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Vandvik, Vigdis; Rosendahl, Knut Einar; Korp?s, Magnus; Hanssen, Gro Sandkj?r; Kleiven, Helga Flesche & Bakken, Vebj?rn
[Show all 11 contributors for this article]
(2025).
Klimar?d 2025 – Vurderinger og anbefalinger for en bedre klimapolitikk i Norge.
doi:
https:/api.klimastiftelsen.no/wp-content/uploads/2025/03/Klimarad-2025.pdf.
Show summary
Det er behov for et taktskifte i norsk klimapolitikk. Derfor etablerte Norsk klimastiftelse h?sten 2024 en ekspertgruppe, Klimar?d 2025. Medlemmene er blant landets fremste eksperter p? klima-, natur- og energisp?rsm?l. De fikk i oppgave ? vurdere Norges klimaomstilling og komme med anbefalinger til veien videre. Denne rapporten oppsummerer deres vurderinger og anbefalinger.
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Bakken, Vebj?rn; Winther, Tanja & Inderberg, Tor H?kon Jackson
(2024).
Rettferdig energiomstilling – er det mulig? [podcast].
[Internet].
/forskning/satsinger/uio-energi-og-miljo/a.
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Bakken, Vebj?rn
(2018).
Short presentation of the FME MoZEES.
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Geirbo, Hanne Cecilie; Bakken, Vebj?rn & Selj, Josefine Helene
(2013).
Mobil kraft.
Dagens n?ringsliv.
ISSN 0803-9372.
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Geirbo, Hanne Cecilie; Bakken, Vebj?rn & Braa, Kristin
(2012).
Leveraging mobile network infrastructure for rural electrification - experiences from an ongoing pilot project in Bangladesh.
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Bakken, Vebj?rn; Geirbo, Hanne Cecilie & Braa, Kristin
(2012).
Community power project in Bangladesh.
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Wilhite, Harold Langford; Elverh?i, Anders; Bakken, Vebj?rn; Winther, Tanja; Braa, Kristin & Geirbo, Hanne Cecilie
(2012).
Social impacts of electricity in rural areas.
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Berg, Tom Christian; Bakken, Vebj?rn; Gundersen, Lise-Lotte & Petersen, Dirk
(2006).
Cyclisation and Rearrangement Products from Coupling Reactions between terminal o-Alkynylphenols or o-ethynyl(hydroxymethyl)benzene and 6-Halopurines.
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Bakken, Vebj?rn; Sekiguchi, Osamu & Uggerud, Einar
(2004).
Decomposition of protonated formic acid: One transition state serving two product channels.
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Bakken, Vebj?rn; Helgaker, Trygve Ulf & Uggerud, Einar
(2003).
Ions - then radicals. Dynamics and mechanisms of electron capture dissociation of proteins and peptides.
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Bakken, Vebj?rn & F?gri, Knut
(2003).
A New Parallel Direct Relativistic MP2 Algorithm.
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Bakken, Vebj?rn; Helgaker, Trygve Ulf & Uggerud, Einar
(2003).
Mechanism of Electron Capture Dissociation of Protonated Peptides.
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Sekiguchi, O; Bakken, Vebj?rn & Uggerud, Einar
(2003).
The unimolecular decomposition of protonated formic acid.
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Bakken, Vebj?rn; Helgaker, Trygve Ulf & Uggerud, Einar
(2003).
Dynamics of Electron Capture Dissociation of Protonated Peptides.
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Beukes, Jon Are; Bakken, Vebj?rn & Nielsen, Claus J?rgen
(2000).
Experimental and theoretical study of the F, Cl and Br reactions with formaldehyde and acetaldehyde.
Show summary
The vapour phase reactions of formaldehyde, formaldehyde-d2, 13C-formaldehyde, acetaldehyde, acetaldehyde-1-d1, acetaldehyde-2,2,2-d3, and acetaldehyde-d4 with Cl and Br atoms were studied at 298 ± 2 K and 1013 ± 10 hPa using long-path FTIR detection. For formaldehyde the only products observed were HCl, HBr and CO; for acetaldehyde the product distribution suggests one dominant channel: CH3CHO + X ? CH3CO + HX. The kinetic isotope effects at 298 K were determined by the relative rate method as: kCl+HCHO/kCl+DCDO = 1.302 ± 0.014, kCl+H13CHO /kCl+DCDO = 1.217 ± 0.025, kBr+HCHO/kBr+DCDO = 7.5 ± 0.4, and kBr+H13CHO /kBr+DCDO = 6.8 ± 0.4, kCl+CH3CHO/kCl+CH3CDO = 1.343±0.023, kCl+CH3CHO/kCl+CD3CDO = 1.323 ± 0.018, kCl+CD3CHO/kCl+CH3CDO = 1.345 ± 0.015, kCl+CD3CHO/kCl+CD3CDO = 1.394 ± 0.021, kBr+CH3CHO/kBr+CH3CDO = 3.98 ± 0.26, kBr+CH3CHO/kBr+CD3CDO = 3.79 ± 0.29, kBr+CD3CHO/kBr+CH3CDO = 4.02 ± 0.10, and kBr+CD3CHO/kBr+CD3CDO = 3.96 ± 0.20. Quoted errors represent 3s from the statistical analyses and do not include possible systematic errors.
The reactions of F, Cl and Br atoms with formaldehyde and acetaldehyde were studied by quantum chemical methods on the MP2 level of theory using the cc-pVDZ basis sets. The calculations indicate the existence of a weak adduct in which the halogen atoms are bonded to the aldehydic oxygen. Transition states of the reactions X + HCHO ? HX + CHO and X + CH3CHO ? HX + CH3CO (X = F, Cl, Br) were located. Reaction rate coefficients and kinetic isotope effects, calculated from conventional transition state theory are compared to experimental data and the deviations are tentatively attributed to the adduct formation.
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Andresen, ?yvind; Bakken, Vebj?rn; Beukes, Jon Are & Nielsen, Claus J?rgen
(2000).
Study of OH and NO3 Reactions with Aldehydes.
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The reaction rate coefficients for the OH and NO3 radical reactions with 20 aldehydes have been determined at 298 K and 1013 hPa by the relative rate method employing long-path FTIR detection. Additional relative rate studies of the kinetic isotope effects of the OH and NO3 reactions with isotopomers of formaldehyde have been carried out to elucidate the mechanism of the initial reaction step. The chemical kinetics database for carbonyl compounds has thereby been augmented significantly.
Ab initio computations of the OH and NO3 reactions with formaldehyde have been carried out. Both the kinetic isotope studies the and ab initio computations show that the OH and NO3 reactions with aldehydes pro-ceed via an initial H-bonded adduct formation/addition of the radical/atom and not by direct H-abstraction. These new results have led to an improved understanding of the initial reaction step in the atmospheric oxidation of carbonyl compounds, and imply that the present structure-reactivity relationships for OH and NO3 reactions with aldehydes have little theoretical justification.
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Bakken, Vebj?rn; Uggerud, Einar & Schlegel, H. Bernhard
(2000).
Using ab initio molecular dynamics to study fragmentation by electron capture.
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Bakken, Vebj?rn
(1999).
The calculation of molecular geometrical properties in the Hellmann-Feynman approximation.
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Bakken, Vebj?rn
(1999).
Using ab initio direct dynamics to investigate branching reaction pathways.
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