Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa

Kirjailija

Hiren D. Patel

Kirjat ja teokset yhdessä paikassa: 9 kirjaa, julkaisuja vuosilta 2008–2024, suosituimpiin kuuluu Análisis de la situación de la subcuenca del río MEJ. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

Nimi esiintyy myös muodoissa: Hiren D Patel

9 kirjaa

Kirjojen julkaisuvuodet: 2008–2024.

Analyse de la situation du sous-bassin de la rivière MEJ

Analyse de la situation du sous-bassin de la rivière MEJ

Primal B Patel; Hiren D Patel

Editions Notre Savoir
2024
pokkari
Le bassin versant de la rivi re Mej est tr s peupl selon l'ACP 2011 (Recensement 2011). La zone g ographique totale du bassin versant de la rivi re Mej est de 352 km . La plus grande partie du bassin versant de la rivi re Mej se trouve dans le tehsil de Mandalgarh. Le bassin versant de la rivi re Mej est divis en deux parties sur la base de l'ordre des cours d'eau: le cours sup rieur et le cours inf rieur. La densit de population est plus lev e dans le cours inf rieur que dans le cours sup rieur. L'altitude du bassin versant est comprise entre 308 et 567 m tres. La partie sud-est du bassin versant de la Mej est essentiellement vallonn e, tandis que la partie nord-ouest est moins lev e. La plupart des sols du bassin versant de la rivi re Mej sont de couleur noire moyenne, tandis que dans certaines zones situ es au nord-est, le sol est de couleur noire peu profonde. L'irrigation et l'agriculture sont troitement li es dans le bassin versant de la rivi re Mej. Le volume total d'eau utilis pour l'irrigation provient la fois de sources de surface et de sources souterraines sous forme de puits ouverts et tubulaires dans le bassin versant de la rivi re Mej. Deux saisons de croissance et des climats plus frais, ainsi qu'un stockage d'eau et une disponibilit d'eau limit s dans le cours sup rieur du fleuve, expliquent la consommation d'eau d'irrigation plus faible dans le cours sup rieur que dans le cours inf rieur du fleuve.
Analyse der Situation im Teileinzugsgebiet des Flusses MEJ

Analyse der Situation im Teileinzugsgebiet des Flusses MEJ

Primal B Patel; Hiren D Patel

Verlag Unser Wissen
2024
pokkari
Das Einzugsgebiet des Mej-Flusses ist laut PCA 2011 (Volksz hlung 2011) stark besiedelt. Die gesamte geografische Fl che des Mej-Flusseinzugsgebiets betr gt 352 Quadratkilometer. Der gr te Teil des Einzugsgebiets des Mej-Flusses f llt in den Mandalgarh-Tehsil. Das Einzugsgebiet des Mej-Flusses wird auf der Grundlage der Flussreihenfolge in zwei Teile unterteilt, den oberen und den unteren Fluss. Die Bev lkerungsdichte ist in der unteren Flussrichtung h her als in der oberen Flussrichtung. Die H henlage des Einzugsgebiets betr gt 308 bis 567 Meter. Der s d stliche Teil des Einzugsgebiets des Mej-Flusses ist berwiegend h gelig, w hrend der nordwestliche Teil eine niedrigere H henlage aufweist. Die meisten B den im Einzugsgebiet des Mej-Flusses sind mittelschwarz, w hrend in einigen Gebieten im Nordosten die B den flachschwarz sind. Bew sserung und Landwirtschaft sind im Einzugsgebiet des Mej-Flusses eng miteinander verbunden. Die gesamte f r die Bew sserung genutzte Wassermenge wird im Einzugsgebiet des Mej-Flusses sowohl aus Oberfl chenquellen als auch aus dem Boden in Form von offenen und Rohrbrunnen entnommen. Zwei Vegetationsperioden und ein k hleres Klima sowie die begrenzte Wasserspeicherung und Wasserverf gbarkeit im Oberlauf des Flusses f hren dazu, dass der Wasserverbrauch f r die Bew sserung im Oberlauf geringer ist als im Unterlauf.
Análise da situação da sub-bacia do rio MEJ

Análise da situação da sub-bacia do rio MEJ

Primal B Patel; Hiren D Patel

Edicoes Nosso Conhecimento
2024
pokkari
A bacia hidrogr fica do rio Mej altamente povoada de acordo com o PCA 2011 (Censo 2011). A rea geogr fica total da bacia hidrogr fica do rio Mej de 352 km2. A maior parte da bacia hidrogr fica do rio Mej abrangida pelo tehsil de Mandalgarh. A bacia hidrogr fica do rio Mej est dividida em duas partes com base na ordem dos cursos de gua, o curso superior e o curso inferior. A densidade populacional mais elevada na ordem inferior do que na ordem superior. A altitude da bacia hidrogr fica de 308 a 567 metros. A maior parte da rea montanhosa encontra-se na parte sudeste da bacia hidrogr fica do rio Mej, enquanto a parte noroeste tem uma eleva o mais baixa. Na maior parte da bacia hidrogr fica do rio Mej, o tipo de solo preto m dio, enquanto nalgumas zonas a nordeste o tipo de solo preto raso. A irriga o e a agricultura est o intimamente ligadas na bacia hidrogr fica do rio Mej. O volume total de gua utilizada para irriga o desviado de fontes superficiais e subterr neas sob a forma de po os abertos e tubulares na bacia hidrogr fica do rio Mej. As duas esta es de crescimento e os climas mais frios, bem como o armazenamento limitado de gua no curso superior e a disponibilidade de gua, s o respons veis por um menor consumo de gua para irriga o no curso superior do que no curso inferior.
Analisi della situazione del sottobacino del fiume MEJ

Analisi della situazione del sottobacino del fiume MEJ

Primal B Patel; Hiren D Patel

Edizioni Sapienza
2024
pokkari
Il bacino idrografico del fiume Mej altamente popolato secondo il PCA 2011 (Censimento 2011). L'area geografica totale del bacino idrografico del fiume Mej di 352 km . La porzione massima del bacino idrografico del fiume Mej rientra nel tehsil di Mandalgarh. Il bacino idrografico del fiume Mej diviso in due parti sulla base dell'ordine dei corsi d'acqua, il torrente superiore e quello inferiore. La densit di popolazione maggiore nell'ordine dei torrenti inferiori rispetto a quello dei torrenti superiori. L'altitudine del bacino idrografico varia da 308 a 567 metri. La zona pi collinare si trova nella parte sud-orientale del bacino idrografico del fiume Mej, mentre la parte nord-occidentale ha un'altitudine inferiore. Nel bacino idrografico del fiume Mej il suolo per lo pi di colore nero medio, mentre in alcune zone verso nord-est di colore nero poco profondo. L'irrigazione e l'agricoltura sono strettamente collegate nel bacino idrografico del fiume Mej. Nel bacino idrografico del fiume Mej, il volume totale d'acqua utilizzato per l'irrigazione viene deviato sia da fonti superficiali sia da fonti sotterranee sotto forma di pozzi aperti e tubolari. Le due stagioni di crescita e i climi pi freschi, cos come la limitata disponibilit di acqua nel torrente superiore, spiegano il minor consumo di acqua per l'irrigazione nel torrente superiore rispetto al torrente inferiore.
Ingredients for Successful System Level Design Methodology

Ingredients for Successful System Level Design Methodology

Hiren D. Patel; Sandeep Kumar Shukla

Springer
2010
nidottu
ESL or “Electronic System Level” is a buzz word these days, in the electronic design automation (EDA) industry, in design houses, and in the academia. Even though numerous trade magazine articles have been written, quite a few books have been published that have attempted to de?ne ESL, it is still not clear what exactly it entails. However, what seems clear to every one is that the “Register Transfer Level” (RTL) languages are not adequate any more to be the design entry point for today’s and tomorrow’s complex electronic system design. There are multiple reasons for such thoughts. First, the c- tinued progression of the miniaturization of the silicon technology has led to the ability of putting almost a billion transistors on a single chip. Second, applications are becoming more and more complex, and integrated with c- munication, control, ubiquitous and pervasive computing, and hence the need for ever faster, ever more reliable, and more robust electronic systems is pu- ing designers towards a productivity demand that is not sustainable without a fundamental change in the design methodologies. Also, the hardware and software functionalities are getting interchangeable and ability to model and design both in the same manner is gaining importance. Given this context, we assume that any methodology that allows us to model an entire electronic system from a system perspective, rather than just hardware with discrete-event or cycle based semantics is an ESL method- ogy of some kind.
Ingredients for Successful System Level Design Methodology

Ingredients for Successful System Level Design Methodology

Hiren D. Patel; Sandeep Kumar Shukla

Springer-Verlag New York Inc.
2008
sidottu
ESL or “Electronic System Level” is a buzz word these days, in the electronic design automation (EDA) industry, in design houses, and in the academia. Even though numerous trade magazine articles have been written, quite a few books have been published that have attempted to de?ne ESL, it is still not clear what exactly it entails. However, what seems clear to every one is that the “Register Transfer Level” (RTL) languages are not adequate any more to be the design entry point for today’s and tomorrow’s complex electronic system design. There are multiple reasons for such thoughts. First, the c- tinued progression of the miniaturization of the silicon technology has led to the ability of putting almost a billion transistors on a single chip. Second, applications are becoming more and more complex, and integrated with c- munication, control, ubiquitous and pervasive computing, and hence the need for ever faster, ever more reliable, and more robust electronic systems is pu- ing designers towards a productivity demand that is not sustainable without a fundamental change in the design methodologies. Also, the hardware and software functionalities are getting interchangeable and ability to model and design both in the same manner is gaining importance. Given this context, we assume that any methodology that allows us to model an entire electronic system from a system perspective, rather than just hardware with discrete-event or cycle based semantics is an ESL method- ogy of some kind.