Pricelists.org Pricelists.org تسجيل الدخول إنشاء حساب

Parallel Multilevel Methods

☆☆☆☆☆ (0 reviews)
Show price history
Parallel Multilevel Methods
Lowest price (incl. delivery)
5 433,00 JPY
Typical price254,97 PLN
Lowest (90 days)19,21 PLN
Offers3
Last updatedمنذ 4 أيام
See best offer
Price history (90 days)
Full history
2026-08-07 2026-08-08
سجل الأسعار
تاريخ التحديثالسعر
2026-08-0719,21
2026-08-0839,51
البائع Product price Delivery الإجمالي التوفر Updated
SP Springer Nature Author 5 433,00 JPY free 5 433,00 JPY متوفر منذ 3 أيام View offer
VI VitalSource 39,58 EUR 29,00 EUR 68,58 EUR متوفر منذ 4 أيام View offer
SP SpringerNatureLink Shop INT 45,00 EUR free 45,00 EUR متوفر منذ 4 أيام View offer

قد تتغيّر الأسعار والتوفر. آخر تحديث: 08.08.2026 09:03.

EAN 9783519004516
Springer Nature
0,0
☆☆☆☆☆
0 reviews
5★ 0%
4★ 0%
3★ 0%
2★ 0%
1★ 0%

Product reviews

Rating
No reviews yet — be the first!
Numerical simulation promises new insight in science and engineering. In ad­ dition to the traditional ways to perform research in science, that is laboratory experiments and theoretical work, a third way is being established: numerical simulation. It is based on both mathematical models and experiments con­ ducted on a computer. The discipline of scientific computing combines all aspects of numerical simulation. The typical approach in scientific computing includes modelling, numerics and simulation, see Figure l. Quite a lot of phenomena in science and engineering can be modelled by partial differential equations (PDEs). In order to produce accurate results, complex models and high resolution simulations are needed. While it is easy to increase the precision of a simulation, the computational cost of doing so is often prohibitive. Highly efficient simulation methods are needed to overcome this problem. This includes three building blocks for computational efficiency, discretisation, solver and computer. Adaptive mesh refinement, high order and sparse grid methods lead to discretisations of partial differential equations with a low number of degrees of freedom. Multilevel iterative solvers decrease the amount of work per degree of freedom for the solution of discretised equation systems. Massively parallel computers increase the computational power available for a single simulation.

Similar products