The first page that you normally view at a Website is -
Home page
When you visit a website on the internet, the first page that typically loads is the entry point for that site. This primary page serves as a central hub, providing visitors with an overview of the website's content and navigation options.
Let's look at the options provided to understand which term correctly identifies this first page:
Based on these definitions, the standard and correct term for the first page you normally view at a Website is the Home page.
The Home page plays a crucial role in a website's design and user experience. Its purpose is to:
It acts as the navigational starting point for exploring the rest of the website.
Here's a quick comparison of the terms:
| Term | Meaning | Is it the first page viewed? |
|---|---|---|
| First page | Literal description | Yes, but not the standard term |
| Front page | Figurative (like a newspaper) | Sometimes used informally, but not technical |
| Home page | Standard introductory page of a website | Yes, typically |
| Master page | Development template for layout | No (internal development concept) |
Therefore, the term that correctly identifies the initial page you see when visiting a website is the Home page.
| Concept | Description | Relevance to Website First Page |
|---|---|---|
| URL (Uniform Resource Locator) | The web address used to locate resources on the internet. | Entering a domain name URL typically loads the Home page. |
| Hyperlink | An element that links to another web page or resource. | Home page uses hyperlinks for navigation to other pages. |
| Navigation Menu | A list of links usually at the top or side of a web page. | Often prominently displayed on the Home page to guide users. |
Besides the Home page, websites consist of various types of pages, each serving a different purpose:
While these pages are important, the Home page remains the standard initial entry point for most visitors arriving at a website.
A stone is thrown horizontally from the top of a 20 m high building with a speed of 12 m/s. It hits the ground at a distance R from the building. Taking g = 10 m/s2 and neglecting air resistance will give :
A sphere of volume V is made of a material with lower density than water. While on Earth, it floats on water with its volume f1V (f1 < 1) submerged. On the other hand, on a spaceship accelerating with acceleration a < g (g is the acceleration due to gravity on Earth) in outer space, its submerged volume in water is f2V. Then:
A railway wagon (open at the top) of mass M1 is moving with speed v1 along a straight track. As a result of rain, after some time it gets partially filled with water so that the mass of the wagon becomes M2 and speed becomes v2. Taking the rain to be falling vertically and the water stationery inside the wagon, the relation between the two speeds v1 and v2 is :
Consider the following statements:
1. Distance between the longitudes becomes zero on North Pole and South Pole.
2. Distance between the longitudes is maximum on the Equator.
3. Number of longitudes is more than number of latitudes.
Which of the statements given above is/are correct?
One block of 2⋅0 kg mass is placed on top of another block of 3⋅0 kg mass. The coefficient of static friction between the two blocks is 0⋅2. The bottom block is pulled with a horizontal force F such that both the blocks move together without slipping. Taking acceleration due to gravity as 10 m/s2, the maximum value of the frictional force is :