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The global average and combined land and ocean surface temperature show a warming of 1.09 °C (range: 0.95 to 1.20 °C) from 1850–1900 to 2011–2020, based on multiple independently produced datasets. [8]: 5 The trend is faster since the 1970s than in any other 50-year period over at least the last 2000 years.
[5] [6] As a result, global warming of about 1.2 °C (2.2 °F) has occurred since the Industrial Revolution, [7] with the global average surface temperature increasing at a rate of 0.18 °C (0.32 °F) per decade since 1981. [8] All objects with a temperature above absolute zero emit thermal radiation.
Environmental science is an interdisciplinary academic field that integrates physics, biology, meteorology, mathematics and geography (including ecology, chemistry, plant science, zoology, mineralogy, oceanography, limnology, soil science, geology and physical geography, and atmospheric science) to the study of the environment, and the solution of environmental problems.
On a scale of 1 out of 7, where higher numbers indicated greater disagreement, "global warming is already underway" had a mean rating of 3.4, and "global warming will occur in the future" had an even greater agreement of 2.6 Surveyed scientists had less confidence in the accuracy of contemporary climate models, rating their ability to make ...
Some climate change effects: wildfire caused by heat and dryness, bleached coral caused by ocean acidification and heating, environmental migration caused by desertification, and coastal flooding caused by storms and sea level rise. Effects of climate change are well documented and growing for Earth's natural environment and human societies. Changes to the climate system include an overall ...
Water vapour does contribute to anthropogenic global warming, but as the GWP is defined, it is negligible for H 2 O: an estimate gives a 100-year GWP between -0.001 and 0.0005. [27] H 2 O can function as a greenhouse gas because it has a profound infrared absorption spectrum with more and broader absorption bands than CO 2. Its concentration in ...
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The average rate of energy captured by global photosynthesis is approximately 130 terawatts, [6] [7] [8] which is about eight times the total power consumption of human civilization. [9] Photosynthetic organisms also convert around 100–115 billion tons (91–104 Pg petagrams , or billions of metric tons), of carbon into biomass per year.