This editorial is the product of the Progress in Physical Geography lecture at the April 2013 meeting of the Association of American Geographers. The paper was presented by George Malanson, the North American Editor, and the co-authors presented critiques based on a draft. Subsequently, the manuscript was developed and revised based on discussion at the meeting and additional exchange among the co-authors.
AbrahamsADAnthonyJPWainwrightJ (1995) Effects of vegetation change on interrill runoff and erosion, Walnut Gulch, southern Arizona. Geomorphology13: 37–48.
2.
AbrahartRJAnctilFCoulibalyP. (2012) Two decades of anarchy? Energing themes and outstanding challenges for neural network river forecasting. Progress in Physical Geography36: 480–513.
3.
AgassizL (1840) Etudes sur les Glaciers. Neuchatel: Jent et Gassmann. Reprinted in 2012 as Studies on Glaciers. Cambridge: Cambridge University Press.
4.
AgnewJ (1993) Representing space: Space, scale and culture in social science. In: DuncanJLeyD (eds) Place/Culture/Representation. London: Routledge, 251–271.
5.
ArbogastAEJohnsonWC (1998) Late-Quaternary landscape response to environmental change in south-central Kansas. Annals of the Association of American Geographers88: 126–145.
6.
BakerRGFredlundGGMandelRD. (2000) Holocene environments of the central Great Plains: Multi-proxy evidence from alluvial sequences, southeastern Nebraska. Quaternary International67: 75–88.
7.
BendixJ (1997) Flood disturbance and the distribution of riparian species diversity. Geographical Review87: 468–483.
8.
BendixJCowellCM (2010) Fire, floods and woody debris: Interactions between biotic and geomorphic processes. Geomorphology116: 297–304.
9.
BendixJHuppCR (2000) Hydrological and geomorphological impacts on riparian plant communities. Hydrological Processes14: 22977–2990.
10.
BeringerJHutleyLBTapperNJ. (2007) Savanna fires and their impact on net ecosystem productivity in North Australia. Global Change Biology13: 990–1004.
11.
BraggOMBlackARDuckRW. (2005) Approaching the physical-biological interface in rivers: A review of methods for ecological evaluation of flow regimes. Progress in Physical Geography29: 506–531.
12.
BrierleyGJBrooksAPFryirsK. (2005) Did humid-temperate rivers in the Old and New Worlds respond differently to clearance of riparian vegetation and removal of woody debris?Progress in Physical Geography29: 27–49.
13.
BrocklehurstSH (2010) Tectonics and geomorphology. Progress in Physical Geography34: 357–383.
14.
BurtTPPinayG (2005) Linking hydrology and biogeochemistry in complex landscapes. Progress in Physical Geography29: 297–316.
15.
ButlerDRMalansonGP (1995) Sedimentation rates and patterns in beaver ponds in a mountain environment. Geomorphology13: 255–269.
16.
ButlerDRMalansonGP (1998) The geomorphic influences of beaver dams and failures of beaver dams. Geomorphology71: 48–60.
17.
ButlerDRMalansonGPBekkerMF. (2003) Lithologic, structural, and geomorphic controls on ribbon forest patterns. Geomorphology55: 203–217.
18.
ButlerDRMalansonGPWalshSJ. (2007) Influences of geomorphology and geology on alpine treeline in the American West – more important than climatic influences?Physical Geography28: 434–450.
19.
CaffreyMADoernerJP (2012) A 7000 year record of environmental change, Bear Lake, Rocky Mountain National Park, USA. Physical Geography33: 438–456.
20.
CalverAAndersonMG (2004) Conceptual framework for the persistence of flood-initiated geomorphological features. Transactions of the Institute of British Geographers29: 129–137.
21.
ChappellARenzulloLJRaupachTH. (2013) Evaluating geostatistical methods of blending satellite and gauge data to estimate near real-time daily rainfall for Australia. Journal of Hydrology493: 105–114.
22.
ChenHZhuQAPengCH. (2013) Methane emissions from rice paddies natural wetlands, lakes in China: Synthesis new estimate. Global Change Biology19: 19–32.
23.
ChhetriNEasterlingWETerandoA. (2010) Modeling path dependence in agricultural adaptation to climate variability and change. Annals of the Association of American Geographers100: 894–907.
24.
ChoiW (2008) Catchment-scale hydrological response to climate-land-use combined scenarios: A case study for the Kishwaukee River basin, Illinois. Physical Geography29: 79–99.
25.
ChorleyRJ (1978) Bases for theory in geomorphology. In: EmbletonCBrunsdenDJonesDKC (eds) Geomorphology; Present Problems and Future Prospects. Oxford: Oxford University Press, 1–13.
26.
ChorleyRJKennedyBA (1971) Physical Geography: A Systems Approach. London: Prentice-Hall.
27.
ClarkCDHughesALCGreenwoodSL. (2012) Pattern and timing of retreat of the last British-Irish Ice Sheet. Quaternary Science Reviews44: 112–146.
28.
CliffordN (2009) Physical geography. In: GregoryDJJohnstonRPrattG. (eds) The Dictionary of Human Geography. Chichester: Wiley-Blackwell, 531–538.
29.
CliffordN (2011) Rivers and drainage basins. In: AgnewJALivingstoneDN (eds) The SAGE Handbook of Geographical Knowledge. London: SAGE, 502–527.
30.
CliffordNRichardsK (2005) Earth system science: An oxymoron?Earth Surface Processes and Landforms30: 379–383.
31.
ConstantinescuGMiyawakiSRhoadsB. (2011) Structure of turbulent flow at a river confluence with momentum and velocity ratios close to 1: Insight provided by an eddy-resolving numerical simulation. Water Resources Research47: W05507.
32.
CorenblitDTabacchiESteigerJ. (2007) Reciprocal interactions and adjustments between fluvial landforms and vegetation dynamics in river corridors: A review of complementary approaches. Earth Science Reviews84: 56–86.
33.
CraigMRMalansonGP (1993) River flow events and the colonization of point bars in Iowa. Physical Geography14: 436–448.
34.
CsikiSRhoadsBL (2010) Hydraulic and geomorphological effects of run-of-river dams. Progress in Physical Geography34: 755–780.
35.
DadsonS (2010) Geomorphology and Earth system science. Progress in Physical Geography34: 385–398.
36.
DanielsLDVeblenTT (2000) ENSO effects on temperature and precipitation of the Patagonian-Andean region: Implications for biogeography. Physical Geography21: 223–243.
37.
DayCA (2009) Modelling impacts of climate change on snowmelt runoff generation and streamflow across western US mountain basins: A review of techniques and applications for water resource management. Progress in Physical Geography33: 614–633.
38.
DentenerFJCarmichaelGRZhangY. (1996) Role of mineral aerosol as a reactive surface in the global troposphere. Journal of Geophysical Research – Atmospheres101: 22869–22889.
39.
DeWitt (2013) Complications of topographic change detection: A case study in the southern WV coalfields. Abstracts, Association of American Geographers Annual Meeting, Los Angeles, 9–13 April. Washington, DC: Association of American Geographers.
40.
DiolaiutiGAMaragnoDD’AgataC. (2011) Glacier retreat and climate change: Documenting the last 50 years of Alpine glacier history from area and geometry changes of Dosde Piazzi glaciers (Lombardy Alps, Italy). Progress in Physical Geography35: 161–182.
41.
DlugossVFienerPVan OostK. (2012) Model based analysis of lateral and vertical soil carbon fluxes induced by soil redistribution processes in a small agricultural catchment. Earth Surface Processes and Landforms37: 193–208.
42.
DullRANevleRJWoodsWI. (2010) The Columbian Encounter and the Little Ice Age: Abrupt land use change, fire, and greenhouse forcing. Annals of the Association of American Geographers100: 755–771.
43.
EllisAWBartonNP (2012) Characterizing the north Pacific jet stream for understanding historical variability in western United States winter precipitation. Physical Geography33: 105–128.
44.
FeddemaJJOlesonKWBonanGB. (2005) The importance of land-cover change in simulating future climates. Science310: 1674–1678.
45.
FeketeBMVorosmartyCJRoadsJO. (2004) Uncertainties in precipitation and their impacts on runoff estimates. Journal of Climate17: 294–304.
46.
FennemanN (1919) The circumference of geography. Annals of the Association of American Geographers9: 3–11.
47.
FinlaysonDPMontgomeryDRHalletB (2002) Spatial coincidence of rapid inferred erosion with young metamorphic massifs in the Himalayas. Geology30: 219–222.
48.
FountainAGWalderJS (1998) Water flow through temperate glaciers. Reviews of Geophysics36: 299–328.
49.
FranklinJ (2010) Mapping Species Distributions: Spatial Inference and Prediction. Cambridge: Cambridge University Press.
50.
FryirsKBrierleyG (2000) A geomorphic approach to the identification of river recovery potential. Physical Geography21: 244–277.
51.
GoldblumD (2009) Sensitivity of corn and soybean yield in Illinois to air temperature and precipitation: The potential impact of future climate change. Physical Geography30: 27–42.
52.
GoodrichGBWalkerJM (2011) The influence of the PDO on winter precipitation during high-and low-index conditions in the eastern United States. Physical Geography32: 295–312.
53.
GoudieASMiddletonNJ (2001) Saharan dust storms: Nature and consequences. Earth Science Reviews56: 179–204.
54.
GrafWL (1975) Impact of suburbanization on fluvial geomorphology. Water Resources Research11: 690–692.
55.
GrafWL (1978) Fluvial adjustments to spread of tamarisk in Colorado Plateau region. Geological Society of America Bulletin89: 1491–1501.
56.
GrafWL (1985) The Colorado River. Resource Publications in Geography. Washington, DC: Association of American Geographers.
57.
GrafWL (2001) Damage control: Restoring the physical integrity of America’s rivers. Annals of the Association of American Geographers91: 1–27.
58.
GrangerOE (1983) The hydroclimatology of a developing tropical island: A water resources perspective. Annals of the Association of American Geographers73: 183–205.
59.
GrantRFHumphreysERLafleurPM. (2011) Ecological controls on net ecosystem productivity of a mesic arctic tundra under current and future climates. Journal of Geophysical Research – Biogeosciences116: G01031.
60.
GrayM (2004) Geodiversity: Valuing and Conserving Abiotic Nature. New York: Wiley.
61.
GregoryKJ (1973) Changing river basins. The Geographical Journal142: 237–247.
62.
GregoryKJBenitoGDownsPW (2008) Applying fluvial geomorphology to river channel management: Background for progress towards a paleohydrology protocol. Geomorphology98: 153–172.
63.
GurnellAM (1998) The hydrogeomorphological effects of beaver dam-building activity. Progress in Physical Geography22: 167–189.
64.
GurnellAMGregoryKJ (1987) Vegetation characteristics and the prediction of runoff: Analysis of an experiment in the New Forest, Hampshire. Hydrological Processes1: 125–142.
65.
HallMHPFagreDB (2003) Modeled climate-induced glacier change in Glacier National Park, 1850–2100. BioScience53: 131–140.
66.
HardenCP (2012) Framing and reframing questions of human-environment interactions. Annals of the Association of American Geographers102: 737–747.
67.
HardenCP (forthcoming) The human-landscape system: Challenges for geomorphologists. Physical Geography.
68.
HarveyGLMoorhouseTPCliffordNJ. (2011) Evaluating the role of invasive aquatic species as drivers of fine sediment-related river management problems: The case of the signal crayfish (Pacifastacus leniusculus). Progress in Physical Geography35: 517–533.
69.
HespP (2002) Foredunes and blowouts: Initiation, geomorphology and dynamics. Geomorphology48: 245–268.
70.
HockR (2005) Glacier melt: A review of processes and their modelling. Progress in Physical Geography29: 362–391.
71.
HoldenJChapmanPJLabadzJC (2004) Artificial drainage of peatlands: Hydrological and hydrochemical process and wetland restoration. Progress in Physical Geography28: 95–123.
72.
HolderCD (2006) The hydrological significance of cloud forests in the Sierra de las Minas Biosphere Reserve, Guatemala. Geoforum37: 82–93.
73.
HoytWGLangbeinWB (1944) The yield of streams as a measure of climatic fluctuations. Geographical Review34: 218–234.
74.
HughesFMR (1997) Floodplain biogeomorphology. Progress in Physical Geography21: 501–529.
75.
JamesLA (2003) Glacial erosion and geomorphology in the northwest Sierra Nevada, CA. Geomorphology55: 283–303.
76.
JohnstonRJ (1983) Resource analysis, resource management and the integration of physical and human geography. Progress in Physical Geography7: 127–146.
77.
JusticeCOVermoteETownshendJRG. (1998) The Moderate Resolution Imaging Spectroradiometer (MODIS): Land remote sensing for global change research. IEEE Transactions on Geoscience and Remote Sensing36: 1228–1249.
78.
KeimBDFontenotRTebaldiC. (2011) Hydroclimatology of the US Gulf Coast under global climate change scenarios. Physical Geography32: 561–582.
79.
KiageLMLiuK-B (2006) Late Quaternary paleoenvironmental changes in East Africa: A review of multiproxy evidence from palynology, lake sediments, and associated records. Progress in Physical Geography30: 633–658.
80.
KingstonDGLawlerDMMcGregorGR (2006) Linkages between atmospheric circulation, climate and streamflow in the northern North Atlantic: Research prospects. Progress in Physical Geography30: 143–174.
81.
KljunNBlackTAGriffisTJ. (2006) Response of net ecosystem productivity of three boreal forest stands to drought. Ecosystems9: 1128–1144.
82.
KnoxJC (1972) Valley alluviation in southwestern Wisconsin. Annals of the Association of American Geographers62: 401–410.
83.
KnoxJC (1977) Human impacts on Wisconsin stream channels. Annals of the Association of American Geographers67: 323–342.
84.
KnoxJC (1993) Large increases in flood magnitude in response to modest changes in climate. Nature361: 430–432.
85.
KnoxJC (2006) Floodplain sedimentation in the Upper Mississippi Valley: Natural versus human accelerated. Geomorphology79: 286–310.
86.
KonradCE (1998) A flood climatology of the lower Roanoke River Basin in North Carolina. Physical Geography19: 15–34.
87.
KuchlerAW (1949) A physiognomic classification of vegetation. Annals of the Association of American Geographers39: 201–210.
88.
KuhnNJHoffmannTSchwanghartW. (2009) Agricultural soil erosion and global carbon cycle: Controversy over?Earth Surface Processes and Landforms34: 1033–1038.
89.
LaneSNRichardsKS (1997) Linking river channel form and process: Time, space and causality revisited. Earth Surface Processes and Landforms22: 249–260.
90.
LarsenMC (2000) Analysis of 20th century rainfall and streamflow to characterise drought and water resources in Puerto Rico. Physical Geography21: 494–521.
91.
LeeJATchakerianVP (1995) Magnitude and frequency of blowing dust on the Southern High Plains of the United States, 1947–1989. Annals of the Association of American Geographers85: 684–693.
92.
LeviaDFJrFrostEE (2006) Variability of throughfall volume and solute inputs in wooded ecosystems. Progress in Physical Geography30: 605–632.
93.
LuusKAKellyREJ (2008) Assessing productivity of vegetation in the Amazon using remote sensing and modelling. Progress in Physical Geography32: 363–377.
94.
McCabeGJFountainAG (2013) Glacier variability in the conterminous United States during the twentieth century. Climatic Change116: 565–577.
95.
MacdonaldNChesterDSangsterH. (2012) The significance of Gilbert F. White’s 1945 paper ‘Human adjustment to floods’ in the development of risk and hazard management. Progress in Physical Geography36: 125–133.
96.
MacklinMGBenitoGGregoryKJ. (2006) Past hydrological events reflected in the Holocene fluvial record of Europe. Catena66: 145–154.
97.
McPhersonRA (2007) A review of vegetation-atmosphere interactions and their influences on mesoscale phenomena. Progress in Physical Geography31: 261–285.
98.
MaetensWVanmaerckeMPoesenJ. (2012) Effects of land use on annual runoff and soil loss in Europe and the Mediterranean: A meta-analysis of plot data. Progress in Physical Geography36: 599–653.
99.
MalansonGP (1993) Riparian Landscapes. Cambridge: Cambridge University Press.
100.
MalansonGP (1999) Considering complexity. Annals, Association of American Geographers89: 746–753.
MalansonGP (forthcoming) People affect biogeography and vice-versa: A geographical review. Physical Geography.
104.
MalansonGPKupferJA (1993) Simulated fate of leaf litter and woody debris at a riparian cutbank. Canadian Journal of Forest Research23: 582–590.
105.
MarshGP (1864) Man and Nature. Cambridge: Harvard University Press (1965 reprint).
106.
MartinYEJohnsonEA (2012) Biogeosciences survey: Studying interactions of the biosphere with the lithosphere, hydrosphere and atmosphere. Progress in Physical Geography36: 833–852.
107.
MatherJR (1991) A history of hydroclimatology. Physical Geography12: 260–273.
108.
MearnsLOArrittRBinerS. (2012) The North American Regional Climate Change Assessment Program: Overview of phase I results. Bulletin of the American Meteorological Society93: 1337–1362.
109.
MearnsLORosenzweigCGoldbergR (1996) The effect of changes in daily and interannual climatic variability on ceres-wheat: A sensitivity study. Climatic Change32: 257–292.
110.
MigonP (2009) Are any granite landscapes distinctive of the humid tropics? Reconsidering multiconvex topographies. Singapore Journal of Tropical Geography30: 327–342.
111.
MooreTRRouletNT (1993) Methane flux: Water table relations in northern wetlands. Geophysical Research Letters20: 587–590.
112.
MoserKA (2004) Paleolimnology and the frontiers of biogeography. Physical Geography25: 453–480.
113.
MoserKAMacDonaldGMSmolJP (1996) Applications of freshwater diatoms to geographical research. Progress in Physical Geography20: 21–52.
114.
MurraySJWatsonIMPrenticeIC (2013) The use of dynamic global vegetation models for simulating hydrology and the potential integration of satellite observations. Progress in Physical Geography37: 63–97.
115.
MyneniRBKeelingCDTuckerCJ. (1997) Increased plant growth in the northern high latitudes from 1981 to 1991. Nature386: 698–702.
116.
NadeuEBerheAADe VenteJ. (2012) Erosion, deposition and replacement of soil organic carbon in Mediterranean catchments: A geomorphological, isotopic and land use change approach. Biogeosciences9: 1099–1111.
117.
NicholsGE (1923) The distribution of vegetation in the United States, as related to climatic conditions. Geographical Review13: 154–156.
118.
NicklEWillmottCJMatsuuraK. (2010) Changes in annual land-surface precipitation over the twentieth and early twenty-first century. Annals of the Association of American Geographers100: 729–739.
119.
OdoniNALaneSN (2011) The significance of models in geomorphology: From concepts to experiments. In: GregoryKJGoudieAS (eds) The SAGE Handbook of Geomorphology. London: SAGE, 154–173.
120.
OhmuraAReehN (1991) New precipitation and accumulation maps for Greenland. Journal of Glaciology37: 140–148.
121.
PanYDBirdseyRAFangJY. (2011) A large and persistent carbon sink in the world’s forests. Science333: 988–993.
122.
PeelMC (2009) Hydrology: Catchment vegetation and runoff. Progress in Physical Geography33: 837–844.
123.
PiegayHGurnellAM (1997) Large woody debris and river geomorphological pattern: Examples from S.E. France and S. England. Geomorphology19: 99–116.
124.
PitmanAJ (2003) The evolution of, and revolution in, land surface schemes designed for climate models. International Journal of Climatology23: 479–510.
125.
PostAMotykaR (1995) Taku and Le Conte glaciers, Alaska: Calving speed control of late-Holocene asynchronous advances and retreats. Physical Geography16: 59–82.
126.
PostDPMalansonGP (1994) Reinterpretation of relations between vegetation removal and water yield. Geographical Bulletin36: 94–102.
127.
PowellDM (1998) Patterns and processes of sediment sorting in gravel-bed rivers. Progress in Physical Geography22: 1–32.
128.
QuineTAVan OostK (2007) Quantifying carbon sequestration as a result of soil erosion and deposition: Retrospective assessment using caesium-137 and carbon inventories. Global Change Biology13: 2610–2625.
129.
ReinemannSAPorinchuDFBloomAM. (2009) A multi-proxy paleolimnological reconstruction of Holocene climate conditions in the Great Basin, United States. Quaternary Research72: 347–358.
130.
ReslerLMButlerDRMalansonGP (2005) Topographic shelter and conifer establishment and mortality in an alpine environment, Glacier National Park, Montana. Physical Geography26: 112–125.
131.
RetchlessDFreyNWangC. (forthcoming) Climate extremes in the United States: Recent research by physical geographers. Physical Geography.
132.
RhoadsBLKenworthyST (1995) Flow structure at an asymmetrical stream confluence. Geomorphology11: 273–293.
133.
RichardsKS (1982) Rivers, Form and Process in Alluvial Channels. London: Methuen.
134.
RichardsKSCliffordN (2008) Science, systems and geomorphologies: Why LESS may be more. Earth Surface Processes and Landforms33: 1323–1340.
135.
RohliRVWilkersonJLVinesNA (2008) Hydroclimatological characteristics and atmospheric circulation anomalies associated with the Gulf of Mexico hypoxic zone. Physical Geography29: 404–423.
136.
RouletNTAshRMooreTR (1992) Low boreal wetlands and a source of atmospheric methane. Journal of Geophysical Research – Atmospheres97: 3739–3749.
137.
RoyAGLamarreH (2011) Fluids, flows and fluxes in geomorphology. In: GregoryKJGoudieAS (eds) The SAGE Handbook of Geomorphology. London: SAGE, 310–325.
138.
SalmunHMolodA (2006) Progress in modeling the impact of land cover change on the global climate. Progress in Physical Geography30: 737–749.
139.
SchellnhuberHJ (1999) ‘Earth system’ analysis and the second Copernican revolution. Nature402: C19–C23.
ScullP (2007) Changes in soil temperature associated with reforestation in central New York state. Physical Geography28: 360–373.
143.
ShermanDJBauerBO (1993) Dynamics of beach-dune systems. Progress in Physical Geography17: 413–447.
144.
SitchSSmithBPrenticeIC. (2003) Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model. Global Change Biology9: 161–185.
145.
SmithSVRenwickWHBuddemeierRW. (2001) Budgets of soil erosion and deposition for sediments and sedimentary organic carbon across the conterminous United States. Global Biogeochemical Cycles15: 697–707.
146.
SmithSVSleezerRORenwickWH. (2005) Fates of eroded soil organic carbon: Mississippi basin case study. Ecological Applications15: 1929–1940.
147.
StillCJBerryJACollatzGJ. (2003) Global distribution of C-3 and C-4 vegetation: Carbon cycle implications. Global Biogeochemical Cycles17: 1006.
148.
StoddartD (1965) Geography and the ecological approach: The ecosystem as a geographic principle and method. Geography50: 242–251.
149.
TchakerianVP (1991) Late Quaternary Aeolian geomorphology of the Dale Lake sand sheet, southern Mojave Desert, California. Physical Geography12: 347–369.
150.
TerjungWH (1976) Climatology for geographers. Annals of the Association of American Geographers66(2): 199–220.
151.
ThompsonJR (2004) Simulation of wetland water-level manipulation using coupled hydrological/hydraulic modeling. Physical Geography25: 39–67.
152.
ThornthwaiteCW (1953) Operations research in agriculture. Journal of the Operations Research Society of America1(2): 33–38.
153.
TingstadAHMoserKAMacDonaldGM. (2011) A ∼13,000-year paleolimnological record from the Uinta Mountains, Utah, inferred from diatoms and loss-on-ignition analysis. Quaternary International235: 48–56.
154.
TodhunterPE (2001) A hydroclimatological analysis of the Red River of the north snowmeelt flood catastrophe of 1997. Journal of the American Water Resources Association37: 1263–1278.
155.
ToothSMcCarthyTS (2007) Wetlands in drylands: Geomorphological and sedimentological characteristics, with emphasis on examples from southern Africa. Progress in Physical Geography31: 3–41.
156.
TrimbleSW (1981) Changes in sediment storage in the Coon Creek Basin, Driftless Area, Wisconsin, 1853 to 1975. Science214: 181–183.
157.
TrimbleSW (1983) A sediment budget for Coon Creek Basin in the Driftless Area, Wisconsin, 1853–1977. American Journal of Science283: 454–474.
158.
TrimbleSW (1999) Decreased rates of alluvial sediment storage in the Coon Creek Basin, Wisconsin, 1975–93. Science285: 1244–1246.
159.
TrimbleSW (2009) Fluvial processes, morphology and sediment budgets in the Coon Creek Basin, WI, USA, 1975–1993. Geomorphology108: 8–23.
160.
TrumboreSEChadwickOAAmundsonR (1996) Rapid exchange between soil carbon and atmospheric carbon dioxide driven by temperature change. Science272: 393–396.
161.
VannJH (1959) Landform-vegetation relationships in the Atrato Delta. Annals of the Association of American Geographers49: 345–360.
162.
Van OostKQuineTAGoversG. (2007) The impact of agricultural soil erosion on the global carbon cycle. Science318: 626–629.
163.
VilesH (2011) Biogeomorphology. In: GregoryKJGoudieAS (eds) The SAGE Handbook of Geomorphology. London: SAGE, 246–259.
164.
von HumboldtA (1845) Kosmos, Entwirf einer physischen Weltbeschreibung, Volume 1. Stuttgart: JG Cotta. 1997 translation, Cosmos, by Otte EC. Baltimore, MD: Johns Hopkins University Press.
165.
von HumboldtABonplandA (1807) Essai sur la géographie des plantes. Paris: Fr. Schoell, Bookseller. Published in 2013 as Essay on the Geography of Plants, Chicago, IL: University of Chicago Press.
WalkoRLBandLEBaronJ. (2000) Coupled atmosphere-biophysics-hydrology models for environmental modeling. Journal of Applied Meteorology39: 931–944.
168.
WalshSJButlerDRMalansonGP (1997) An overview of scale, pattern, process relationships in geomorphology: A remote sensing and GIS perspective. Geomorphology21: 183–205.
169.
WarnerTACampagnaDJEvansCS. (1991) Analyzing remote sensing geobotanical trends in Quetico Provincial Park, Ontario, Canada, using digital elevation data. Photogrammetric Engineering and Remote Sensing57: 1179–1183.
170.
WilbyRLKeenanR (2012) Adapting to flood risk under climate change. Progress in Physical Geography36: 348–378.
171.
WilkinsonBHMcElroyBJ (2007) The impact of humans on continental erosion and sedimentation. Geological Society of America Bulletin119: 140–156.
172.
WilliamsCAReichsteinMBuchmannN. (2012) Climate and vegetation controls on the surface water balance: Synthesis of evapotranspiration measured across a global network of flux towers. Water Resources Research48: W06523.
173.
WillmottCJMatsuuraK (1995) Smart interpolation of annually averaged air temperature in the United States. Journal of Applied Meteorology34: 2577–2586.
174.
WillmottCJRoweCMMintzY (1985) Climatology of the terrestrial seasonal water cycle. Journal of Climatology5: 589–606.
175.
WiseEK (2012) Hydroclimatology of the US Intermountain West. Progress in Physical Geography36: 458–479.
176.
WoltemadeCJPotterKW (1994) A watershed modeling analysis of fluvial geomorphologic influences on flood peak attenuation. Water Resources Research30: 1933–1942.
177.
XuCY (1999) From GCMs to river flow: A review of downscaling methods and hydrologic modelling approaches. Progress in Physical Geography23: 229–249.
178.
YadavVMalansonGP (2009) Modeling impacts of erosion and deposition on soil organic carbon in the Big Creek Basin of southern Illinois. Geomorphology106: 304–314.
179.
YangXPScuderiLLiuT. (2011) Formation of the highest sand dunes on Earth. Geomorphology135: 108–116.
180.
ZabelFMauserWMarkeT. (2012) Inter-comparison of two land-surface models applied at different scales and their feedbacks while coupled with a regional climate model. Hydrology and Earth System Science16: 1017–1031.
181.
ZumeJTTarhuleA (2006) Precipitation and streamflow variability in northwestern Oklahoma, 1894–2003. Physical Geography27: 189–205.