Linked from
The 195 pages that link to Climate change, each with the reason it gives.
Carbon dioxideRelated: Rising CO₂ is a major driver of recent global warming.
PleistoceneRelated: Rapid Pleistocene climate transitions may have stressed vulnerable species and habitats.
GlobalizationRelated: Global production and transport link economic integration to emissions, while climate impacts cross borders.
Carbon cycleRelated: Human-driven carbon transfers increase greenhouse-gas concentrations and alter climate.
PhotosynthesisRelated: Photosynthetic carbon uptake affects atmospheric carbon dioxide, though it does not offset emissions by itself.
CapitalismRelated: Fossil-fuel-dependent production and consumption contribute substantially to greenhouse-gas emissions.
Biodiversity lossRelated: Rapid environmental shifts can outpace species’ ability to adapt or move.
Nitrogen cycleRelated: Warming, altered rainfall, and changing oxygen conditions can shift microbial nitrogen processes.
Endangered speciesRelated: Rapid environmental shifts can outpace species’ ability to adapt or move.
National parkRelated: Changing climates can shift habitats beyond the boundaries of established parks.
Thermohaline circulationRelated: Warming and freshwater input can alter the density contrasts that sustain overturning.
PhenologyRelated: Climate change alters the seasonal conditions against which biological timing is measured.
Relative humidityRelated: Warming raises saturation vapor pressure, complicating comparisons of relative humidity across time.
Pleistocene megafaunaRelated: Warming and habitat shifts altered the environments megafauna depended on.
Biogeochemical cycleRelated: Carbon-cycle imbalances increase greenhouse gases and alter climate.
EcologyRelated: It alters habitats and ecological relationships across the globe.
EarthRelated: Human emissions are rapidly altering the climate system that sustains societies and ecosystems.
HerbariumRelated: Historical specimens provide evidence for climate-related changes in plant ranges and timing.
EcosystemRelated: Climate change alters temperatures and water regimes that shape ecosystem processes and species ranges.
Fossil fuelRelated: Carbon dioxide from fossil-fuel use is the largest source of human-caused greenhouse-gas emissions.
Land degradationRelated: Degraded land can release stored carbon, while climate stress can intensify land decline.
ClimateRelated: Climate change describes sustained shifts in the patterns climate records measure.
Carbon sinkRelated: Weaker sinks leave more emitted carbon dioxide in the atmosphere, intensifying warming.
SeabirdRelated: Warming and changing ocean conditions alter prey distributions and the timing of breeding.
StomataRelated: Changing atmospheric carbon dioxide and drought patterns affect stomatal function and abundance.
Desert ecologyRelated: Warming and shifting rainfall can alter desert species ranges, drought stress, and fire regimes.
Köppen climate classificationRelated: Comparing classifications across periods shows how climate-zone boundaries may shift.
Water cycleRelated: Warming intensifies evaporation and changes precipitation patterns and snow storage.
ArecaceaeRelated: Changing heat and rainfall can alter palm distributions and the habitats they depend on.
CarbonRelated: Changes in carbon dioxide concentrations are a central driver of recent global warming.
Amphibian declineRelated: Changing temperature and rainfall can alter breeding conditions and intensify other stressors.
Tragedy of the commonsRelated: The atmosphere's limited capacity to absorb emissions without dangerous warming is shared globally.
Environmental historyRelated: Historical perspective traces the institutions and energy systems behind modern warming.
Temperate rainforestRelated: Changing temperatures and rainfall can alter species ranges, drought stress, and fire risk.
Antarctic Bottom WaterRelated: Warming and freshening can alter the dense-water formation that sustains Antarctic Bottom Water.
Insect declineRelated: Warming and altered seasonal conditions can shift insect ranges, life cycles, and survival.
MegafaunaRelated: Rapid environmental change altered habitats and resources during many megafaunal declines.
Bark beetleRelated: Warming can influence beetle survival, development, and the extent of some outbreaks.
Cloud forestRelated: Warming can lift cloud bases and alter the moisture regime on which these forests depend.
Biological carbon pumpRelated: Changes in temperature, stratification, and ecosystems can alter pump strength and carbon storage.
Deep timeRelated: Ancient climate records reveal changes far longer than instrumental measurements.
Physical geographyRelated: Its effects vary across regions and interact with water, ecosystems, and landforms.
River incisionRelated: Changing runoff and sediment production can alter incision, though their effects may oppose one another.
Carboniferous rainforest collapseRelated: Shifts toward drier conditions fragmented humid forest habitats.
Tropical dry forestRelated: Changing rainfall and drought intensity can shift forest boundaries and raise tree mortality.
Aquatic ecosystemRelated: Warming and altered rainfall change aquatic temperatures, flows, and species ranges.
Holocene extinctionRelated: Human-driven warming increasingly shifts habitats faster than some species can adapt or move.
Seabird conservationRelated: Warming seas alter prey availability, while rising waters threaten low-lying nesting sites.
TreelineRelated: Recent warming can alter the conditions that maintain treeline.
Cave ecologyRelated: Changing temperatures and recharge can alter the stable conditions many cave organisms depend on.