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Quantum-Mechanical Prediction of Thermochemical Data.pdf
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Chapter 1

Highly Accurate Ab Initio Computation

of Thermochemical Data

Trygve Helgaker

Department of Chemistry, University of Oslo, P. O. Box 1033 Blindern, N-0315 Oslo,

Norway

Wim Klopper and Asger Halkier

Theoretical Chemistry Group, Debye Institute, Utrecht University, P. O. Box 80052, NL-3508 TB Utrecht, The Netherlands

Keld L. Bak

UNI-C, Olof Palmes Allé 38, DK-8200 Århus N, Denmark

Poul Jørgensen and Jeppe Olsen

Department of Chemistry, Århus University, DK-8000 Århus C, Denmark

1.INTRODUCTION

Heats of reaction are among the fundamental quantities of thermochemistry. Since, to a first approximation, the heats of reaction are energy differences between molecular systems, one would think that their quantum-chemical evaluation should be a rather straightforward matter. After all, ever since its inception in the late 1920s, quantum chemistry has been concerned with the accurate calculation of total energies, building up a large body of expertise and experience on the accurate and efficient calculation of total molecular electronic energies [1-10].

1

J. Cioslowski (ed.), Quantum-Mechanical Prediction of Thermochemical Data, 1–30. © 2001 Kluwer Academic Publishers. Printed in the Netherlands.

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