Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa
Kirjailija
Anuja Sharma
Kirjat ja teokset yhdessä paikassa: 7 kirjaa, julkaisuja vuosilta 2020–2024, suosituimpiin kuuluu Impressão 3D em odontologia. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.
A impress o tridimensional (3-D), tamb m conhecida como fabrico aditivo, revolucionou a medicina dent ria ao permitir a cria o de modelos anat micos precisos e interven es dent rias personalizadas. Desde o planeamento cir rgico complexo at produ o de implantes espec ficos para cada paciente, a tecnologia de impress o 3D oferece in meras vantagens em v rias especialidades dent rias. Embora a sua integra o tenha transformado os processos de diagn stico, planeamento e tratamento, persistem desafios como os custos, os materiais e a forma o dos operadores. Este livro explora a evolu o e o impacto da impress o 3D em v rios campos da medicina dent ria, examinando aplica es baseadas em evid ncias e abordando a necessidade de avan os cont nuos e de ades o a medidas de seguran a.
La stampa tridimensionale (3-D), nota anche come produzione additiva, ha rivoluzionato l'odontoiatria consentendo la creazione di modelli anatomici precisi e interventi dentali personalizzati. Dalla complessa pianificazione chirurgica alla produzione di impianti specifici per il paziente, la tecnologia di stampa 3D offre numerosi vantaggi in diverse specialit odontoiatriche. Se da un lato la sua integrazione ha trasformato i processi diagnostici, di pianificazione e di trattamento, dall'altro persistono sfide quali i costi, i materiali e la formazione degli operatori. Questo libro esplora l'evoluzione e l'impatto della stampa 3D in vari campi dell'odontoiatria, esaminando le applicazioni basate sull'evidenza e affrontando la necessit di continui progressi e di rispettare le misure di sicurezza.
L'impression tridimensionnelle (3D), galement connue sous le nom de fabrication additive, a r volutionn la dentisterie en permettant la cr ation de mod les anatomiques pr cis et d'interventions dentaires personnalis es. De la planification chirurgicale complexe la production d'implants sp cifiques aux patients, la technologie de l'impression 3D offre de nombreux avantages dans diverses sp cialit s dentaires. Bien que son int gration ait transform les processus de diagnostic, de planification et de traitement, des d fis tels que les co ts, les mat riaux et la formation des op rateurs persistent. Ce livre explore l' volution et l'impact de l'impression 3D dans divers domaines de la dentisterie, en examinant les applications fond es sur des preuves et en abordant la n cessit de progr s continus et d'adh sion des mesures de s curit .
Der dreidimensionale Druck (3D-Druck), auch bekannt als additive Fertigung, hat die Zahnmedizin revolutioniert, da er die Erstellung pr ziser anatomischer Modelle und personalisierter zahnmedizinischer Eingriffe erm glicht. Von der komplexen chirurgischen Planung bis hin zur Herstellung patientenindividueller Implantate bietet die 3D-Drucktechnologie zahlreiche Vorteile f r verschiedene zahnmedizinische Fachbereiche. W hrend ihre Integration Diagnose-, Planungs- und Behandlungsprozesse ver ndert hat, gibt es nach wie vor Herausforderungen wie Kosten, Materialien und Bedienerschulung. In diesem Buch werden die Entwicklung und die Auswirkungen des 3D-Drucks in verschiedenen Bereichen der Zahnmedizin untersucht, wobei evidenzbasierte Anwendungen gepr ft und die Notwendigkeit kontinuierlicher Weiterentwicklungen sowie die Einhaltung von Sicherheitsma nahmen angesprochen werden.
This book discusses the production of bioethanol from water hyacinth, a potential source of lignocellulosic biomass. Biofuels, as an alternative to fossil fuels, not only ensure energy security but also mitigate air pollution and reduce greenhouse emissions. Biofuels can be produced from sugar- and starch-rich food crops (first-generation biofuel) or lignocellulosic biomass (second-generation biofuel). However, the overexploitation of conventional lignocellulosic sources such as agro-industrial residues, dedicated herbaceous, hardwoods and softwoods and forest residues may lead to problems in terms of land management and biodiversity conservation. Non-conventional sources include industrial cellulosic waste, municipal solid waste and weeds. Of these, weeds are an attractive lignocellulosic source due to their prevalence and easy availability. Eichhornia crassipes, commonly known as water hyacinth, is one of the world’s most invasive weeds due to its rapidproliferation rate, efficient survival strategies in extreme conditions, and it has a significant impact on the environment, ecological communities, human health and socioeconomic development. Strategies including physical removal, chemical methods and biological control agents have proven inefficient in completely eradicating Eichhornia crassipes. On the other hand, water hyacinth has a low lignin and high holocellulose content and is a rich source of lignocellulosic biomass, and has therefore been exploited as a raw material for the production of biofuel, biogas, animal and fish feed, compost and other valuable products. Further, being an aquatic plant, it does not compete with food crops for land resources. The bioethanol-generating capacity of water hyacinth is comparable to that of agricultural waste, making it a potential raw material for biofuel production.