Abstract:
Decentralized security methods and systems using a hybrid permission based blockchain with public key infrastructure (PKI) for storage, access, distribution, exchange and execution of electronic information including images, files, media between individuals and or nodes is more secure on connected devices and servers than traditional systems and software applications that are vulnerable to cyberattacks and theft. Email is a popular way of transferring documents and other forms of content. However, there does not exist a decentralized system to protect sensitive information against cyber attacks and theft such that the information can be shared, accessed, executed, and or distributed to other individual(s) and or systems—including save, upload, email, co-author, co-edit, redline, comment, markup, e-sign documents that automatically enforces legally binding and verification processes for and between individual(s) and or business(es). To store and distribute electronic information securely using a decentralized method and system, authorized individuals(s) are authenticated and automatically entered into a smart contract, using a private and public key authentication and verification process where the electronic information is stored as a block that is immutable and secure during both transmission and access by authorized user(s) only. The electronic information may be distributed using a webmail plugin extension and a decentralized storage vault using blockchain to enable secure transmission and storage, which may act in concert with software controlled by the registered owner of the electronic information. The electronic information is securely, transmitted to the registered members using a permission based blockchain on our servers. Decentralized systems and methods provide smart contracting when electronic information is exchanged between authorized and permitted user(s) where creating, uploading, accessing, viewing, editing, redlining, replying, printing, downloading, e-signing and or marking up are each stored as separate immutable blocks within the permission based blockchain allowing the system to securely track the version history and users activity to enforce legally binding and verification processes. Standard email, storage systems and web applications today lack the decentralized security systems and methods for authorized users) to access, control, share, add, modify and distribute the information exchange processes between connected devices and systems that protect against cyber attacks and data theft.
Abstract:
Decentralized systems and methods provide smart contracting when electronic information is exchanged between authorized and permitted user(s) where creating, uploading, accessing, viewing, editing, redlining, replying, printing, downloading, e-signing and or marking up are each stored as separate immutable blocks within the permission based blockchain allowing the system to securely track the version history and users activity to enforce legally binding and verification processes.
Abstract:
This document describes, among other things, systems and methods for managing a community-editable product catalog. A method receives, by a network-based commerce system, an indication from a client computer to create a listing for a product. The method determines whether a catalog entry associated with the product exists and when the catalog entry does not exist, prompts a user to create a new catalog entry and stores either the catalog entry or the new catalog entry in the network-based commerce system.
Abstract:
Decentralized security methods and systems using a hybrid permission based blockchain with public key infrastructure (PKI) for storage, access, distribution, exchange and execution of electronic information including images, files, media between individuals and or nodes is more secure on connected devices and servers than traditional systems and software applications that are vulnerable to cyberattacks and theft. Email is a popular way of transferring documents and other forms of content. However, there does not exist a decentralized system to protect sensitive information against cyber attacks and theft such that the information can be shared, accessed, executed, and or distributed to other individual(s) and or systems—including save, upload, email, co-author, co-edit, redline, comment, markup, e-sign documents that automatically enforces legally binding and verification processes for and between individual(s) and or business(es). To store and distribute electronic information securely using a decentralized method and system, authorized individuals(s) are authenticated and automatically entered into a smart contract, using a private and public key authentication and verification process where the electronic information is stored as a block that is immutable and secure during both transmission and access by authorized user(s) only. The electronic information may be distributed using a webmail plugin extension and a decentralized storage vault using blockchain to enable secure transmission and storage, which may act in concert with software controlled by the registered owner of the electronic information. The electronic information is securely, transmitted to the registered members using a permission based blockchain on our servers. Decentralized systems and methods provide smart contracting when electronic information is exchanged between authorized and permitted user(s) where creating, uploading, accessing, viewing, editing, redlining, replying, printing, downloading, e-signing and or marking up are each stored as separate immutable blocks within the permission based blockchain allowing the system to securely track the version history and users activity to enforce legally binding and verification processes. Standard email, storage systems and web applications today lack the decentralized security systems and methods for authorized users) to access, control, share, add, modify and distribute the information exchange processes between connected devices and systems that protect against cyber attacks and data theft.
Abstract:
In one embodiment, a method includes deriving a user intent from user information associated with a user, selecting an advertiser intent that aligns with the user intent, and then advertising to the user based on the advertiser intent that aligns with the user intent.