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Build web and mobile apps quickly with Oracle Visual Builder and
delve into real-time end-to-end use cases, exploring best
practices, recommendations, security, and debugging techniques Key
Features Execute various real-time use cases and develop web and
mobile applications quickly Enhance your skills by extending Oracle
and non-Oracle SaaS applications using VB Gain the knowledge needed
to take on projects directly and work independently Book
DescriptionOrganizations are moving their applications, data, and
processes to the cloud to reduce application costs, effort, and
maintenance. However, adopting new technology poses challenges for
developers, solutions architects, and designers due to a lack of
knowledge and appropriate practical training resources. This book
helps you get to grips with Oracle Visual Builder (VB) and enables
you to quickly develop web and mobile applications and deploy them
to production without hassle. This book will provide you with a
solid understanding of VB so that you can adopt it at a faster pace
and start building applications right away. After working with
real-time examples to learn about VB, you'll discover how to
design, develop, and deploy web and mobile applications quickly.
You'll cover all the VB components in-depth, including web and
mobile application development, business objects, and service
connections. In order to use all these components, you'll also
explore best practices, security, and recommendations, which are
well explained within the chapters. Finally, this book will help
you gain the knowledge you need to enhance the performance of an
application before deploying it to production. By the end of this
book, you will be able to work independently and deploy your VB
applications efficiently and with confidence. What you will learn
Get started with VB and explore its architecture and basic building
blocks Gain a clear understanding of business objects and learn how
to manage them Create service connections to connect to the
external API and Oracle SaaS Build web and mobile apps and run them
on various devices Develop Oracle Cloud and non-Oracle SaaS app
extensions Get to grips with data and application security using
practical examples Explore best practices along with
troubleshooting and debugging mechanisms Connect your VB
application with VBS for application versioning using Git Who this
book is forThis book is for IT professionals working with UI
technologies to develop web and mobile applications for various
industries. Developers and UI designers who want to understand how
to use VB, develop scalable web and mobile applications using
drag-and-drop features, and design applications in a better way
with the help of real-time example apps and code samples will find
this book helpful. Prior experience in any UI technology,
JavaScript, and REST APIs will be useful.
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Pharmacy (Paperback)
Ankur Jain, Hemant Khambete, Sanjay Jain
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R1,288
Discovery Miles 12 880
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Ships in 10 - 15 working days
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The aim of the present research work was to investigate the
potential of emulgel in enhancing the topical delivery of
ketoconazole. Emulsion in gel have emerged as one of the most
interesting topical drug delivery system as it has dual release
control system i.e. emulsion and gel. Also the stability of
emulsion is increased when it is incorporated in gel. Emulgel
formulations of Ketoconazole were prepared using 2 types of gelling
agents: Carbopol 934 and Carbopol 940. The influence of the type of
the gelling agent and the concentration of both the oil phase and
emulsifying agent on the drug release from the prepared emulgel was
investigated using a 23 factorial design. The prepared emulgel were
evaluated for their physical appearance, viscosity, drug release,
globule size, skin irritation test, antifungal activity,
transmission electron microscopy, Ex vivo Syudy, In Vivo Study and
stability. Commercially available ketoconazole cream was used for
comparison. All the prepared emulgel showed acceptable physical
properties concerning color, homogeneity, consistency,
spreadability, and pH value. The antifungal activity and drug
release were found to be higher for optimized formulation .
Hydrogen is a possible candidate for replacing oil in the long-term
in many applications such as transportation.Storage of hydrogen at
near ambient temperatures and pressures is a puzzling issue for the
scientific community.Hydride storage is one of the most promising,
safe solutions for sustainable use. The magnesium and its alloys
have attracted a lot of attention since the gravimetric hydrogen
capacity is relatively important (7.6 wt. %) and the systems are
reversible. The Mg-based hydrides compounds have high enthalpy of
formation making them too stable for practical applications.
Additionally they have some kinetics limitations that can be
partially overcome by catalysts or nanostructuring of the alloys.
Apart from these, another approach to lower the reaction enthalpy
of MgH2 is composite preparation with the hydrogen storage
materials. The present book is an outcome of the research on the
destabilization of MgH2 by composite formation with hydrogen
absorbing ZrCr2 alloy.
In the area of energy technology, we find hydrogen (1) in gaseous,
liquid, or solid hydrocarbons; (2) in nuclear fission and fusion
processes and, (3) as synthetic fuel produced by dissociation of
H2O or hydrocarbons using primary energy. The gate to use hydrogen
as a fuel opens through the storage of hydrogen. There are number
of ways of storing hydrogen but the most practical method for
onboard application is 'Metal Hydride'. Recently Zirconium based
alloys have attracted a great deal of attention for their
substantial hydrogen storage capacity. But the high stabilities of
these hydrides as indicated by their high enthalpy values make
these alloys unsuitable for hydrogen storage applications. The
present book is an outcome of the research efforts to increase the
equilibrium pressure and thus to reduce the stability of their
hydrides. Another purpose of this study is to obtain knowledge of
structural and magnetic characteristics of the alloys and relevant
hydrides.
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