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Stone D (2014)
Radical chemistry at night: comparisons between observed and modelled HO<sub>x</sub>, NO<sub>3</sub> and N<sub>2</sub>O<sub>5</sub> during the RONOCO project
in Atmospheric Chemistry and Physics
Stone D (2014)
Radical chemistry at night: comparisons between observed and modelled HO<sub>x</sub>, NO<sub>3</sub> and N<sub>2</sub>O<sub>5</sub> during the RONOCO project
in Atmospheric Chemistry and Physics
Nguyen L (2021)
Two decades of flask observations of atmospheric dO<sub>2</sub>/N<sub>2</sub>, CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland) plus 3 years from Halley station (Antarctica)
Stone D (2014)
Radical chemistry at night: comparisons between observed and modelled HO<sub>x</sub>, NO<sub>3</sub> and N<sub>2</sub>O<sub>5</sub> during the RONOCO project
in Atmospheric Chemistry and Physics
Hardacre C (2021)
Evaluation of SO<sub>2</sub>, SO<sub>4</sub><sup>2-</sup> and an updated SO<sub>2</sub> dry deposition parameterization in the United Kingdom Earth System Model
in Atmospheric Chemistry and Physics
Hardacre C (2021)
Evaluation of SO<sub>2</sub>, SO<sub>4</sub><sup>2-</sup> and an updated SO<sub>2</sub> dry deposition parameterization in the United Kingdom Earth System Model
in Atmospheric Chemistry and Physics
Stone D (2014)
Radical chemistry at night: comparisons between observed and modelled HO<sub>x</sub>, NO<sub>3</sub> and N<sub>2</sub>O<sub>5</sub> during the RONOCO project
in Atmospheric Chemistry and Physics
Grime R (2008)
Metallacumulenylidene Complexes in the Cycloheptatrienyl Molybdenum Series [Mo{(C) n -CR 2 }L 2 (?-C 7 H 7 )] + ( n = 0-2; L 2 = P-Donor Ligand). X-ray Crystal Structures of [Mo{C-C(H)Ph}{P(OMe) 3 } 2 (?-C 7 H 7 )][BF 4 ] and [Mo(C-C-CPh 2 )(dppe)(?-C 7 H 7 )][PF 6 ] and DFT Investigation of Cumulenylidene Ligand Orientations
in Organometallics
Nguyen L (2022)
Two decades of flask observations of atmospheric <i>d</i>(O<sub>2</sub>/N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica)
in Earth System Science Data
Nguyen L (2022)
Two decades of flask observations of atmospheric <i>d</i>(O<sub>2</sub>/N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica)
in Earth System Science Data
Nguyen L (2022)
Two decades of flask observations of atmospheric <i>d</i>(O<sub>2</sub>/N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica)
in Earth System Science Data
Nguyen L (2022)
Two decades of flask observations of atmospheric <i>d</i>(O<sub>2</sub>/N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica)
in Earth System Science Data
Kreycy S (2013)
Atmospheric test of the J(BrONO<sub>2</sub>)/<i>k</i><sub>BrO+NO<sub>2</sub></sub> ratio: implications for total stratospheric Br<sub>y</sub> and bromine-mediated ozone loss
in Atmospheric Chemistry and Physics
Leedham Elvidge E (2018)
Evaluation of stratospheric age of air from CF<sub>4</sub>, C<sub>2</sub>F<sub>6</sub>, C<sub>3</sub>F<sub>8</sub>, CHF<sub>3</sub>, HFC-125, HFC-227ea and SF<sub>6</sub>; implications for the calculations of halocarbon lifetimes
in Atmospheric Chemistry and Physics
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