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標(biāo)題: Titlebook: Generalized B*-Algebras and Applications; Maria Fragoulopoulou,Atsushi Inoue,Ioannis Zarakas Book 2022 The Editor(s) (if applicable) and T [打印本頁(yè)]

作者: Ejaculation    時(shí)間: 2025-3-21 19:47
書(shū)目名稱(chēng)Generalized B*-Algebras and Applications影響因子(影響力)




書(shū)目名稱(chēng)Generalized B*-Algebras and Applications影響因子(影響力)學(xué)科排名




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書(shū)目名稱(chēng)Generalized B*-Algebras and Applications網(wǎng)絡(luò)公開(kāi)度學(xué)科排名




書(shū)目名稱(chēng)Generalized B*-Algebras and Applications被引頻次




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書(shū)目名稱(chēng)Generalized B*-Algebras and Applications讀者反饋




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作者: 草率男    時(shí)間: 2025-3-21 23:05

作者: 外面    時(shí)間: 2025-3-22 03:35
Computerized Tools: Allograft Selectionical justification for using tensor products. For example, tensor products are used to describe two quantum systems as one joint system, while the physical significance of tensor products always depends on the applications, which may involve wave functions, spin states, oscillators etc.
作者: etiquette    時(shí)間: 2025-3-22 05:38
Book 2022 and some of their extensions. A functional calculus and a spectral theory for GB*-algebras is presented, together with results such as Ogasawara‘s commutativity condition, Gelfand–Naimark type theorems, a Vidav–Palmer type theorem, an unbounded representation theory, and miscellaneous applications.
作者: inculpate    時(shí)間: 2025-3-22 11:40

作者: Oligarchy    時(shí)間: 2025-3-22 15:53
Generalized B*-Algebras: Functional Representation Theory,algebras is presented (Allan); namely, it is shown that each commutative GB*-algebra ., with an identity element, is algebraically *-isomorphic to the *-algebra . of all continuous .-valued functions on the Gelfand space . of the commutative C*-subalgebra . of ., which includes all bounded operators that . may have.
作者: Oligarchy    時(shí)間: 2025-3-22 17:44
The Rotation Generation Process, .-collections defining the respective GB*-structures on . (Allan). Moreover, there exists a finest locally convex *-algebra topology on a commutative GB*-algebra . that is equivalent to the given topology ..
作者: sleep-spindles    時(shí)間: 2025-3-22 23:38

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作者: 大洪水    時(shí)間: 2025-3-23 15:13
Applications I: Miscellanea, and new GB*-algebras are constructed. Moreover, various types of the celebrated Vidav-Palmer theorem are exhibited in the context of locally convex *-algebras (including GB*-algebras); all latter results are due to A.W. Wood.
作者: 顧客    時(shí)間: 2025-3-23 20:08
A Spectral Theory for Locally Convex Algebras,ence, the concept of spectrum of an element is given. In addition, the carrier space of a commutative complete locally convex algebra is defined and a Gelfand-type theory is developed. All the results of Chap. . are due to G.R. Allan.
作者: 挫敗    時(shí)間: 2025-3-24 00:11

作者: 厭倦嗎你    時(shí)間: 2025-3-24 03:48
0075-8434 graduate students interested in functional analysis, (unbounded) operator theory and its relationship to mathematical physics. It also addresses researchers interested in extensions of the celebrated theory of C*-algebras..978-3-030-96432-0978-3-030-96433-7Series ISSN 0075-8434 Series E-ISSN 1617-9692
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作者: Density    時(shí)間: 2025-3-25 01:41
978-3-030-96432-0The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
作者: accomplishment    時(shí)間: 2025-3-25 04:54
Generalized B*-Algebras and Applications978-3-030-96433-7Series ISSN 0075-8434 Series E-ISSN 1617-9692
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作者: 侵略者    時(shí)間: 2025-3-25 15:19

作者: META    時(shí)間: 2025-3-25 16:02
https://doi.org/10.1007/978-3-030-96433-7Generalized B*-Algebras; Unbounded *-Representations; Extended C*-Algebras; Extended W*-Algebras; Functi
作者: 矛盾心理    時(shí)間: 2025-3-25 21:55
Computer-Aided Production Managementras, as algebras of unbounded operators. More precisely, the notion of a ‘bounded element’ in a locally convex algebra is introduced and, as a consequence, the concept of spectrum of an element is given. In addition, the carrier space of a commutative complete locally convex algebra is defined and a
作者: 下船    時(shí)間: 2025-3-26 02:20
Computer-Aided Project Management These algebras generalize the celebrated C*-algebras and they are often met in Analysis. A typical example of a GB*-algebra is the Arens algebra .[0, 1]..In Chap. 3, we are mainly concerned with commutative GB*-algebras. Among others, an “algebraic” commutative Gelfand-Naimark type theorem for GB*-
作者: TERRA    時(shí)間: 2025-3-26 06:03
The Rotation Generation Process,ious results, but also similar line of thoughts can be applied in further generalizations of C*-algebras, like e.g., the so-called locally convex quasi C*-normed algebras. It is also used for exhibiting a functional calculus, in the case of a not necessarily commutative GB*-algebra (Dixon)..Furtherm
作者: choleretic    時(shí)間: 2025-3-26 09:27

作者: Contend    時(shí)間: 2025-3-26 16:24
Computer-Animation in der Kartographiels play an important role. In ensuring that the involved *-representation is faithful, one requires that there are enough positive linear functionals in the sense that they separate the points of the C*-algebra. That this is so for C*-algebras is well known, and relies on the fact that the positive
作者: perjury    時(shí)間: 2025-3-26 16:48

作者: Arboreal    時(shí)間: 2025-3-26 21:34
Computerized Tools: Allograft Selectiond operators are, in particular, important for mathematical physics and quantum mechanics. In this aspect, it should be emphasized that there is a physical justification for using tensor products. For example, tensor products are used to describe two quantum systems as one joint system, while the phy
作者: GUILE    時(shí)間: 2025-3-27 02:39
A Spectral Theory for Locally Convex Algebras,ras, as algebras of unbounded operators. More precisely, the notion of a ‘bounded element’ in a locally convex algebra is introduced and, as a consequence, the concept of spectrum of an element is given. In addition, the carrier space of a commutative complete locally convex algebra is defined and a
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作者: 感激小女    時(shí)間: 2025-3-28 08:04

作者: forthy    時(shí)間: 2025-3-28 11:25
Einleitung,Die beiden Lernenden Lena und Max sollen die abgebildeten Zahlenstrahlfolgen (vgl. Abb. 1.1) miteinander vergleichen und dabei Gemeinsamkeiten sowie Unterschiede entdecken. Nachdem sie erkannt haben, dass die Zahlen in einem horizontalen Vergleich jeweils in den ersten drei Ziffern übereinstimmen, entwickelt sich folgende Interaktion.
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