К содержимому
learnspaceYOUR NEXT CHAPTER
ПРОСТРАНСТВО ОБУЧЕНИЯ
ГлавнаяКаталог курсовМоё обучениеCoursera

Знания без границ

Учитесь у лучших университетов и компаний мира.

Открыть Coursera
Интеграция
Пространство университета
Моё пространствоСтраница курса
↵
ЯЛичный кабинетСтудент
© 2026 LearnSpaceКаждый день — возможность узнать больше.Помощь
Security and Auditing in Ethereum · LearnSpace
Назад в каталог
courseraIT и технологии

Security and Auditing in Ethereum

Курс от EDUCBA
Средний≈ 9.5 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

The course aims to provide participants with a solid understanding of the security risks and vulnerabilities associated with Ethereum DApps. Participants will learn about common attack vectors, smart contract vulnerabilities, and best practices for securing DApps against potential threats. ● Participants will acquire the skills and knowledge necessary to conduct smart contract audits. They will learn auditing methodologies, tools, and techniques to assess the security and reliability of smart contracts, identify vulnerabilities, and recommend appropriate remediation measures. ● The course will focus on teaching participants secure coding practices specific to Ethereum DApps. Participants will learn about techniques such as input validation, access control, and secure contract design to develop robust and secure smart contracts and DApps. ● Participants will gain practical experience in performing penetration testing of Ethereum DApps. They will learn how to simulate attacks, identify vulnerabilities, and exploit weaknesses in DApps to assess their resilience against real-world threats. ● The course will cover best practices for overall DApp security, including secure key management, secure deployment practices, and secure data handling. Participants will understand how to implement security measures throughout the entire development lifecycle of DApps. Target Learners: ● Blockchain Developers: Experienced blockchain developers interested in enhancing their knowledge of security best practices specifically for Ethereum smart contracts and decentralized applications (DApps). ● Smart Contract Developers: Individuals specializing in smart contract development who want to deepen their understanding of security vulnerabilities and techniques to mitigate risks in Ethereum contracts. ● Cybersecurity Professionals: Security analysts, consultants, or cybersecurity professionals looking to specialize in blockchain security, particularly focusing on Ethereum, to identify vulnerabilities and develop secure solutions. ● Blockchain Architects: Architects and system designers involved in designing Ethereum-based systems who need to ensure the security of the overall architecture, including smart contracts and decentralized applications. ● Penetration Testers: Ethical hackers and penetration testers interested in learning how to assess the security of Ethereum-based systems, including smart contracts, to identify and exploit vulnerabilities. ● Blockchain Researchers: Researchers in the field of blockchain technology who want to study security issues and challenges specific to Ethereum and contribute to the advancement of blockchain security practices. ● Cryptocurrency Investors: Investors and traders interested in understanding the security risks associated with Ethereum-based projects to make informed investment decisions and assess project viability. To be successful in this course, you should have a background in: ● Blockchain Basics: Understanding foundational concepts of blockchain technology, such as distributed ledger technology, consensus mechanisms, and cryptographic principles, will provide a strong starting point for learning Ethereum security. ● Ethereum Architecture: Familiarity with the Ethereum platform, including its components such as Ethereum Virtual Machine (EVM), smart contracts, gas, and transaction processing, is essential for comprehending security vulnerabilities and mitigation techniques. ● Smart Contract Development: Proficiency in developing smart contracts using Solidity or other Ethereum-compatible languages is highly beneficial. Knowledge of smart contract design patterns, debugging, and testing methodologies is crucial for understanding security risks. ● Programming: Strong programming skills, particularly in languages commonly used for Ethereum development such as Solidity, JavaScript, or Python, are necessary for understanding and implementing security best practices. ● Cybersecurity Principles: Understanding fundamental cybersecurity principles, such as threat modeling, secure coding practices, encryption, authentication, and access control, is important for assessing and mitigating security risks in Ethereum-based systems. ● Web Development: Knowledge of web development technologies (HTML, CSS, JavaScript) and frameworks is helpful, especially for understanding the front-end interfaces of decentralized applications (DApps) and potential security vulnerabilities in web3 interactions. ● Security Tools and Techniques: Familiarity with security assessment tools and techniques, such as static analysis tools, dynamic analysis tools, penetration testing frameworks, and auditing methodologies, will be valuable for evaluating Ethereum smart contracts and DApps for security flaws.

Навыки, которые вы освоите

Secure CodingApplication SecurityPenetration TestingVulnerability ScanningCode ReviewPatch ManagementData ValidationAuthorization (Computing)Security TestingCyber Security AssessmentIncident ResponseEvent MonitoringExploit developmentIncident ManagementBlockchainDevelopment TestingPayment SystemsContinuous Monitoring

Программа курса

4 модулей · 75 учебных материалов

01Introduction to Ethereum Security27 материалов

Welcome Reading

Introduction to Security and Auditing in EthereumЧтениеTrainer IntroductionВидео

Common Security Risks and Attacks in Ethereum

Overview of Ethereum Security LandscapeВидеоCommon Security Risks in Ethereum Smart ContractsВидео

Учитесь у экспертов

EDUCBA

Преподаватель курса

Security and Auditing in Ethereum
В каталоге вашей программы

Инвестируйте в себя

Новые знания — в удобное для вас время.

Начать на Coursera

Обучение откроется на Coursera
в новой вкладке

Обучение на Coursera

≈ 9.5 ч

4 модулей

Язык: Английский

Субтитры: Казахский

Часть программы вашего университета
Case Studies of Ethereum Security Breaches Part 1Видео
Case Studies of Ethereum Security Breaches Part 2Видео
Common Security Risks and Attacks in EthereumЗадание
Hands-on 1 - Secure Withdrawal Smart Contract ImplementationЧтение
Solution - Hands-on 1 - Secure Withdrawal Smart Contract ImplementationЧтение

Secure Coding Practices for Dapps

Fundamentals of Secure Smart Contract DevelopmentВидеоCommon Security Patterns and Anti-Patterns Part 1ВидеоCommon Security Patterns and Anti-Patterns Part 2ВидеоTesting and Auditing Smart ContractsВидеоSecure Coding Practices for DappЗаданиеHands-on 2 - Secure Token Minting Smart Contract ImplementationЧтениеSolution - Hands-on 2 - Secure Token Minting Smart Contract ImplementationЧтение

Ethereum Security Tools and Auditing Services

Overview of Ethereum Security ToolsВидеоAuditing Services and ProcessesВидеоHands-on Demonstration of Security Tools Part 1ВидеоHands-on Demonstration of Security Tools Part 2ВидеоWriting Secure Smart ContractsЧтениеEthereum Security Tools and Auditing ServicesЗаданиеApplying Security Analysis & Secure Coding Practices in Ethereum Smart ContractsDIALOGUEIntroduction to Ethereum SecurityЗаданиеHands-on 3 - Secure Access-Controlled Smart Contract ImplementationЧтениеSolution - Hands-on 3 - Secure Access-Controlled Smart Contract ImplementationЧтениеInvestigating a Suspicious Ethereum DApp: From Risks to Secure DesignDIALOGUE
02Secure Smart Contract Development20 материалов

Secure Contract Design Patterns

Introduction to Secure Contract Design PatternsВидеоAccess Control and Authorization PatternsВидеоState Machine Patterns for Secure State TransitionsВидеоSecure Contract Design PatternsЗаданиеHands-on 4 - Secure Counter Increment Smart Contract ImplementationЧтениеSolution - Hands-on 4 - Secure Counter Increment Smart Contract ImplementationЧтение

Input Validation and Error Handling

Importance of Input Validation and Error Handling in Smart ContractsВидеоBest Practices for Input ValidationВидеоEffective Error Handling StrategiesВидеоInput Validation and Error HandlingЗаданиеHands-on 5 - Secure Fund Management Smart Contract ImplementationЧтениеSolution - Hands-on 5 - Secure Fund Management Smart Contract ImplementationЧтение

Securing Financial Transactions and Assets

Fundamentals of Financial Security in Smart ContractsВидеоSecure Implementation of Payment SystemsВидеоAuditing and Testing Financial Smart ContractsВидеоStrategies to Handle Errors in Ethereum Smart ContractsЧтениеSecuring Financial Transactions and AssetsЗаданиеSecure Smart Contract DevelopmentЗадание
03Auditing and Testing Ethereum Dapps14 материалов

Dapps Auditing Techniques and Best Practices

Introduction to DApp AuditingВидеоAuditing Tools and Automated ScanningВидеоManual Auditing Techniques and Best PracticesВидеоDapps Auditing Techniques and Best PracticesЗадание

Penetration Testing and Code Review

Introduction to Penetration Testing in Ethereum DAppВидеоCode Review Best Practices for Smart ContractsВидеоHands-On Penetration Testing and Code ReviewВидеоPenetration Testing and Code ReviewЗадание

Unit Testing and Automated Security Tools

Importance of Unit Testing in Ethereum DAppВидеоWriting Effective Unit Tests for Smart ContractsВидеоAutomated Security Tools for Ethereum DAppВидеоStep-by-Step Guide for Hands-on Penetration Testing & Code ReviewЧтениеUnit Testing and Automated Security ToolsЗаданиеAuditing and Testing Ethereum DappsЗадание
04Secure Deployment and Maintainence14 материалов

Secure Development Strategies for Dapps

Security-First Development PrinciplesВидеоThreat Modeling and Risk AssessmentВидеоSecure Coding Guidelines and Best PracticesВидеоSecure Development Strategies for DappЗадание

Monitoring and Incident Response for Dapps

Importance of Monitoring in DApp SecurityВидеоImplementing Effective Incident Response PlansВидеоContinuous Monitoring and Adaptive SecurityВидеоMonitoring and Incident Response for DappЗадание

Upgrading and Patching Dapps for Security

Importance of Upgrading for SecurityВидеоStrategies for Safe Smart Contract UpgradesВидеоTesting and Verification in the Upgrade ProcessВидеоUpgrading and Patching Dapps for SecurityЗаданиеSecure Deployment and MaintenanceЗаданиеStrategies for Safe Smart Contract UpgradesЧтение
Hands-on 6 - Secure Array Data Management Smart ContractЧтение
Solution - Hands-on 6 - Secure Array Data Management Smart ContractЧтение