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The transport layer security protects data integrity and prevents tampering over a secured medium

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Vivek Vishwakarma
The transport layer security protects data integrity and prevents tampering over a secured medium

Transport Layer Security (TLS) is an encryption technology that is used in conjunction with the Internet to allow various devices to create secure connectivity. Because the names "Network Layer" and "SSL," a well-known technology for secure communication on the internet, are similar, the moniker "TLS" was coined. In a nutshell, Transport Layer Security (TLS) is a type of encryption that allows two or more parties to communicate securely. It's a symmetric key-based algorithm that encrypts data so that it can be safeguarded even if the device is stolen or lost. TLS was designed to facilitate secure conversations over a public network. Cisco created it in order to protect sensitive data transmitted via networks. SSL was the most widely utilised secure data transport layer prior to its adoption by large corporations and websites. In a nutshell, it's a method of making data as secure as feasible.

The Internet community as a whole uses transport layer security for a variety of reasons (TLS). One of the advantages is that it provides a higher level of security than ordinary SSL. An end-data user's is safeguarded from tampering or theft via SSL. However, SSL can only protect you so much because the information you're sending can't be seen by the receiver. The information being transferred is first encrypted using an algorithm. The Encrypted Transport layer then ensures that the encryption algorithm is maintained for the duration of the transmission. Any information that isn't encrypted is completely visible. The browser validates the request through the Transport layer when an end-user requests a file from a website. It returns an error message if the information requested is not secured.

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Vivek Vishwakarma
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