New computationally efficient quantum chemical models that capture static and dynamic correlation separately
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New computationally efficient quantum chemical models that capture static and dynamic correlation separately
Summary
New computationally efficient quantum chemical models that capture static and dynamic correlation separately is a doctoral thesis[1].
Key Facts
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's instance of is recorded as doctoral thesis[2].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately was published by UC Research Repository[3].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's language of work or name is recorded as English[4].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's country of origin is recorded as New Zealand[5].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately was released on 2020[6].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's main subject is chemistry[7].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's title is recorded as New computationally efficient quantum chemical models that capture static and dynamic correlation separately[8].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's author name string is recorded as Chris Stinson[9].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's thesis submitted to is recorded as University of Canterbury[10].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's on focus list of Wikimedia project is recorded as NZThesisProject[11].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's copyright status is recorded as copyrighted[12].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's online access status is recorded as open access[13].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's thesis committee member is recorded as Deborah Crittenden[14].
- New computationally efficient quantum chemical models that capture static and dynamic correlation separately's thesis submitted for degree is recorded as Doctor of Philosophy[15].
Body
Designation and Status
New computationally efficient quantum chemical models that capture static and dynamic correlation separately's instance of is recorded as doctoral thesis[2].