Albedo (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Albedo" in Czech language version.

Last modified:

Ref.Un. Ref.Website
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ametsoc.org (Global: 4,084th place; Czech: 1,462nd place)

journals.ametsoc.org

  • SMITH, Robin S.; DUBOIS, Clotilde; MAROTZKE, Jochem. Global Climate and Ocean Circulation on an Aquaplanet Ocean–Atmosphere General Circulation Model. Journal of Climate. 2006-09-15, roč. 19, čís. 18, s. 4719–4737. Dostupné online [cit. 2024-12-25]. ISSN 0894-8755. doi:10.1175/JCLI3874.1. (anglicky)

avcr.cz (Global: low place; Czech: 152nd place)

ziva.avcr.cz

  • SOLDÁN, Zdeněk; JANOŠÍK, Lukáš. Poikilohydrie mechorostů – úspěšná evoluční alternativa. ŽIVA [online]. Akademie věd České republiky, 14.12.2023 [cit. 2024-02-21]. Dostupné online.

carbonbrief.org (Global: low place; Czech: 2,753rd place)

  • The Arctic has warmed ‘nearly four times faster’ than the global average. www.carbonbrief.org [online]. [cit. 2024-03-10]. Dostupné online.

copernicus.org (Global: 5,068th place; Czech: 1,972nd place)

cp.copernicus.org

  • ROMANOVA, V.; LOHMANN, G.; GROSFELD, K. Effect of land albedo, CO2, orography, and oceanic heat transport on extreme climates. Climate of the Past. 2006-06-30, roč. 2, čís. 1, s. 31–42. Dostupné online [cit. 2024-12-25]. ISSN 1814-9324. doi:10.5194/cp-2-31-2006. (anglicky)

doi.org (Global: 2nd place; Czech: 4th place)

  • Albedo observations of the Earth’s surface for climate research. Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences. 1983-07-18, roč. 309, čís. 1508, s. 285–294. Dostupné online [cit. 2024-12-09]. ISSN 0080-4614. doi:10.1098/rsta.1983.0042. (anglicky)
  • BUDYKO, M. I. The effect of solar radiation variations on the climate of the Earth. Tellus A: Dynamic Meteorology and Oceanography. 1969-01-01, roč. 21, čís. 5, s. 611. Dostupné online [cit. 2024-12-09]. ISSN 1600-0870. doi:10.3402/tellusa.v21i5.10109.[nedostupný zdroj]
  • STEPHENS, Graeme L.; O'BRIEN, Denis; WEBSTER, Peter J.; PILEWSKI, Peter; KATO, Seiji; LI, Jui-lin. The albedo of Earth: The Albedo of Earth. S. 141–163. Reviews of Geophysics [online]. 2015-03. Roč. 53, čís. 1, s. 141–163. Dostupné online. doi:10.1002/2014RG000449. (anglicky)
  • PENTTILÄ, A.; MUINONEN, K.; IHALAINEN, O.; UVAROVA, E.; VUORI, M.; XU, G.; NÄRÄNEN, J. Temporal Variation of the Shortwave Spherical Albedo of the Earth. S. 790723. Frontiers in Remote Sensing [online]. 2022-03-11. Roč. 3, s. 790723. Dostupné online. doi:10.3389/frsen.2022.790723. (anglicky)
  • GOODE, P. R.; QIU, J.; YURCHYSHYN, V. Earthshine observations of the Earth's reflectance. Geophysical Research Letters. 2001-05, roč. 28, čís. 9, s. 1671–1674. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2000GL012580. (anglicky)
  • HAPKE, Bruce. Bidirectional reflectance spectroscopy: 1. Theory. Journal of Geophysical Research: Solid Earth. 1981, roč. 86, čís. B4, s. 3039–3054. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/JB086iB04p03039. (anglicky)
  • WARREN, Stephen G.; BRANDT, Richard E.; GRENFELL, Thomas C. Snowball Earth: Ice thickness on the tropical ocean. Journal of Geophysical Research: Oceans. 2002, roč. 107, čís. C10, s. 31–1–31-18. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/2001JC001123. (anglicky)
  • ROMANOVA, V.; LOHMANN, G.; GROSFELD, K. Effect of land albedo, CO2, orography, and oceanic heat transport on extreme climates. Climate of the Past. 2006-06-30, roč. 2, čís. 1, s. 31–42. Dostupné online [cit. 2024-12-25]. ISSN 1814-9324. doi:10.5194/cp-2-31-2006. (anglicky)
  • SMITH, Robin S.; DUBOIS, Clotilde; MAROTZKE, Jochem. Global Climate and Ocean Circulation on an Aquaplanet Ocean–Atmosphere General Circulation Model. Journal of Climate. 2006-09-15, roč. 19, čís. 18, s. 4719–4737. Dostupné online [cit. 2024-12-25]. ISSN 0894-8755. doi:10.1175/JCLI3874.1. (anglicky)
  • GOODE, P. R.; PALLÉ, E.; SHOUMKO, A. Earth's Albedo 1998–2017 as Measured From Earthshine. Geophysical Research Letters. 2021-09-08, roč. 48, čís. 17. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2021GL094888. (anglicky)
  • ROMÁN, Miguel O.; SCHAAF, Crystal B.; LEWIS, Philip. Assessing the coupling between surface albedo derived from MODIS and the fraction of diffuse skylight over spatially-characterized landscapes. Remote Sensing of Environment. 2010-04, roč. 114, čís. 4, s. 738–760. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.rse.2009.11.014. (anglicky)
  • SAGAN, Carl; TOON, Owen B.; POLLACK, James B. Anthropogenic Albedo Changes and the Earth's Climate. Science. 1979-12-21, roč. 206, čís. 4425, s. 1363–1368. Dostupné online [cit. 2024-12-25]. ISSN 0036-8075. doi:10.1126/science.206.4425.1363. (anglicky)
  • CAMPRA, Pablo; GARCIA, Monica; CANTON, Yolanda. Surface temperature cooling trends and negative radiative forcing due to land use change toward greenhouse farming in southeastern Spain. Journal of Geophysical Research: Atmospheres. 2008-09-27, roč. 113, čís. D18. Dostupné online [cit. 2024-12-25]. ISSN 0148-0227. doi:10.1029/2008JD009912. (anglicky)
  • OUYANG, Zutao; SCIUSCO, Pietro; JIAO, Tong. Albedo changes caused by future urbanization contribute to global warming. Nature Communications. 2022-07-01, roč. 13, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-022-31558-z. PMID 35778380. (anglicky)
  • WANG, Tong; WU, Yi; SHI, Lan. A structural polymer for highly efficient all-day passive radiative cooling. Nature Communications. 2021-01-14, roč. 12, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-020-20646-7. PMID 33446648. (anglicky)
  • CHEN, Meijie; PANG, Dan; CHEN, Xingyu. Passive daytime radiative cooling: Fundamentals, material designs, and applications. EcoMat. 2022-01, roč. 4, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2567-3173. doi:10.1002/eom2.12153. (anglicky)
  • MUNDAY, Jeremy N. Tackling Climate Change through Radiative Cooling. Joule. 2019-09, roč. 3, čís. 9, s. 2057–2060. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.joule.2019.07.010. (anglicky)
  • ANAND, Jyothis; SAILOR, David J.; BANIASSADI, Amir. The relative role of solar reflectance and thermal emittance for passive daytime radiative cooling technologies applied to rooftops. Sustainable Cities and Society. 2021-02, roč. 65, s. 102612. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.scs.2020.102612. (anglicky)
  • MUÑOZ, Ivan; CAMPRA, Pablo; FERNÁNDEZ-ALBA, Amadeo R. Including CO2-emission equivalence of changes in land surface albedo in life cycle assessment. Methodology and case study on greenhouse agriculture. The International Journal of Life Cycle Assessment. 2010-08, roč. 15, čís. 7, s. 672–681. Dostupné online [cit. 2024-12-25]. ISSN 0948-3349. doi:10.1007/s11367-010-0202-5. (anglicky)
  • POLASHENSKI, Chris M.; DIBB, Jack E.; FLANNER, Mark G. Neither dust nor black carbon causing apparent albedo decline in Greenland's dry snow zone: Implications for MODIS C5 surface reflectance. Geophysical Research Letters. 2015, roč. 42, čís. 21, s. 9319–9327. Dostupné v archivu pořízeném dne 2021-08-13. ISSN 1944-8007. doi:10.1002/2015GL065912. (anglicky) Archivováno 13. 8. 2021 na Wayback Machine.

elsevier.com (Global: 365th place; Czech: 150th place)

linkinghub.elsevier.com

  • ROMÁN, Miguel O.; SCHAAF, Crystal B.; LEWIS, Philip. Assessing the coupling between surface albedo derived from MODIS and the fraction of diffuse skylight over spatially-characterized landscapes. Remote Sensing of Environment. 2010-04, roč. 114, čís. 4, s. 738–760. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.rse.2009.11.014. (anglicky)
  • MUNDAY, Jeremy N. Tackling Climate Change through Radiative Cooling. Joule. 2019-09, roč. 3, čís. 9, s. 2057–2060. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.joule.2019.07.010. (anglicky)
  • ANAND, Jyothis; SAILOR, David J.; BANIASSADI, Amir. The relative role of solar reflectance and thermal emittance for passive daytime radiative cooling technologies applied to rooftops. Sustainable Cities and Society. 2021-02, roč. 65, s. 102612. Dostupné online [cit. 2024-12-25]. doi:10.1016/j.scs.2020.102612. (anglicky)

gatech.edu (Global: 4,205th place; Czech: low place)

curry.eas.gatech.edu

  • COAKLEY, J. A. Reflectance and albedo, surface. ghostarchive.org [online]. [cit. 2024-12-09]. Dostupné v archivu pořízeném z originálu dne 2022-10-09.

webster.eas.gatech.edu

  • STEPHENS, Graeme L.; O'BRIEN, Denis; WEBSTER, Peter J.; PILEWSKI, Peter; KATO, Seiji; LI, Jui-lin. The albedo of Earth: The Albedo of Earth. S. 141–163. Reviews of Geophysics [online]. 2015-03. Roč. 53, čís. 1, s. 141–163. Dostupné online. doi:10.1002/2014RG000449. (anglicky)

ghostarchive.org (Global: 64th place; Czech: 630th place)

  • PHARR, Humphreys. Fundamentals of Rendering - Radiometry / Photometry. ghostarchive.org [online]. [cit. 2024-12-09]. Dostupné v archivu pořízeném z originálu dne 2022-10-09.
  • COAKLEY, J. A. Reflectance and albedo, surface. ghostarchive.org [online]. [cit. 2024-12-09]. Dostupné v archivu pořízeném z originálu dne 2022-10-09.

helsinki.fi (Global: 1,384th place; Czech: 2,653rd place)

helda.helsinki.fi

  • PENTTILÄ, A.; MUINONEN, K.; IHALAINEN, O.; UVAROVA, E.; VUORI, M.; XU, G.; NÄRÄNEN, J. Temporal Variation of the Shortwave Spherical Albedo of the Earth. S. 790723. Frontiers in Remote Sensing [online]. 2022-03-11. Roč. 3, s. 790723. Dostupné online. doi:10.3389/frsen.2022.790723. (anglicky)

ipcc.ch (Global: 1,841st place; Czech: 1,058th place)

nasa.gov (Global: 12th place; Czech: 99th place)

nssdc.gsfc.nasa.gov

  • Earth Fact Sheet. nssdc.gsfc.nasa.gov [online]. [cit. 2021-08-13]. Dostupné online.

modis.gsfc.nasa.gov

  • MODIS BRDF/Albedo Product: Algorithm Theoretical Basis Document Version 5.0 [online]. [cit. 2024-12-25]. Dostupné v archivu pořízeném z originálu dne 2009-06-01.

nature.com (Global: 207th place; Czech: 89th place)

  • OUYANG, Zutao; SCIUSCO, Pietro; JIAO, Tong. Albedo changes caused by future urbanization contribute to global warming. Nature Communications. 2022-07-01, roč. 13, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-022-31558-z. PMID 35778380. (anglicky)
  • WANG, Tong; WU, Yi; SHI, Lan. A structural polymer for highly efficient all-day passive radiative cooling. Nature Communications. 2021-01-14, roč. 12, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-020-20646-7. PMID 33446648. (anglicky)
  • The Photovoltaic Heat Island Effect: Larger solar power plants increase local temperatures. www.nature.com [online]. [cit. 2023-09-24]. Dostupné online.
  • Offset of the potential carbon sink from boreal forestation by decreases in surface albedo. www.nature.com [online]. [cit. 2024-02-19]. Dostupné online.

nih.gov (Global: 5th place; Czech: 8th place)

ncbi.nlm.nih.gov

ohio-state.edu (Global: 7,569th place; Czech: 8,410th place)

web.cse.ohio-state.edu

  • PHARR, Humphreys. Fundamentals of Rendering - Radiometry / Photometry. ghostarchive.org [online]. [cit. 2024-12-09]. Dostupné v archivu pořízeném z originálu dne 2022-10-09.

phys.org (Global: 1,595th place; Czech: 71st place)

  • SCIENCE, Weizmann Institute of. Why do Earth's hemispheres look equally bright when viewed from space?. phys.org [online]. [cit. 2023-02-23]. Dostupné online. (anglicky)
  • Understanding Earth's hidden east-west symmetry could improve climate models. phys.org [online]. [cit. 2026-06-05]. Dostupné online.
  • American Geophysical Union. Earth is dimming due to climate change. phys.org [online]. 2021-09-30 [cit. 2023-01-08]. Dostupné online. (anglicky)
  • Rapid surge in global warming mainly due to reduced planetary albedo, researchers suggest. phys.org [online]. [cit. 2024-12-05]. Dostupné online.

pnas.org (Global: 1,411th place; Czech: 329th place)

  • Combined climate and carbon-cycle effects of large-scale deforestation. www.pnas.org [online]. [cit. 2024-02-21]. Dostupné online.

researchgate.net (Global: 96th place; Czech: 98th place)

  • Satellite observations reveal a decreasing albedo trend of global cities over the past 35 years. www.researchgate.net [online]. [cit. 2024-06-04]. Dostupné online.

royalsocietypublishing.org (Global: 1,880th place; Czech: 311th place)

  • Albedo observations of the Earth’s surface for climate research. Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences. 1983-07-18, roč. 309, čís. 1508, s. 285–294. Dostupné online [cit. 2024-12-09]. ISSN 0080-4614. doi:10.1098/rsta.1983.0042. (anglicky)

science.org (Global: 1,007th place; Czech: 349th place)

sciencedirect.com (Global: 137th place; Czech: 75th place)

  • Long-term trends in albedo as seen from a lunar observatory. www.sciencedirect.com [online]. [cit. 2024-02-23]. Dostupné online.
  • Albedo-dominated biogeophysical warming effects induced by vegetation restoration on the Loess Plateau, China. www.sciencedirect.com [online]. [cit. 2024-02-19]. Dostupné online.
  • Modulation of ice ages via precession and dust-albedo feedbacks. www.sciencedirect.com [online]. [cit. 2024-02-18]. Dostupné online.

springer.com (Global: 182nd place; Czech: 137th place)

link.springer.com

  • MUÑOZ, Ivan; CAMPRA, Pablo; FERNÁNDEZ-ALBA, Amadeo R. Including CO2-emission equivalence of changes in land surface albedo in life cycle assessment. Methodology and case study on greenhouse agriculture. The International Journal of Life Cycle Assessment. 2010-08, roč. 15, čís. 7, s. 672–681. Dostupné online [cit. 2024-12-25]. ISSN 0948-3349. doi:10.1007/s11367-010-0202-5. (anglicky)

tellusjournals.se (Global: low place; Czech: low place)

a.tellusjournals.se

web.archive.org (Global: 1st place; Czech: 1st place)

  • MODIS BRDF/Albedo Product: Algorithm Theoretical Basis Document Version 5.0 [online]. [cit. 2024-12-25]. Dostupné v archivu pořízeném z originálu dne 2009-06-01.
  • Climate Change 2001: The Scientific Basis. www.grida.no [online]. [cit. 20-03-2005]. Dostupné v archivu pořízeném dne 29-06-2011.
  • Climate Change 2001: The Scientific Basis. www.grida.no [online]. [cit. 20-03-2005]. Dostupné v archivu pořízeném dne 29-06-2011.
  • POLASHENSKI, Chris M.; DIBB, Jack E.; FLANNER, Mark G. Neither dust nor black carbon causing apparent albedo decline in Greenland's dry snow zone: Implications for MODIS C5 surface reflectance. Geophysical Research Letters. 2015, roč. 42, čís. 21, s. 9319–9327. Dostupné v archivu pořízeném dne 2021-08-13. ISSN 1944-8007. doi:10.1002/2015GL065912. (anglicky) Archivováno 13. 8. 2021 na Wayback Machine.

wiley.com (Global: 150th place; Czech: 67th place)

agupubs.onlinelibrary.wiley.com

  • GOODE, P. R.; QIU, J.; YURCHYSHYN, V. Earthshine observations of the Earth's reflectance. Geophysical Research Letters. 2001-05, roč. 28, čís. 9, s. 1671–1674. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2000GL012580. (anglicky)
  • HAPKE, Bruce. Bidirectional reflectance spectroscopy: 1. Theory. Journal of Geophysical Research: Solid Earth. 1981, roč. 86, čís. B4, s. 3039–3054. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/JB086iB04p03039. (anglicky)
  • WARREN, Stephen G.; BRANDT, Richard E.; GRENFELL, Thomas C. Snowball Earth: Ice thickness on the tropical ocean. Journal of Geophysical Research: Oceans. 2002, roč. 107, čís. C10, s. 31–1–31-18. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/2001JC001123. (anglicky)
  • GOODE, P. R.; PALLÉ, E.; SHOUMKO, A. Earth's Albedo 1998–2017 as Measured From Earthshine. Geophysical Research Letters. 2021-09-08, roč. 48, čís. 17. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2021GL094888. (anglicky)
  • CAMPRA, Pablo; GARCIA, Monica; CANTON, Yolanda. Surface temperature cooling trends and negative radiative forcing due to land use change toward greenhouse farming in southeastern Spain. Journal of Geophysical Research: Atmospheres. 2008-09-27, roč. 113, čís. D18. Dostupné online [cit. 2024-12-25]. ISSN 0148-0227. doi:10.1029/2008JD009912. (anglicky)

onlinelibrary.wiley.com

wolfram.com (Global: 1,091st place; Czech: 940th place)

scienceworld.wolfram.com

  • WEISSTEIN, Eric W. Albedo -- from Eric Weisstein's World of Physics. scienceworld.wolfram.com [online]. [cit. 2024-12-25]. Dostupné online. (anglicky)

worldcat.org (Global: 4th place; Czech: 2nd place)

  • Albedo observations of the Earth’s surface for climate research. Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences. 1983-07-18, roč. 309, čís. 1508, s. 285–294. Dostupné online [cit. 2024-12-09]. ISSN 0080-4614. doi:10.1098/rsta.1983.0042. (anglicky)
  • BUDYKO, M. I. The effect of solar radiation variations on the climate of the Earth. Tellus A: Dynamic Meteorology and Oceanography. 1969-01-01, roč. 21, čís. 5, s. 611. Dostupné online [cit. 2024-12-09]. ISSN 1600-0870. doi:10.3402/tellusa.v21i5.10109.[nedostupný zdroj]
  • GOODE, P. R.; QIU, J.; YURCHYSHYN, V. Earthshine observations of the Earth's reflectance. Geophysical Research Letters. 2001-05, roč. 28, čís. 9, s. 1671–1674. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2000GL012580. (anglicky)
  • HAPKE, Bruce. Bidirectional reflectance spectroscopy: 1. Theory. Journal of Geophysical Research: Solid Earth. 1981, roč. 86, čís. B4, s. 3039–3054. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/JB086iB04p03039. (anglicky)
  • WARREN, Stephen G.; BRANDT, Richard E.; GRENFELL, Thomas C. Snowball Earth: Ice thickness on the tropical ocean. Journal of Geophysical Research: Oceans. 2002, roč. 107, čís. C10, s. 31–1–31-18. Dostupné online [cit. 2024-12-25]. ISSN 2156-2202. doi:10.1029/2001JC001123. (anglicky)
  • ROMANOVA, V.; LOHMANN, G.; GROSFELD, K. Effect of land albedo, CO2, orography, and oceanic heat transport on extreme climates. Climate of the Past. 2006-06-30, roč. 2, čís. 1, s. 31–42. Dostupné online [cit. 2024-12-25]. ISSN 1814-9324. doi:10.5194/cp-2-31-2006. (anglicky)
  • SMITH, Robin S.; DUBOIS, Clotilde; MAROTZKE, Jochem. Global Climate and Ocean Circulation on an Aquaplanet Ocean–Atmosphere General Circulation Model. Journal of Climate. 2006-09-15, roč. 19, čís. 18, s. 4719–4737. Dostupné online [cit. 2024-12-25]. ISSN 0894-8755. doi:10.1175/JCLI3874.1. (anglicky)
  • GOODE, P. R.; PALLÉ, E.; SHOUMKO, A. Earth's Albedo 1998–2017 as Measured From Earthshine. Geophysical Research Letters. 2021-09-08, roč. 48, čís. 17. Dostupné online [cit. 2024-12-25]. ISSN 0094-8276. doi:10.1029/2021GL094888. (anglicky)
  • SAGAN, Carl; TOON, Owen B.; POLLACK, James B. Anthropogenic Albedo Changes and the Earth's Climate. Science. 1979-12-21, roč. 206, čís. 4425, s. 1363–1368. Dostupné online [cit. 2024-12-25]. ISSN 0036-8075. doi:10.1126/science.206.4425.1363. (anglicky)
  • CAMPRA, Pablo; GARCIA, Monica; CANTON, Yolanda. Surface temperature cooling trends and negative radiative forcing due to land use change toward greenhouse farming in southeastern Spain. Journal of Geophysical Research: Atmospheres. 2008-09-27, roč. 113, čís. D18. Dostupné online [cit. 2024-12-25]. ISSN 0148-0227. doi:10.1029/2008JD009912. (anglicky)
  • OUYANG, Zutao; SCIUSCO, Pietro; JIAO, Tong. Albedo changes caused by future urbanization contribute to global warming. Nature Communications. 2022-07-01, roč. 13, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-022-31558-z. PMID 35778380. (anglicky)
  • WANG, Tong; WU, Yi; SHI, Lan. A structural polymer for highly efficient all-day passive radiative cooling. Nature Communications. 2021-01-14, roč. 12, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2041-1723. doi:10.1038/s41467-020-20646-7. PMID 33446648. (anglicky)
  • CHEN, Meijie; PANG, Dan; CHEN, Xingyu. Passive daytime radiative cooling: Fundamentals, material designs, and applications. EcoMat. 2022-01, roč. 4, čís. 1. Dostupné online [cit. 2024-12-25]. ISSN 2567-3173. doi:10.1002/eom2.12153. (anglicky)
  • MUÑOZ, Ivan; CAMPRA, Pablo; FERNÁNDEZ-ALBA, Amadeo R. Including CO2-emission equivalence of changes in land surface albedo in life cycle assessment. Methodology and case study on greenhouse agriculture. The International Journal of Life Cycle Assessment. 2010-08, roč. 15, čís. 7, s. 672–681. Dostupné online [cit. 2024-12-25]. ISSN 0948-3349. doi:10.1007/s11367-010-0202-5. (anglicky)
  • POLASHENSKI, Chris M.; DIBB, Jack E.; FLANNER, Mark G. Neither dust nor black carbon causing apparent albedo decline in Greenland's dry snow zone: Implications for MODIS C5 surface reflectance. Geophysical Research Letters. 2015, roč. 42, čís. 21, s. 9319–9327. Dostupné v archivu pořízeném dne 2021-08-13. ISSN 1944-8007. doi:10.1002/2015GL065912. (anglicky) Archivováno 13. 8. 2021 na Wayback Machine.