Beginning Serverless Computing: Developing with Amazon Web Services, Microsoft Azure, and Google Cloud
Learn the basics of serverless computing and how to develop event-driven architectures with the three major cloud platforms.
Beginning Serverless Computing: Developing with Amazon Web Services, Microsoft Azure, and Google Cloud
Numéro d'article: 26420373

Beginning Serverless Computing: Developing with Amazon Web Services, Microsoft Azure, and Google Cloud

Numéro d'article: 26420373

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Learn the basics of serverless computing and how to develop event-driven architectures with the three major cloud platforms.
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Ce qui se démarque

Comprehensive Cloud Coverage
Covers major platforms like AWS, Azure, and Google Cloud, providing readers with a broad understanding of serverless architecture across various environments.
Practical Development Guide
Offers hands-on examples and real-world applications, ensuring that readers can apply learned concepts immediately, addressing skill gaps in serverless development.
Beginner-Friendly Approach
Designed for newcomers, the book simplifies complex ideas into digestible sections, making serverless computing accessible and fostering rapid learning.

Détails du produit

Discover the world of serverless computing with the comprehensive guidebook by Ubuy Chad. Get your copy of Beginning Serverless Computing and learn to develop with Amazon Web Services, Microsoft Azure, and Google Cloud.
Publisher Apress
Publication date November 25, 2017
Edition 1st ed.
Language English
Print length 212 pages
ISBN-10 1484230833
ISBN-13 978-1484230831
Item Weight 13.8 ounces (391.23 grams)
Dimensions 7.01 x 0.49 x 10 inches (17.8 x 1.2 x 25.4 cm)

À qui est-ce destiné ?

Suitable For
  • New Developers

    Perfect for beginners wanting to learn serverless architectures using major cloud platforms with practical examples.

  • Cloud Enthusiasts

    Ideal for individuals interested in exploring cloud services and their applications in modern software development.

  • Tech Educators

    Useful for instructors teaching cloud computing concepts, providing a structured approach to serverless technologies.

Not Suitable For
  • Advanced Developers

    May not meet the needs of seasoned professionals looking for in-depth technical challenges and advanced topics.

DESCRIPTION DU PRODUIT

Beginning Serverless Computing: Developing with Amazon Web Services, Microsoft Azure, and Google Cloud

Vous avez une question ? Chattez avec nous

Questions et réponses des clients

  • question: What is serverless computing?

    répondre: Serverless computing is a cloud computing execution model where the cloud provider dynamically manages the allocation of machine resources. Instead of purchasing and managing servers, developers simply deploy their code in the cloud, and the provider handles the scaling and infrastructure management. This model allows developers to focus more on writing code and less on managing the underlying technology stack, which can lead to quicker development cycles and more efficient resource use. For instance, a startup can launch a new feature without investing heavily in infrastructure.
  • question: How does Beginning Serverless Computing help developers?

    répondre: Beginning Serverless Computing provides a foundational understanding of how to build applications using serverless architectures with major cloud providers like AWS, Azure, and Google Cloud. The book guides developers through practical examples and best practices for leveraging these platforms' capabilities. This knowledge is particularly valuable for those looking to modernize their applications or needing to reduce infrastructure costs. For example, a developer migrating a legacy application can use insights from the book to refactor for serverless environments effectively.
  • question: Why choose AWS, Azure, or Google Cloud for serverless solutions?

    répondre: Each of these cloud platforms offers unique service advantages in serverless computing. AWS Lambda is renowned for its extensive functionality and integration with other AWS services. Azure Functions provides seamless integration with Microsoft technologies, making it ideal for businesses in the Microsoft ecosystem. Google Cloud Functions is appreciated for its scalability and performance, particularly when handling event-driven applications. By understanding these distinctions, developers can choose the right platform based on their existing systems and future goals, ensuring optimal performance and cost-effectiveness.
  • question: Are there specific programming languages favored in serverless computing?

    répondre: Yes, serverless computing typically supports multiple programming languages such as JavaScript, Python, Java, and Go. The choice of language often depends on the specific cloud provider's support and the developers' familiarity with a language. For example, AWS Lambda supports Node.js and Python, making them popular choices for quick development. Understanding language compatibility with each platform helps developers select the best tools for their projects. Consequently, a team experienced in Python can leverage AWS Lambda to build and deploy serverless applications rapidly.
  • question: Can I integrate serverless applications with traditional applications?

    répondre: Absolutely! One of the significant benefits of serverless computing is its capability to integrate seamlessly with traditional applications. Developers can use APIs or event-driven architectures to connect serverless functions with existing on-premise systems. For instance, a business can implement serverless functions to handle specific tasks like processing data or sending notifications while retaining its core database on traditional servers. This allows organizations to innovate without needing to overhaul their current systems, thereby enhancing flexibility and scalability.
  • question: What are the potential challenges of adopting serverless computing?

    répondre: While serverless computing offers various advantages, it also comes with challenges such as vendor lock-in, debugging complexity, and cold start latency. Vendor lock-in can limit flexibility if a business wants to change providers. Debugging issues in a distributed system requires careful monitoring and logging, and cold start latency can affect response times for infrequently used functions. Understanding these challenges equips developers to devise strategies to mitigate them, ensuring smoother implementation and operation of serverless architectures.
  • question: What are some practical use cases for serverless architectures?

    répondre: Serverless architectures are ideally suited for applications with unpredictable traffic patterns, such as web applications, IoT backends, or mobile app backends. They also work well for scheduled workflows like data processing or cron jobs, where tasks need to run at specific intervals. For instance, an e-commerce website can use serverless functions to handle sudden spikes during sales events, ensuring availability while optimizing costs. This scaling capability enables businesses to deliver high-performance applications without the infrastructure overhead.
  • question: How does event-driven architectures function within serverless computing?

    répondre: Event-driven architectures are central to serverless computing, enabling actions to be executed in response to events. These events can originate from various sources, such as HTTP requests, database changes, or message queues. When an event occurs, the serverless platform automatically triggers the appropriate function to handle it. For instance, an online form submission can send an HTTP request that invokes a serverless function to process and store submission data. This approach optimizes resource usage, as functions are typically executed only when needed.
  • question: Is serverless computing suitable for all types of applications?

    répondre: While serverless computing offers numerous benefits, it may not be suitable for all applications, particularly those requiring consistent performance or real-time processing. Long-running processes or applications with extensive state management can face challenges under this model. Applications with predictable workloads may also benefit from traditional architectures. Hence, developers should evaluate their specific use case and consider the pros and cons before deciding on a serverless approach. Choosing the right architecture based on application demands ensures optimal performance and cost management.

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