opportunities of climate change for the UK. [online] Available at: https://pwc.blogs.com/files/international-threats-and-opportunities-of-climate-change-to-the-uk.pdf [Accessed 23 June 2022].Google Scholar
Raworth, K., 2018. Doughnut Economics. Random House Business Books.Google Scholar
Reeder, T., Wicks, J., Lovell, L., and Tarrant, T., 2009. Protecting London from tidal flooding: limits to engineering adaptation. In: Adapting to Climate Change: Thresholds, Values, Governance. [Adger, N. W., Lorenzoni, I., and O’Brien, K. (eds.)]. Cambridge University Press, pp. 5463.Google Scholar
Ripple, W. and Beschta, R., 2012. Trophic cascades in Yellowstone: the first 15 years after wolf reintroduction. Biological Conservation, 145(1), 205213.Google Scholar
Roberts, C. and Geels, F. W., 2019, Conditions for politically accelerated transitions: historical institutionalism, the multi-level perspective, and two historical case studies in transport and agriculture. Technological Forecasting and Social Change, 140, 221240.Google Scholar
Rogelj, J., Shindell, D. Jiang, K., et al., 2018. Mitigation pathways compatible with 1.5°C in the context of sustainable development. In: Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty. [Masson-Delmotte, V., Zhai, P, H.-Pörtner, O, et al. (eds.)]. Cambridge University Press, p. 151.Google Scholar
Romer, P., 2016. The trouble with macroeconomics. Available at: https://paulromer.net/trouble-with-macroeconomics-update/WP-Trouble.pdf [Accessed 23 June 2022].Google Scholar
Ryan-Collins, J., Lloyd, T., and Macfarlane, L., 2017. Rethinking the Economics of Land and Housing. Zed Books.Google Scholar
Sabel, C. F. and Victor, D. G., 2022. Fixing the Climate: Strategies for an Uncertain World. Princeton University Press.Google Scholar
Schmidt, G., 2006. Runaway tipping points of no return. [Blog] RealClimate. Available at: https://www.realclimate.org/index.php/archives/2006/07/runaway-tipping-points-of-no-return/ [Accessed 23 June 2022].Google Scholar
Scientific Advisory Board of the United Nations Secretary-General, 2016. Assessing the risks of climate change: Policy Brief. [online] Available at: https://unesdoc.unesco.org/ark:/48223/pf0000246477 [Accessed 23 June 2022].Google Scholar
Sharpe, B., 2010. Economies of Life. Triarchy Press.Google Scholar
Sharpe, B., 2013. Three Horizons. Triarchy Press, p. 111.Google Scholar
Sharpe, S., 2019. Telling the boiling frog what he needs to know: why climate change risks should be plotted as probability over time. Geoscience Communication, 2(1), 95100.Google Scholar
Sharpe, S. and Lenton, T., 2021. Upward-scaling tipping cascades to meet climate goals: plausible grounds for hope. Climate Policy, 21(4), 421433.Google Scholar
Shearer, C., 2019. Guest post: How plans for new coal are changing around the world. [online] Carbon Brief. Available at: https://www.carbonbrief.org/guest-post-how-plans-for-new-coal-are-changing-around-the-world [Accessed 27 June 2022].Google Scholar
Sherwood, S. and Huber, M., 2010. An adaptability limit to climate change due to heat stress. Proceedings of the National Academy of Sciences, 107(21), 95529555.Google Scholar
Smith, J., 1976. What determines the rate of evolution? The American Naturalist, 110(973), 331338.Google Scholar
Smith, K. R., Woodward, A., Campbell-Lendrum, D., et al., 2014. Human health: impacts, adaptation, and co-benefits. In: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C. B., Barros, V. R., Dokken, D. J., et al. (eds.)]. Cambridge University Press.Google Scholar
Solow, R., 1994. Perspectives on growth theory. Journal of Economic Perspectives, 8(1), 4554.Google Scholar
Staffell, I., Jansen, M., Chase, A., Cotton, E., and Lewis, C., 2018. Energy revolution: a global outlook. [online] Available at: https://www.drax.com/wp-content/uploads/2018/12/Energy-Revolution-Global-Outlook-Report-Final-Dec-2018-COP24.pdf p. 6. [Accessed 26 June 2022].Google Scholar
Stavins, R., 2020. The future of US carbon-pricing policy. Environmental and Energy Policy and the Economy, 1, 864.Google Scholar
Steffen, W., Rockström, J., Richardson, K., et al., 2018. Trajectories of the Earth System in the Anthropocene. Proceedings of the National Academy of Sciences, 115(33), 82528259.Google Scholar
Stern, N., 2013. The structure of economic modeling of the potential impacts of climate change: grafting gross underestimation of risk onto already narrow science models. Journal of Economic Literature, 51(3), 838859.Google Scholar
Stern, N., 2018. Public economics as if time matters: climate change and the dynamics of policy. Journal of Public Economics, 162, 417.Google Scholar
Sutton, R., 2019. Climate science needs to take risk assessment much more seriously. Bulletin of the American Meteorological Society, 100(9), 16371642.Google Scholar
Sweet, W., 2016. Climate Diplomacy from Rio to Paris. Yale University Press.Google Scholar
Systemiq, 2020. The Paris effect. [online] Available at: https://www.systemiq.earth/wp-content/uploads/2020/12/The-Paris-Effect_SYSTEMIQ_Full-Report_December-2020.pdf [Accessed 26 June 2022].Google Scholar
The Economist. 2014a. Rueing the waves. [online] Available at: https://www.economist.com/britain/2014/01/04/rueing-the-waves [Accessed 24 June 2022].Google Scholar
The Economist. 2014b. Sun, wind and drain. [online] Available at: https://www.economist.com/finance-and-economics/2014/07/29/sun-wind-and-drain [Accessed 24 June 2022].Google Scholar
Tremaine, S., 2011. Is the Solar System stable? [online] Institute for Advanced Study. Available at: https://www.ias.edu/ideas/2011/tremaine-solar-system [Accessed 24 June 2022].Google Scholar
UK Government Cabinet Office, 2017. National Risk Register of Civil Emergencies.Google Scholar
UNEP, 2020. Emissions gap report 2020. [online] Available at: https://wedocs.unep.org/bitstream/handle/20.500.11822/34438/EGR20ESE.pdf?sequence=25 [Accessed 27 June 2022].Google Scholar
UNEP, 2021. Emissions gap report 2021. [online] Available at: https://wedocs.unep.org/bitstream/handle/20.500.11822/36991/EGR21_ESEN.pdf [Accessed 27 June 2022].Google Scholar
US Department of State, 2017. The Montreal Protocol on Substances that Deplete the Ozone Layer. [online] Available at: https://2009-2017.state.gov/e/oes/eqt/chemicalpollution/83007.htm [Accessed 27 June 2022].Google Scholar
Van Buskirk, R., Kantner, C., Gerke, B., and Chu, S., 2014. A retrospective investigation of energy efficiency standards: policies may have accelerated long term declines in appliance costs. Environmental Research Letters, 9(11), 114010.Google Scholar
Victor, D., Geels, F., and Sharpe, S., 2019. Accelerating the low carbon transition: the case for stronger, more targeted and coordinated international action. [online] Available at: https://www.energy-transitions.org/publications/accelerating-the-low-carbon-transition/ [Accessed 27 June 2022].Google Scholar
Vogt-Schilb, A., Meunier, G., and Hallegatte, S., 2018. When starting with the most expensive option makes sense: optimal timing, cost and sectoral allocation of abatement investment. Journal of Environmental Economics and Management, 88, 210233.Google Scholar
Watson, J., 2012. Climate change policy and the transition to a low carbon economy. [online] Available at: https://www.ippr.org/files/images/media/files/publication/2012/09/complex-new-world_Aug2012_web_9499.pdf [Accessed 25 June 2022].Google Scholar
Way, R., Mealy, P., Farmer, D., and Ives, M., 2021. Empirically grounded technology forecasts and the energy transition. [online] Available at: https://www.inet.ox.ac.uk/publications/no-2021-01-empirically-grounded-technology-forecasts-and-the-energy-transition/ [Accessed 27 June 2022].Google Scholar
Weitzman, M., 2011. Fat-tailed uncertainty in the economics of catastrophic climate change. Review of Environmental Economics and Policy, 5(2), 275292.CrossRefGoogle Scholar
Wolff, E., Shepherd, J., Shuckburgh, E., and Watson, A., 2015. Feedbacks on climate in the Earth system: introduction. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 373(2054), 20140428.Google Scholar
World Bank, 2014. Turn down the heat: confronting the new climate normal. [online] Available at: https://openknowledge.worldbank.org/handle/10986/20595 [Accessed 23 June 2022].Google Scholar
World Bank, 2020. State and trends of carbon pricing 2020. [online] Available at: https://openknowledge.worldbank.org/bitstream/handle/10986/33809/9781464815867.pdf [Accessed 25 June 2022].Google Scholar
Wright, T., 1936. Factors affecting the cost of airplanes. Journal of the Aeronautical Sciences, 3(4), 122128.Google Scholar
Wunderling, N., Donges, J., Kurths, J., and Winkelmann, R., 2021. Interacting tipping elements increase risk of climate domino effects under global warming. Earth System Dynamics, 12(2), 601619.CrossRefGoogle Scholar
Young, O. and Steffen, W., 2009. The Earth System: sustaining planetary life-support systems. In: Principles of Ecosystem Stewardship. Springer Science + Business Media, pp. 295315.Google Scholar

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