// Function to convert degrees to radians function toRadians(degrees) { return degrees * (Math.PI / 180); } // Function to calculate sunrise and sunset times function calculateSunriseSunset(latitude, longitude, date) { var zenith = 90.83333333333333; // Official zenith for sunrise/sunset var timezoneOffset = date.getTimezoneOffset() / 60; // Timezone offset in hours // Convert latitude and longitude to radians var latRad = toRadians(latitude); var lngRad = toRadians(longitude); // Calculate the day of the year (1-365) var n = Math.floor(date.getTime() / 86400000) - Math.floor(new Date(date.getFullYear(), 0, 0).getTime() / 86400000) + 1; // Calculate the mean solar noon var t = n + ((6 - longitude) / 24); // Calculate the solar mean anomaly var m = (0.9856 * t) - 3.289; // Calculate the equation of center var c = (1.916 * Math.sin(toRadians(m))) + (0.02 * Math.sin(toRadians(2 * m))) + (0.0003 * Math.sin(toRadians(3 * m))); // Calculate the ecliptic longitude var lambda = (m + c + 180 + 102.9372) % 360; // Calculate the solar transit var jTransit = 2451545.5 + t + 0.0053 * Math.sin(toRadians(m)) - 0.0069 * Math.sin(toRadians(2 * lambda)); // Calculate the declination of the sun var sinDelta = Math.sin(toRadians(lambda)) * Math.sin(toRadians(23.44)); var delta = Math.asin(sinDelta); // Calculate the hour angle var cosH = (Math.sin(toRadians(-0.83)) - Math.sin(latRad) * sinDelta) / (Math.cos(latRad) * Math.cos(delta)); // Check if the sun is above the horizon if (cosH > 1 || cosH < -1) { return null; // Sun is always below the horizon } // Calculate the sunrise and sunset hour angles var h0 = Math.acos(cosH); var h1 = toRadians(360) - h0; // Calculate the local solar time of sunrise and sunset var jSunrise = jTransit - h0 / (2 * Math.PI); var jSunset = jTransit + h0 / (2 * Math.PI); // Calculate the UTC times of sunrise and sunset var utcSunrise = new Date((jSunrise - 2451545) * 86400000); var utcSunset = new Date((jSunset - 2451545) * 86400000); // Adjust the UTC times to the local timezone var sunriseTime = new Date(utcSunrise.getTime() + (timezoneOffset * 3600000)); var sunsetTime = new Date(utcSunset.getTime() + (timezoneOffset * 3600000)); return { sunrise: sunriseTime, sunset: sunsetTime }; } // Get current date and time var currentDate = new Date(); // Latitude and longitude of India var latitude = 13.0827; var longitude = 80.2707; // Calculate sunrise and sunset times for India var sunTimes = calculateSunriseSunset(latitude, longitude, currentDate); // Format sunrise and sunset times var sunriseTime = sunTimes.sunrise.toLocaleTimeString([], { hour: '2-digit', minute: '2-digit' }); var sunsetTime = sunTimes.sunset.toLocaleTimeString([], { hour: '2-digit', minute: '2-digit' }); // Output sunrise and sunset times console.log('Sunrise time: ' + sunriseTime); console.log('Sunset time: ' + sunsetTime);
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Javascript(JS) is a object-oriented programming language which adhere to ECMA Script Standards. Javascript is required to design the behaviour of the web pages.
var readline = require('readline');
var rl = readline.createInterface({
input: process.stdin,
output: process.stdout,
terminal: false
});
rl.on('line', function(line){
console.log("Hello, " + line);
});
Keyword | Description | Scope |
---|---|---|
var | Var is used to declare variables(old way of declaring variables) | Function or global scope |
let | let is also used to declare variables(new way) | Global or block Scope |
const | const is used to declare const values. Once the value is assigned, it can not be modified | Global or block Scope |
let greetings = `Hello ${name}`
const msg = `
hello
world!
`
An array is a collection of items or values.
let arrayName = [value1, value2,..etc];
// or
let arrayName = new Array("value1","value2",..etc);
let mobiles = ["iPhone", "Samsung", "Pixel"];
// accessing an array
console.log(mobiles[0]);
// changing an array element
mobiles[3] = "Nokia";
Arrow Functions helps developers to write code in concise way, it’s introduced in ES6.
Arrow functions can be written in multiple ways. Below are couple of ways to use arrow function but it can be written in many other ways as well.
() => expression
const numbers = [0, 1, 2, 3, 4, 5, 6, 7, 8, 9]
const squaresOfEvenNumbers = numbers.filter(ele => ele % 2 == 0)
.map(ele => ele ** 2);
console.log(squaresOfEvenNumbers);
let [firstName, lastName] = ['Foo', 'Bar']
let {firstName, lastName} = {
firstName: 'Foo',
lastName: 'Bar'
}
const {
title,
firstName,
lastName,
...rest
} = record;
//Object spread
const post = {
...options,
type: "new"
}
//array spread
const users = [
...adminUsers,
...normalUsers
]
function greetings({ name = 'Foo' } = {}) { //Defaulting name to Foo
console.log(`Hello ${name}!`);
}
greet() // Hello Foo
greet({ name: 'Bar' }) // Hi Bar
IF is used to execute a block of code based on a condition.
if(condition){
// code
}
Else part is used to execute the block of code when the condition fails.
if(condition){
// code
} else {
// code
}
Switch is used to replace nested If-Else statements.
switch(condition){
case 'value1' :
//code
[break;]
case 'value2' :
//code
[break;]
.......
default :
//code
[break;]
}
For loop is used to iterate a set of statements based on a condition.
for(Initialization; Condition; Increment/decrement){
//code
}
While is also used to iterate a set of statements based on a condition. Usually while is preferred when number of iterations are not known in advance.
while (condition) {
// code
}
Do-while is also used to iterate a set of statements based on a condition. It is mostly used when you need to execute the statements atleast once.
do {
// code
} while (condition);
ES6 introduced classes along with OOPS concepts in JS. Class is similar to a function which you can think like kind of template which will get called when ever you initialize class.
class className {
constructor() { ... } //Mandatory Class method
method1() { ... }
method2() { ... }
...
}
class Mobile {
constructor(model) {
this.name = model;
}
}
mbl = new Mobile("iPhone");