Biological and Environmental Sciences

Outputs related to Biological and Environmental Sciences

Showing 901 to 1000 of 4030

Thesis

Wood D (2020) Linking carbon and iron cycles by investigating transport, fate and mineralogy of iron-bearing nanoparticles and colloids from peat-draining rivers - Scotland as a model for high-latitude rivers. Doctor of Philosophy Environmental Science. University of Stirling. http://hdl.handle.net/1893/31889


Article

Lozano V, Marzialetti F, Carranza ML, Chapman D, Branquart E, Dološ K, Große-Stoltenberg A, Fiori M, Capece P & Brundu G (2020) Modelling Acacia saligna invasion in a large Mediterranean island using PAB factors: A tool for implementing the European legislation on invasive species. Ecological Indicators, 116, Art. No.: 106516. https://doi.org/10.1016/j.ecolind.2020.106516


Article

Suwal TL, Thapa A, Gurung S, Aryal PC, Basnet H, Basnet K, Shah KB, Thapa S, Koirala S, Dahal S, Katuwal HB, Sharma N, Jnawali SR, Khanal K, Dhakal M, Acharya KP, Ingram DJ & Pei KJ (2020) Predicting the potential distribution and habitat variables associated with pangolins in Nepal. Global Ecology and Conservation, 23, Art. No.: e01049. https://doi.org/10.1016/j.gecco.2020.e01049


Article

Muscarella R, Emilio T, Phillips OL, Lewis SL, Slik F, Baker WJ, Couvreur TLP, Eiserhardt WL, Svenning J, Affum-Baffoe K, Aiba S, de Almeida EC, de Almeida SS, de Oliveira EA & White L (2020) The global abundance of tree palms. Global Ecology and Biogeography, 29 (9), pp. 1495-1514. https://doi.org/10.1111/geb.13123


Article

Wilson K, Law A, Gaywood M, Ramsay P & Willby N (2020) Beavers: The original engineers of Britain's fresh waters. British Wildlife, 31 (6), pp. 403-411. https://www.britishwildlife.com/article/volume-31-number-6-page-403-411


Article

Fleiss S, Waddell EH, Bala Ola B, Banin LF, Benedick S, Bin Sailim A, Chapman DS, Jelling A, King H, McClean CJ, Yeong KL & Hill JK (2020) Conservation set-asides improve carbon storage and support associated plant diversity in certified sustainable oil palm plantations. Biological Conservation, 248, Art. No.: 108631. https://doi.org/10.1016/j.biocon.2020.108631


Article

Davis C, Coningham R, Acharya KP, Kunwar RB, Forlin P, Weise K, Maskey PN, Joshi A, Simpson I, Toll D, Wilkinson S, Hughes P, Sarhosis V, Kumar A & Schmidt A (2020) Identifying archaeological evidence of past earthquakes in a contemporary disaster scenario: case studies of damage, resilience and risk reduction from the 2015 Gorkha Earthquake and past seismic events within the Kathmandu Valley UNESCO World Heritage Property (Nepal). Journal of Seismology, 24 (4), p. 729–751. https://doi.org/10.1007/s10950-019-09890-7


Article

Rozendaal DMA, Phillips OL, Lewis SL, Affum-Baffoe K, Alvarez Dávila E, Andrade A, Aragão LEOC, Araujo-Murakami A, Baker TR, Bánki O, Brienen RJW, Camargo JLC, Comiskey JA, Djuikouo MNK & White LJT (2020) Competition influences tree growth, but not mortality, across environmental gradients in Amazonia and tropical Africa. Ecology, 101 (7), Art. No.: e03052. https://doi.org/10.1002/ecy.3052


Article

Butcher FEG, Balme MR, Conway SJ, Gallagher C, Arnold NS, Storrar RD, Lewis SR & Hagermann A (2020) Morphometry of a glacier-linked esker in NW Tempe Terra, Mars, and implications for sediment-discharge dynamics of subglacial drainage. Earth and Planetary Science Letters, 542, Art. No.: 116325. https://doi.org/10.1016/j.epsl.2020.116325


Article

Pihlaja K, Kivelä H, Vainiotalo P & Steele WV (2020) Enthalpies of Combustion and Formation of Severely Crowded Methyl-Substituted 1,3-dioxanes. The Magnitudes of 2,4- and 4,6-diaxial Me,Me-Interactions and the Chair-2,5-twist Energy Difference. Molecules, 25 (12), Art. No.: 2762. https://doi.org/10.3390/molecules25122762


Article

Farrell M, Bunting MJ, Sturt F, Grant M, Aalbersberg G, Batchelor R, Brown A, Druse D, Hill T, Hollinrake A, Jones J, Tinsley H, Bayliss A, Marshall P, Richer S & Whittle A (2020) Opening the woods: towards a quantification of Neolithic clearance around the Somerset Levels and Moors. Journal of Archaeological Method and Theory, 27 (2), pp. 271-301. https://doi.org/10.1007/s10816-019-09427-9