Electronic Noise and Interfering Signals is a comprehensive reference book on noise and interference in electronic circuits, with particular focus on low-noise design. The first part of the book deals with mechanisms, modelling, and computation of intrinsic noise which is generated in every electronic device. The second part analyzes the coupling mechanisms which can lead to a contamination of circuits by parasitic signals and provides appropriate solutions to this problem. The last part contains more than 100 practical, elaborate case studies. The book requires no advanced mathematical training as it introduces the fundamental methods. Moreover, it provides insight into computational noise analysis with SPICE and NOF, a software developed by the author. The book addresses designers of electronic circuits as well as researchers from electrical engineering, physics, and material science. It should also be of interest for undergraduate and graduate students.
The book shows that self-help in commercial law is a fast, inexpensive and efficient alternative to court enforcement. Self-help remedies and private debt collection are largely but not exclusively features of common law jurisdictions, since remnants of private enforcement can still be found in contract law in civilian systems. The book argues that – despite their usefulness – self-help and private debt collection entail significant risks, especially for consumer debtors. This means that private enforcement needs to be accompanied by the introduction of tailor-made consumer-debtor protection regulation. Specific attention is given to factoring, which functions in many instances as a form of pseudo-private debt collection and which has been exploited to bypass sector-specific consumer protection regulations.
„Paginile acestei cărţi s-au născut dintr-o idee simplă: fiecare om îşi alcătuieşte de-a lungul vieţii un edificiu afectiv. Măsura în care el este e dată de consistenţa acestui edificiu, de mâna aceea de oameni – ei nu pot fi mulţi – pe care i-a preluat în el şi pe care i-a iubit fără rest, fără umbră, şi împotriva cărora spiritul lui critic, chiar dacă a fost prezent, a rămas neputincios. Aceşti oameni puţini care ne fac pe fiecare în parte să nu regretăm că suntem reprezintă, chit că o ştim sau nu, stratul de protecţie care ne ajută să trecem prin viaţă. Fiecare om face faţă la ce i se întâmplă pentru că este protejat în felul acesta. Fără acest zid de fiinţe iubite care ne înconjoară (indiferent că ele sunt sau nu în viaţă), noi nu am fi buni de nimic. Ne-am destrăma precum într-o atmosferă în care frecarea este prea mare. Sau ne-am pierde, ne-am rătăci pur şi simplu în viaţă. Dacă ura celorlalţi – covârşitoare uneori! –, invidia lor, mârşăvia lor sunt neputincioase este pentru că există câţiva oameni pe care îi iubim până la capăt. Despre asemenea oameni este vorba în această carte. Ei poartă numele de Monica şi Virgil Ierunca, Noica sau Creţia, Sebastian sau Dragomir, Henri Wald, Andrei Pleşu sau Horia Bernea. Cu excepţia lui Mihail Sebastian, pe toţi ceilalţi i-am întâlnit în carne şi oase şi ei sunt cei care mi-au construit sau mi-au influenţat destinul.“ (Gabriel LIICEANU)
Defining means and methods designed to ensure the quality of service (QoS mechanisms), which is the objective of the first part of this paper, involves a series of analytical or experimental modeling activities (for example, by simulation) and analysis which, in turn, involve various mathematical disciplines, such as probability theory and statistics, in order to determine how to act, considering the factors that influence the quality of service. Having a generous theoretical support, each of these mentioned activities and instruments is a separate subject, the exposure of which can be found in the following two parts of this paper. This is the Part II, which aims at presenting the basic analytical tools used in the description of random phenomena, and the Part III, dealing with the specific aspects of telecommunication services, regarding the modeling and analysis processes for their quality.
The book presents methods for the objective analysis of poetic language. Common objects of literary studies such as rhythm, semantic explications, interpretation and personal impressions are avoided. Only those properties of poetic texts are taken into account that could be quantified. The major chapters contain the analysis of phonic phenomena (frequency, euphony, assonance, alliteration, aggregation, rhyme), word properties (aspects of frequency, length, richness, word classes, sequences of word properties, characterisations). The synergetic control cycle is the result of the study of mutual links between properties. For all methods both statistical tests (evaluation, comparison), theoretical derivations (models), and examples are presented. The book is dedicated to the work of the famous Romanian poet Mihai Eminescu whose complete work was analysed, which made detailed illustrations of the method possible. The methods can be used mutatis mutandis for any language and text. It is the first comprehensive quantitative analysis of a poetic work.
The aim of this book is to help people performing routine operations in Organic Synthesis in a laboratory. This book, the first one in a series, focuses on the oxidation of alcohols to aldehydes and ketones. Probably, this is the most important routine operation in Organic Synthesis.
Electronic Noise and Interfering Signals is a comprehensive reference book on noise and interference in electronic circuits, with particular focus on low-noise design. The first part of the book deals with mechanisms, modelling, and computation of intrinsic noise which is generated in every electronic device. The second part analyzes the coupling mechanisms which can lead to a contamination of circuits by parasitic signals and provides appropriate solutions to this problem. The last part contains more than 100 practical, elaborate case studies. The book requires no advanced mathematical training as it introduces the fundamental methods. Moreover, it provides insight into computational noise analysis with SPICE and NOF, a software developed by the author. The book addresses designers of electronic circuits as well as researchers from electrical engineering, physics, and material science. It should also be of interest for undergraduate and graduate students.
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