
Advance your CBSA certification with an enterprise-focused crash course on block chain basics, architecture, hyper ledger fabric, ethereal smart contracts, practice questions, pre- and post-tests, and demos.
Discover what a certified blockchain solutions architect (CBSA) is, how the CBSA exam supports pre-sales professionals, and how to compare Hyperledger, Korda, and a theorem to architect blockchain solutions.
Explore exam tested objectives for the certified blockchain solutions architect bootcamp, including proof of stake and proof of work, public versus private blockchains, cryptography, and smart contracts.
Blockchain is not all or nothing; blend legacy apps with a side chain for scalable solutions. Explore private blockchains, blockchain as a service, and IoT or smart contract use cases.
Download the course content via the provided link. The 370-plus page resource supports your exam preparation.
Access free CBSA practice exams via a no sign up link, with different questions from the course; use them to supplement your preparation, and find additional practice questions if needed.
Take a 15-question CBSA pre-test to gauge readiness, then use a post-test and practice exams on my block chain experts dot org to review answers and track improvement.
Explore core blockchain terminology, including blocks, block chains, channels, hash links, and smart contracts, and see how endorsement, membership service providers, participants, and world state fit together in Hyperledger Fabric.
Explore blockchain components such as cryptography, peer-to-peer networks, a shared ledger, consensus algorithms, validity rules, and a virtual machine. Learn how membership and transaction certificates validate transactions.
Compare proof of work, proof of stake, and other consensus systems, explaining consensus, safety, liveliness, and mining roles in Bitcoin and other blockchains.
Explain cryptocurrency as a digital currency secured by cryptography, differentiate Bitcoin from Ether, and show why private blockchains may not require tokens.
Compare public, private, and permissioned blockchains, highlighting accessibility, privacy, and governance, and explain how compliance needs and use cases influence selection for enterprise solutions.
Understand how blocks hold transactions, hashes, and metadata; how Merkel root hash references data; and how genesis block, validation, consensus, and mining with nonce enable proof of work.
Demonstrates block structure with transactions, hash, and previous hash, and explains nonce as a random input; changing inputs alters the hash across blocks to illustrate blockchain integrity.
Explore how cryptography secures blockchain transactions by using public and private keys, symmetric and asymmetric encryption, and wallet types (web, hardware, software, and paper) to protect funds.
Demonstrates sending like coin from an online web wallet to a like coin core wallet. It covers syncing, addresses, fees, and using a blockchain explorer to verify transactions.
Compare databases and blockchains to understand centralized client-server versus distributed peer-to-peer architectures, and explore immutability, transparency, and durability through ACID versus BASE properties and transaction validation.
Explore common use cases for public blockchains, including financial sector applications, audit trails, asset transfers, supply chains, tokenization, digital identity, and government programs, with notes on privacy and transparency.
Explore private, permissioned blockchain use cases, governance and identity management, and how B2B and B2C models in finance and logistics shape contracts and privacy.
Discover how Dubai leads blockchain adoption through the Smart Dubai initiative, detailing three pillars—government efficiency, industry creation, and international leadership—and a global trust network.
Discover why you might build a blockchain, weighing open source versus vendor updates, consensus, platform choices, and security, while evaluating use cases and tradeoffs like speed, immutability, and scalability.
Describe forks in public blockchains, including hard and soft forks, with examples like bitcoin cash and theorem classic, and explain segregated witness (segwit) to boost capacity and reduce malleability.
Explore when mining is needed to process and validate transactions, prevent double spending, and add blocks to the bitcoin ledger using a proof of work system with rewards and fees.
Explore Genesis Mining, a mining as a service, including setting up an account, allocating mining power, and buying hash power to mine Bitcoin, Ether, and Monaro Mining, with daily payouts.
Byzantine fault tolerance addresses distributed consensus amid rogue nodes, from the Byzantine generals problem to blockchain networks, with PBFT-based approaches used by Hyperledger Fabric and Indy.
Compare consensus methods, including proof of work, proof of stake, and delegated proof of stake, while analyzing nothing-at-stake risks, governance, and the pros and cons for blockchain security.
Explore hashing: turning input into a fixed 256-bit output where the same input yields the same hash, and small changes alter it, ensuring integrity with a demo on Enders platform.
Explore how hash functions like SHA-256 convert input data into fixed-length outputs, and see how block chain references previous hashes through nonces and mining.
Explain how private and public keys enable encryption in blockchain, compare symmetric and asymmetric methods, and outline PKI, X.509 certificates, and certificate authorities for identity verification.
Learn how smart contracts on the blockchain automate and enforce agreements with autonomy, trust, backup, safety, speed, and accuracy, while dapps bundle these contracts and run on a peer-to-peer network.
Trace the history of blockchain from the byzantine general problem to milestones such as the Satoshi white paper, Bitcoin’s 2009 launch, and the 2015 launches of Ethereum and Hyperledger.
Know that a theorem uses solidity and hyper ledger uses go for the exam, as the core languages emphasized by this objective.
Explore testing and deployment practices for blockchain apps, highlighting sdl c lifecycle, peer-to-peer design, security with x509 certificates, test networks, and ci/cd deployment, plus monitoring containers and smart contracts.
Explore how MetaMask acts as a web3 browser and bridge for Ethereum dapps, enabling in-browser testing on mainnet and test networks with gas management and blockchain explorers.
Discover how blockchain creates value through smart contracts and tokens by automating agreements, reducing costs, increasing efficiency, privacy, and security, with open source advantages.
Explore blockchain key components, including cryptography, peer-to-peer networks, and a shared digital ledger with consensus algorithms and validity rules, plus the role of virtual machines and containers like Docker.
Explore blockchain architecture as a decentralized peer-to-peer distributed ledger, contrasting it with client-server systems and examining scalability, forks, segway, off-chain channels, and the genesis block.
Compare enterprise block chains, focusing on theorem and hyper ledger, their permission and consensus models, and smart contracts, with governance by the Linux Foundation and ripple, quorum, and corda.
Bitcoin block explorers reveal network status, pool distribution, and block details, then dive into the genesis block and its zero previous hash, merkle root, and early transactions.
Explore the Hyperledger project and Hyperledger Fabric, an open-source Linux Foundation effort. See how Fabric uses modular, enterprise driven blockchains with chaincode smart contracts and Go or JavaScript support.
Explore Hyperledger Fabric's modular, plug-and-play architecture with identity services, ledger, and contract layers. Learn the three-phase consensus: endorsement, ordering, validation, and safety and liveliness in transaction flow using Kafka.
Walk through a Hyperledger Fabric transaction flow from a client proposal to endorsement, ordering, and block commits across channels with MSPs, certificate authorities, enrollment certificates, and ledgers.
Explore Hyperledger Fabric channels as private subnets that create separate ledgers and transaction logs for selected peers, governed by a leading peer and gossip-based communication.
Create and manage channels in IBM blockchain as a service, configuring default channels, genesis blocks, members, ACL, and chaincode policies with approvals and voting.
Learn hyperledger fabric development with composer, connecting a client app to peers via a rest API and Swagger UI.
Explore the roles of hyperledger fabric nodes and peers—anchor, committing, endorsing, and leader peers—and how MSP and certificates secure transactions and smart contracts.
Watch a hands-on IBM blockchain as a service demo, creating a blockchain network with peers, channels, and endorsement policies, and deploying chain code using the Marble app.
Explore deploying a hyperledger fabric network on AWS using templates and infrastructure as code, focusing on VPC setup, security groups, and region selection in a step-by-step demo.
Walks you through configuring web traffic rules and launching an EC2 instance in a VPC for Hyperledger Fabric. Covers security groups, key pairs, Elastic IP, and free tier AMI selection.
Learn to deploy an AWS hyperledger fabric blockchain using a cloud formation stack, create a policy and role, and verify blocks and the explorer dashboard (genesis block onward).
Explore how to set up an AWS managed blockchain network using Hyperledger Fabric, including creating a network, managing members, proposals, and VPC endpoints in a hands-on demo.
Discover Hyperledger Composer, a JavaScript-based framework that speeds blockchain app development on Hyperledger Fabric by using connection profiles, CTO files, and banana files to model assets, participants, and transactions.
Explore Hyperledger Fabric chaincode as a smart contract, set up Go locally, and initialize and invoke chaincode with simple examples like net and a vote.
Navigate the Hyperledger Fabric wiki to view the project dashboard, release roadmap, and working group calls, and track issues reported and resolved.
Explore the theorem platform and ether, including ERC-20 standards, token types, and how a decentralized vm enables dapps and secure token transactions.
Explore the Ethereum Virtual Machine (EVM) as a transaction-based state machine that executes Solidity contracts with gas, where accounts hold code and contracts interact via message calls.
Explore ethereum gas estimates with ether gas station, including gas price ranges and confirmation times. Use the TX calculator to compare fastest, average, and cheapest transaction costs for your dapp.
Explore Ethereum browsers like Mist and Parity to access and develop dapps, use MetaMask as a Chrome extension, and run locally on test and main networks with Swarm support.
Develop ethereum applications using solidity, serpent, and other tools, set up front-end and back-end environments, deploy on test nets with test ether, and connect via web3 libraries.
Examine Ethereum security concepts, including a public open ledger, Solidity smart contracts running on the Ethereum Virtual Machine, gas costs, and future privacy improvements with zero knowledge proofs.
Explore ethernodes.org to visualize Ethereum’s mainnet and testnet node distribution by geography, view client versions and operating systems, and note how price and latency affect online nodes.
Explore why you might take the cbsa exam, access recommended videos and hyper ledger exam posts from the blog, and receive encouragement and feedback for future classes.
Explore a block chain glossary to understand core terms like block chain as a distributed ledger, chain code as smart contracts, and key concepts such as consensus, gas, and forks.
Discover the demand for blockchain roles across titles from developer to architect, see how blockchain appears in job descriptions and requirements, and explore LinkedIn locale results.
Prepare for the cbsa bootcamp's certified blockchain solutions architect exam by understanding registration, student discounts, and the proctored pearson test with 90 minutes, 70 questions, and a 70% pass mark.
Install the Libra test net on Google Cloud Platform, set up a compute engine VM, install dependencies, clone Libra, run the test net, and mint funds between wallets.
Explore the Corda transaction lifecycle, from building a transaction to signing and resolving it, then recording the ledger transaction with the necessary notary, signatures, and inputs.
Demonstrates how to set up and run the R3 Corda Demobench app, create banks and a notary, issue funds, and execute cross-bank transactions to illustrate a block chain transaction flow.
Blockchain technologies are clearly gaining acceptance in the enterprise world of IT. They are now progressing from a Proof of Concept(POC) to a real Production use case. As a pre sales engineer, solutions engineer or technically focused expert facing customers knowing how to speak blockchain is going to a required skill especially for large VARs, Vendors, Integrators, etc.
Welcome to the Certified Blockchain Solutions Architect (CBSA) Bootcamp. This course is ideal for technology-focused engineers, application developers, IT administrators, or anyone wanting to obtain the Blockchain Training Alliance's Certified Blockchain Solutions Architect (CBSA)Certification
In this course, we will provide an exam overview of the Blockchain Training Alliance Certification, Certified Blockchain Solutions Architect (CBSA). This will include Blockchain basics such as components, terminology, and ledgers, as well as why the blockchain is revolutionizing how businesses and governments are looking at technology to create efficiencies. We will cover the top ten areas to focus on for the exam and what topics to study, as well as the exam process and what to expect before, during, and after the exam.
Course provides test tips, practice questions, demos, whiteboards and over 370 pages of course presentations.
What we will cover to get you enabled
Understand the objectives for the Certified Blockchain Solutions Architect (CBSA) Exam
Blockchain Architecture basics and advanced concepts
Choose appropriate blockchain systems for various use cases
Work effectively with both public and permissioned blockchain systems
Blockchain Terminology critical to know for the exam
Resources to help study for the exam
This training course is for you because...
You are new to blockchain technology and want to understand basic concepts of blockchain and what materials to study for a Blockchain certification.
Anyone who has interest in Blockchain technology and would be interested in obtaining the Certified Blockchain Solutions Architect (CBSA) Certification
You need an introduction to the objectives of the Certified Blockchain Solutions Architect (CBSA) exam in a concise format that provides study materials
You are an aspiring blockchain architect that would like to validate your knowledge with the industry leading blockchain architecture certification
You need to understand the use cases for blockchain and resources to help get started in the blockchain space.
Thank you Joe Holbrook.
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