
Learn to create NFT collections, mint NFTs, and automate blockchain operations using python, web3, ipfs, and smart contracts with metadata for marketplace readiness.
Meet the instructor with over a decade in automation and blockchain, and discover how personal, professional, global culture, and programming skills combine to succeed in NFT blockchain automation.
Explore blockchain fundamentals, including distributed ledgers, immutability, and consensus mechanisms. Examine smart contracts, networks like Ethereum and Bitcoin, and the role of wallets and Web3 in decentralized transactions.
Install and secure the Metamask crypto wallet in Chrome or Firefox, create a test wallet on the Ethereum blockchain, and receive test currency via faucets.
Learn to secure metamask wallets on Chrome and Firefox, import accounts with private keys, and obtain test crypto from faucets on Joliet and Polygon Mumbai test networks.
Set up the Mumbai Polygon test network in metamask, obtain testnet funds, and learn gas fees, RPC, and private-key do's and don'ts for NFT minting.
Explore Web3 applications with MetaMask and crypto wallets to mint, buy, and trade NFTs on marketplaces like OpenSea, while understanding gas fees, network switching, and on-chain transactions.
Learn the NFT background and marketplace basics, including minting, lazy minting, IPFS storage, smart contracts, and how collections, traits, and royalties shape trades on OpenSea.
Explore NFT minting, lazy minting, and staking, including the ERC-721 standard and a token ID on the blockchain to reward NFT owners.
Explore how the IPFS interplanetary file system stores NFT artwork forever, with gas fees and blockchain networks, and learn pre-planning, minting, and building an NFT campaign for automation.
Plan your nft collection with a clear concept and simple, pronounceable names, assess minimum capital for minting and trading, and assemble a capable team including artists, developers, and marketers.
Plan NFT layers and traits, set rarity rules, and generate metadata with Python. Organize trait distribution, image size, and total image count in an Excel sheet.
The url for the Google Colab is https://colab.research.google.com/drive/1CfGey-VyHEvJ6_Mxyua7-uIKNo19_GKg#scrollTo=IViaTI7I_-AM
if you have any issues to access the Colab, you can upload nft_unicornie.ipynb file that I upload for each video
I uploaded the modified NFT layers as we added one more layer image
Leverage Python in Google Colab to generate JSON NFT metadata for 1000 images, align image and metadata filenames, and organize folders for OpenSea listings.
Learn to create OpenSea metadata using method 2, modify code for trait type values, merge 1000 unicorn images with metadata in one folder, and optimize images before minting.
Learn to mint and deploy your own NFT collection using solidity, third web, and web3 tools, mint on test networks, configure royalties, and connect to OpenSea.
Design and launch an NFT website with bootstrap studio to showcase the collection, team, and roadmap, enable automated minting, and optimize for SEO with a responsive, animated, wallet-connected frontend.
Add templates and static folders to your Flask app, render templates with render_template, and wire routes to serve the index page and assets.
Build the admin backend for the NFT app using Flask and Bootstrap Studio, securing operations, tracking user activity, and enabling automation with bots via the admin dashboard, templates, and assets.
Automate NFT minting by configuring a new ganache account, deploying a unicorn NFT collection, and connecting an admin mint endpoint with web SDKs for automated minting.
Troubleshoot nft automation by correcting the network to the girl network, verifying permissions, then mint, refresh, and place orders.
Automate nft minting with a simple framework that builds metadata and mints tokens by feeding contract addresses, nft names like unicorn, and image URLs through the web3 backend.
discover practical next steps to build NFT projects and blockchain automation, collaborate with the fractal community, set milestones, and pursue achievable timelines to grow your skills.
In Complete Guide to NFT Blockchain Automation course, NFT blockchain technologies and their usage areas will be explained with examples. Purpose of education:
Give fundamental information about Blockchain technologies, Non-Fungible Token, and related technologies.
We will mainly use Python to create and mint our NFT collection
Give background on NFTs, teach how to create and mint NFTs
Show how to create smart contracts so that you can mint NFTs or your own token
With several sample programs and projects, prepare you to NFT blockchain developer
Learn NFT Blockchain automation using Python, Web3 py, Web3 js and Solidity.
Introducing a new distance education, combined with knowledge and experience.
Target Participants: Newly graduated university students, NFT artists, administrators, entrepreneurs, anyone who wants to improve themselves in Web3 and Blockchain applications.
Here are the contents of the Complete Guide to NFT Blockchain Automation course:
Introduction
Blockchain Fundamentals
Market, Recent technologies related Web3
NFT Non-Fungible Tokens
Background, how to make NFT, what you need
Preplanning
Initial NFT concept building, things and investments you need
Creating your own NFT collection
How to create your unique NFT story, NFT images, metadata files
Smart planning for NFT Minting
Which blockchain network you would use
Minting and Marketing your own NFT collection
Opensea integration
Designing NFT website
NFT Blockchain Automation
Next Steps
Extras
Vx3D NFTs
Mint your own token
We are looking forward to be working with you to create best NFT blockchain automation tools for your needs.
When you complete this course, you will receive a certificate from Udemy and we will provide you all NFT images, metadata files and source codes for the courses.