


Javascript multi-browser compatibility issues and solutions_javascript skills
1. document.formName.item(”itemName”) problem
Problem description: Under IE, you can use document.formName.item("itemName") or document.formName.elements ["elementName"]; under Firefox, you can only use document.formName.elements["elementName"].
Solution: Use document.formName.elements["elementName"] uniformly.
2. Problems with collection objects
Problem description: Under IE, you can use () or [] to obtain collection objects; under Firefox, you can only use [ ] Get the collection class object.
Solution: Use [] uniformly to obtain collection objects.
3. Custom attribute problem
Problem description: Under IE, you can use the method of getting regular attributes to get custom attributes, or you can use getAttribute() to get them Custom attributes; under Firefox, you can only use getAttribute() to obtain custom attributes.
Solution: Get custom attributes through getAttribute().
4. eval("idName") problem
Problem description: Under IE, you can use eval("idName") or getElementById("idName") to obtain The HTML object whose id is idName; under Firefox, you can only use getElementById("idName") to obtain the HTML object whose id is idName.
Solution: Use getElementById("idName") uniformly to obtain the HTML object with the id of idName.
5. The problem that the variable name is the same as the ID of an HTML object
Problem description: Under IE, the ID of the HTML object can be used directly as the variable name of the subordinate object of the document. , but not under Firefox; under Firefox, you can use the same variable name as the HTML object ID, but not under IE.
Workaround: Use document.getElementById("idName") instead of document.idName. It is best not to use variable names with the same HTML object ID to reduce errors; when declaring variables, always add the var keyword to avoid ambiguity.
6. Const problem
Problem description: Under Firefox, you can use the const keyword or the var keyword to define constants; under IE, you can only use the var keyword to define constants.
Solution: Use the var keyword uniformly to define constants.
7. Problem with input.type attribute
Problem description: The input.type attribute under IE is read-only; but under Firefox, the input.type attribute is read-write.
Solution: Do not modify the input.type attribute. If you must modify it, you can hide the original input first, and then insert a new input element at the same position.
8. Window.event problem
Problem description: window.event can only run under IE, but not under Firefox. This is because of Firefox’s event May only be used at the scene of the incident.
Solution: Add the event parameter to the function where the event occurs, and use var myEvent = evt?evt:(window.event?window.event:null) in the function body (assuming the formal parameter is evt)
Example :

Python and JavaScript have their own advantages and disadvantages in terms of community, libraries and resources. 1) The Python community is friendly and suitable for beginners, but the front-end development resources are not as rich as JavaScript. 2) Python is powerful in data science and machine learning libraries, while JavaScript is better in front-end development libraries and frameworks. 3) Both have rich learning resources, but Python is suitable for starting with official documents, while JavaScript is better with MDNWebDocs. The choice should be based on project needs and personal interests.

The shift from C/C to JavaScript requires adapting to dynamic typing, garbage collection and asynchronous programming. 1) C/C is a statically typed language that requires manual memory management, while JavaScript is dynamically typed and garbage collection is automatically processed. 2) C/C needs to be compiled into machine code, while JavaScript is an interpreted language. 3) JavaScript introduces concepts such as closures, prototype chains and Promise, which enhances flexibility and asynchronous programming capabilities.

Different JavaScript engines have different effects when parsing and executing JavaScript code, because the implementation principles and optimization strategies of each engine differ. 1. Lexical analysis: convert source code into lexical unit. 2. Grammar analysis: Generate an abstract syntax tree. 3. Optimization and compilation: Generate machine code through the JIT compiler. 4. Execute: Run the machine code. V8 engine optimizes through instant compilation and hidden class, SpiderMonkey uses a type inference system, resulting in different performance performance on the same code.

JavaScript's applications in the real world include server-side programming, mobile application development and Internet of Things control: 1. Server-side programming is realized through Node.js, suitable for high concurrent request processing. 2. Mobile application development is carried out through ReactNative and supports cross-platform deployment. 3. Used for IoT device control through Johnny-Five library, suitable for hardware interaction.

I built a functional multi-tenant SaaS application (an EdTech app) with your everyday tech tool and you can do the same. First, what’s a multi-tenant SaaS application? Multi-tenant SaaS applications let you serve multiple customers from a sing

This article demonstrates frontend integration with a backend secured by Permit, building a functional EdTech SaaS application using Next.js. The frontend fetches user permissions to control UI visibility and ensures API requests adhere to role-base

JavaScript is the core language of modern web development and is widely used for its diversity and flexibility. 1) Front-end development: build dynamic web pages and single-page applications through DOM operations and modern frameworks (such as React, Vue.js, Angular). 2) Server-side development: Node.js uses a non-blocking I/O model to handle high concurrency and real-time applications. 3) Mobile and desktop application development: cross-platform development is realized through ReactNative and Electron to improve development efficiency.

The latest trends in JavaScript include the rise of TypeScript, the popularity of modern frameworks and libraries, and the application of WebAssembly. Future prospects cover more powerful type systems, the development of server-side JavaScript, the expansion of artificial intelligence and machine learning, and the potential of IoT and edge computing.


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