Products related to Ionic:
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Ionic in Action
DESCRIPTION AngularJS has rapidly become the most popular web development framework for browser-based applications, but it's not a great solution for mobile apps.Ionic, an open source framework, blends the best features of AngularJS with Cordova (previously known as Phonegap) to package web applications into a native-quality mobile app.In other words, it allows users to build mobile apps using the web technologies they already know and love.Ionic does all the heavy lifting using CSS and JavaScript so users can get clean, native looking cross-platform apps without the hassle of building separate native apps for iOS and Android. Ionic in Action teaches web developers how to build cross-platform mobile apps for phones and tablets.It helps them extend their web development skills to build apps that are indistinguishable from native iOS or Android projects.With carefully explained examples the book shows how to build several mobile apps that demonstrate mobile-specific features such as GPS, camera, notifications, UI controls, and integrating with external data sources.Lastly, the book covers ways to test apps to improve stability and catch errors during development. KEY SELLING POINTS Covers the entire mobile development process Best practices for building mobile apps Sample apps demonstrate wide set of available features AUDIENCE The reader should be experienced in web development with HTML, CSS, and JavaScript.Some familiarity with AngularJS is helpful but not required. ABOUT THE TECHNOLOGY AngularJS is the most popular web development framework for browser-based applications.Ionic, an open source framework, blends the best features of AngularJS with Cordova (previously known as Phonegap) to package web applications into a native-quality mobile app.The book teaches how to build mobile apps for phones and tablets that work on both Apple or Google based operating systems, iOS and Android.
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Investing in Bonds For Dummies
Improve the strength of your portfolio with this straightforward guide to bond investing Investing in Bonds For Dummies introduces you to the basics you need to know to get started with bond investing.You’ll find details on understanding bond returns and risks, and recognizing the major factors that influence bond performance.Unlike some investing vehicles, bonds typically pay interest on a regular schedule, so you can use them to provide an income stream while you protect your capital.This easy-to-understand guide will show you how to incorporate bonds into a diversified portfolio and a solid retirement plan.Learn the ins and outs of buying and selling bonds and bond fundsUnderstand the risks and potential rewards in corporate bonds, government bonds, and beyondDiversify your portfolio by using bonds to balance stocks and other investmentsGain the fundamental information you need to make smart bond investment choicesThis Dummies investing guide is great for investors looking for a resource to help them understand, evaluate, and incorporate bonds into their current investment portfolios.
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Electric Ionic Hairbrush Portable Ionic Hair Comb Brush Negative Ions Massage Combs
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Ionic Liquid in Process Intensification
Ionic Liquids in Process Intensification focuses on ionic liquids to carry out process intensification research.The book uses computational simulation methods of ionic liquids, as well as the structural design, prediction and structure regulation to describe the process of ionic liquids intensify reaction, separation, photochemistry and materials synthesis related to chemical processes.It analyzes and discusses the latest research results and typical application cases and provides new research ideas and methods for the correlation of different scales from molecular to chemical engineering. Users will find a comprehensive resource that combines computational chemistry, physical chemistry, chemical engineering, materials science, and many other basic and applied disciplines.
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How do ionic bonds separate?
Ionic bonds separate when the attraction between the positively charged cation and the negatively charged anion is overcome. This can occur through the introduction of a solvent that can surround and separate the ions, or through the application of heat or energy that disrupts the attraction between the ions. Once the attraction is overcome, the ions are free to move independently, resulting in the dissolution of the ionic compound.
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What are the characteristics of ionic bonds?
Ionic bonds are formed between a metal and a non-metal. In an ionic bond, one atom loses electrons (cation) while the other gains electrons (anion) to achieve a full outer shell. This transfer of electrons results in the formation of positively and negatively charged ions that are attracted to each other, creating a strong bond. Ionic bonds are typically strong, electrostatic attractions between oppositely charged ions.
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Are there also dipoles in ionic bonds?
No, there are no dipoles in ionic bonds. Ionic bonds are formed between ions of opposite charges, typically a metal cation and a nonmetal anion. These ions are held together by strong electrostatic forces of attraction, resulting in a transfer of electrons rather than a sharing of electrons as in covalent bonds. As a result, there is no separation of charges within the bond, and therefore no dipoles are present.
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What is the difference between ionic bonds and covalent bonds?
Ionic bonds form between two atoms when one atom transfers one or more electrons to another atom. This results in the formation of positively charged ions (cations) and negatively charged ions (anions) that are attracted to each other. Covalent bonds, on the other hand, form when two atoms share one or more pairs of electrons. This sharing of electrons creates a strong bond between the atoms. In summary, ionic bonds involve the transfer of electrons, while covalent bonds involve the sharing of electrons.
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Ionic Channels of Excitable Membranes
This fully revised and expanded Third Edition of Ionic Channels of Excitable Membranes describes the known channels and their physiological functions, then develops the conceptual background needed to understand their architecture and molecular mechanisms of operation.It includes new chapters on calcium signalling, structural biology, and molecular biology and genomics.Ionic Channels of Excitable Membranes begins with the classical biophysical work of Hodgkin and Huxley, continues with the roles of channels in cellular signaling, then develops the physical and molecular principles needed for explaining permeation, gating, pharmacological modification, and molecular diversity, and ends with a discussion of channel evolution.Ionic Channels of Excitable Membranes is written to be accessible and interesting to life scientists and physical scientists of all kinds.It introduces all the concepts that a graduate student should be aware of but is also effective in advanced undergraduate courses.It has long been the recognised authoritative overview of this field used by all neuroscientists.
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CHI Ionic Shine Shades Red
CHI Ionic Shine Shades is a versatile liquid color line that can be used as a standalone coloring system or in conjunction with CHI Ionic Permanent Shine Cream Hair Color. Easy to mix and apply liquid formula features PDS coloring system that can be used for permanent, demi-permanent and semi-permanent color formulations. CHI shine shades offers the ability to deposit lift, tone, correct, and refresh all color tones, perfect for maximizing color services in the salon. Benefits:- Liquid Formula. Same CHI Ionic Permanent Shine Cream Color payoff in liquid consistency.- Versatile Formula. Easy to mix and combine with cream formula.- PDS Color System. Multiple mixing options allow for permanent, demi-permanent and semi-permanent usage.- Silk and Oil. Improve overall hair condition and shine.Full colour palette here.
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CHI Ionic Shine Shades Blue
CHI Ionic Shine Shades is a versatile liquid color line that can be used as a standalone coloring system or in conjunction with CHI Ionic Permanent Shine Cream Hair Color. Easy to mix and apply liquid formula features PDS coloring system that can be used for permanent, demi-permanent and semi-permanent color formulations. CHI shine shades offers the ability to deposit lift, tone, correct, and refresh all color tones, perfect for maximizing color services in the salon. Benefits:- Liquid Formula. Same CHI Ionic Permanent Shine Cream Color payoff in liquid consistency.- Versatile Formula. Easy to mix and combine with cream formula.- PDS Color System. Multiple mixing options allow for permanent, demi-permanent and semi-permanent usage.- Silk and Oil. Improve overall hair condition and shine.Full colour palette here.
Price: 6.32 £ | Shipping*: 5.95 £ -
CHI Ionic Shine Shades Gold
CHI Ionic Shine Shades is a versatile liquid color line that can be used as a standalone coloring system or in conjunction with CHI Ionic Permanent Shine Cream Hair Color. Easy to mix and apply liquid formula features PDS coloring system that can be used for permanent, demi-permanent and semi-permanent color formulations. CHI shine shades offers the ability to deposit lift, tone, correct, and refresh all color tones, perfect for maximizing color services in the salon. Benefits:- Liquid Formula. Same CHI Ionic Permanent Shine Cream Color payoff in liquid consistency.- Versatile Formula. Easy to mix and combine with cream formula.- PDS Color System. Multiple mixing options allow for permanent, demi-permanent and semi-permanent usage.- Silk and Oil. Improve overall hair condition and shine.Full colour palette here.
Price: 6.06 £ | Shipping*: 5.95 £
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What are the differences between covalent bonds, metallic bonds, and ionic bonds?
Covalent bonds are formed when two atoms share electrons, resulting in a strong bond between the atoms. Metallic bonds occur between metal atoms, where the electrons are delocalized and free to move throughout the structure, creating a strong bond. Ionic bonds are formed between a metal and a nonmetal, where one atom transfers electrons to the other, resulting in the formation of positively and negatively charged ions that are attracted to each other. Overall, covalent bonds involve electron sharing, metallic bonds involve electron delocalization, and ionic bonds involve electron transfer.
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How can one experimentally differentiate between ionic and molecular bonds?
One way to experimentally differentiate between ionic and molecular bonds is to measure the electrical conductivity of the substance. Ionic compounds typically conduct electricity when dissolved in water or in molten form, due to the presence of free ions that can carry electric charge. In contrast, molecular compounds do not conduct electricity in either form. Another method is to use a spectrometer to analyze the substance's absorption or emission spectra. Ionic compounds often produce characteristic spectra due to the presence of ions, while molecular compounds have different spectral patterns.
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How do ionic bonds work and how are they calculated?
Ionic bonds form when one atom transfers electrons to another atom, resulting in the formation of positively and negatively charged ions. These ions are then attracted to each other due to their opposite charges, creating a strong bond. The strength of an ionic bond can be calculated using Coulomb's law, which takes into account the charges of the ions and the distance between them. The formula for Coulomb's law is: E = k * (|q1 * q2|) / r, where E is the energy of the bond, k is Coulomb's constant, q1 and q2 are the charges of the ions, and r is the distance between the ions.
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Does anyone know the differences between ionic and metallic bonds?
Ionic bonds occur between a metal and a nonmetal, where one atom transfers electrons to the other, resulting in the formation of positively and negatively charged ions that are attracted to each other. Metallic bonds, on the other hand, occur between metal atoms, where the outer electrons are delocalized and free to move throughout the structure, creating a "sea of electrons" that holds the metal atoms together. In summary, the main difference between ionic and metallic bonds is the nature of the bonding electrons - in ionic bonds, electrons are transferred, while in metallic bonds, electrons are delocalized and shared among all the atoms in the structure.
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