What I Learned Today:
- Asynchronous JavaScript:
Definition: Asynchronous programming allows JavaScript to perform tasks without waiting for a previous task to complete.
Use Case: Making API calls or other time-consuming operations.
Benefit: Improves efficiency by enabling other tasks to run while waiting for a response.
- Callbacks:
- Definition: A callback is a function passed as an argument to another function, executed later when required.
- Challenge: Nested callbacks create callback hell, making the code hard to read and maintain.
- Solution: Promises were introduced to simplify asynchronous handling.
- Promises:
- Definition: Promises handle asynchronous operations more cleanly and avoid callback hell.
States of Promises:
Pending: Initial state, waiting for the result.
Resolved: The operation is successful.
Rejected: The operation failed.Methods:
.then(): Executes when the promise is resolved.
.catch(): Executes when the promise is rejected.
.finally(): Executes regardless of whether the promise is resolved or rejected.
Example of promises
const fetchData = () => { return new Promise((resolve, reject) => { let success = true; // Simulating success or failure setTimeout(() => { success ? resolve("Data fetched!") : reject("Failed to fetch data."); }, 2000); }); }; fetchData() .then((data) => console.log(data)) // Output: Data fetched! .catch((error) => console.error(error)) .finally(() => console.log("Operation completed."));
- Async/Await
- Purpose: Built on Promises for cleaner and more readable code.
- Async Function: Declares a function that will handle asynchronous operations.
- Await Keyword: Pauses the function execution until the promise resolves or rejects.
Example of Async/Await:
const fetchDataAsync = async () => { try { const data = await fetchData(); // Wait for the promise to resolve console.log(data); // Output: Data fetched! } catch (error) { console.error(error); } finally { console.log("Operation completed."); } }; fetchDataAsync();
5.Real-Life Analogy:
- Promises: Pending: Order pizza online and wait for delivery. Resolved: Pizza arrives. You enjoy your meal. Rejected: Pizza doesn’t arrive. You complain.
- Async/Await: You continue reading a book while waiting for the pizza to arrive.
6.Promise.all
- Purpose: Execute multiple promises concurrently and wait for all to complete. Example:
const promise1 = Promise.resolve("Task 1 completed"); const promise2 = Promise.resolve("Task 2 completed"); Promise.all([promise1, promise2]) .then((results) => console.log(results)) // Output: ["Task 1 completed", "Task 2 completed"] .catch((error) => console.error(error));
- Async/Await with Fetch API
- Fetch: A modern way to make HTTP requests in JavaScript. Example:
const fetchDataFromAPI = async () => { try { const response = await fetch("https://jsonplaceholder.typicode.com/posts"); const data = await response.json(); console.log(data); } catch (error) { console.error("Error fetching data:", error); } }; fetchDataFromAPI();
Highlights
- Promises clean up asynchronous operations and improve error handling.
- Async/Await makes the code easier to write and understand, especially for chained Promises.
- Promise.all is useful for running multiple asynchronous tasks in parallel.
So far it's been a beautiful ride.
Day 10 with fire
The above is the detailed content of My React Journey: Day 9. For more information, please follow other related articles on the PHP Chinese website!

JavaScript core data types are consistent in browsers and Node.js, but are handled differently from the extra types. 1) The global object is window in the browser and global in Node.js. 2) Node.js' unique Buffer object, used to process binary data. 3) There are also differences in performance and time processing, and the code needs to be adjusted according to the environment.

JavaScriptusestwotypesofcomments:single-line(//)andmulti-line(//).1)Use//forquicknotesorsingle-lineexplanations.2)Use//forlongerexplanationsorcommentingoutblocksofcode.Commentsshouldexplainthe'why',notthe'what',andbeplacedabovetherelevantcodeforclari

The main difference between Python and JavaScript is the type system and application scenarios. 1. Python uses dynamic types, suitable for scientific computing and data analysis. 2. JavaScript adopts weak types and is widely used in front-end and full-stack development. The two have their own advantages in asynchronous programming and performance optimization, and should be decided according to project requirements when choosing.

Whether to choose Python or JavaScript depends on the project type: 1) Choose Python for data science and automation tasks; 2) Choose JavaScript for front-end and full-stack development. Python is favored for its powerful library in data processing and automation, while JavaScript is indispensable for its advantages in web interaction and full-stack development.

Python and JavaScript each have their own advantages, and the choice depends on project needs and personal preferences. 1. Python is easy to learn, with concise syntax, suitable for data science and back-end development, but has a slow execution speed. 2. JavaScript is everywhere in front-end development and has strong asynchronous programming capabilities. Node.js makes it suitable for full-stack development, but the syntax may be complex and error-prone.

JavaScriptisnotbuiltonCorC ;it'saninterpretedlanguagethatrunsonenginesoftenwritteninC .1)JavaScriptwasdesignedasalightweight,interpretedlanguageforwebbrowsers.2)EnginesevolvedfromsimpleinterpreterstoJITcompilers,typicallyinC ,improvingperformance.

JavaScript can be used for front-end and back-end development. The front-end enhances the user experience through DOM operations, and the back-end handles server tasks through Node.js. 1. Front-end example: Change the content of the web page text. 2. Backend example: Create a Node.js server.

Choosing Python or JavaScript should be based on career development, learning curve and ecosystem: 1) Career development: Python is suitable for data science and back-end development, while JavaScript is suitable for front-end and full-stack development. 2) Learning curve: Python syntax is concise and suitable for beginners; JavaScript syntax is flexible. 3) Ecosystem: Python has rich scientific computing libraries, and JavaScript has a powerful front-end framework.


Hot AI Tools

Undresser.AI Undress
AI-powered app for creating realistic nude photos

AI Clothes Remover
Online AI tool for removing clothes from photos.

Undress AI Tool
Undress images for free

Clothoff.io
AI clothes remover

Video Face Swap
Swap faces in any video effortlessly with our completely free AI face swap tool!

Hot Article

Hot Tools

WebStorm Mac version
Useful JavaScript development tools

SublimeText3 Linux new version
SublimeText3 Linux latest version

SublimeText3 Mac version
God-level code editing software (SublimeText3)

Atom editor mac version download
The most popular open source editor

Dreamweaver CS6
Visual web development tools
