Classical Statistical Mechanics with Nested Sampling
☆☆☆☆☆
(0 reviews)
Lowest price (incl. delivery)
14 299,00 JPY
Typical price1 089,73 PLN
Lowest (90 days)71,50 PLN
Offers6
Last updated1週間前
Price history (90 days)
Full history
2026-08-08
2026-08-15
| 更新日時 | 価格 |
|---|---|
| 2026-08-08 | 84,99 |
| 2026-08-15 | 71,50 |
| 販売者 | Product price | Delivery | 合計 | 在庫状況 | Updated | |
|---|---|---|---|---|---|---|
| SP SpringerNatureLink Shop INT | 14 299,00 JPY | free | 14 299,00 JPY | 在庫あり | 5日前 | View offer |
| SP Springer Nature Author | 14 299,00 JPY | 19,00 JPY | 14 318,00 JPY | 在庫あり | 1週間前 | View offer |
| SP SpringerNatureLink Shop INT | 99,99 USD | free | 99,99 USD | 在庫あり | 5日前 | View offer |
| SP SpringerNatureLink Shop INT | 109,99 USD | 25,00 USD | 134,99 USD | 在庫あり | 5日前 | View offer |
| SP SpringerNatureLink Shop INT | 109,99 USD | 29,00 USD | 138,99 USD | 在庫あり | 5日前 | View offer |
| SP SpringerNatureLink Shop INT | 118,00 EUR | free | 118,00 EUR | 在庫あり | 5日前 | View offer |
価格や在庫状況は変更される場合があります。 最終更新: 08.08.2026 23:20.
0,0
☆☆☆☆☆
0 reviews
5★
0%
4★
0%
3★
0%
2★
0%
1★
0%
Product reviews
No reviews yet — be the first!
This thesis develops a nested sampling algorithm into a black box tool for directly calculating the partition function, and thus the complete phase diagram of a material, from the interatomic potential energy function. It represents a significant step forward in our ability to accurately describe the finite temperature properties of materials. In principle, the macroscopic phases of matter are related to the microscopic interactions of atoms by statistical mechanics and the partition function. In practice, direct calculation of the partition function has proved infeasible for realistic models of atomic interactions, even with modern atomistic simulation methods. The thesis also shows how the output of nested sampling calculations can be processed to calculate the complete PVT (pressure–volume–temperature) equation of state for a material, and applies the nested sampling algorithm to calculate the pressure–temperature phase diagrams of aluminium and a model binary alloy.