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  1. docs/uk/docs/alternatives.md

    ///
    
    ## Орієнтири та швидкість
    
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  2. guava/src/com/google/common/util/concurrent/CycleDetectingLockFactory.java

     * weak references.
     *
     * <p><strong>Performance</strong>
     *
     * <p>The extra bookkeeping done by cycle detecting locks comes at some cost to performance.
     * Benchmarks (as of December 2011) show that:
     *
     * <ul>
     *   <li>for an unnested {@code lock()} and {@code unlock()}, a cycle detecting lock takes 38ns as
     *       opposed to the 24ns taken by a plain lock.
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  3. docs/pt/docs/async.md

    ### Concorrência é melhor que paralelismo? { #is-concurrency-better-than-parallelism }
    
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  4. docs/es/docs/async.md

    Y como puedes tener paralelismo y asincronía al mismo tiempo, obtienes un mayor rendimiento que la mayoría de los frameworks de NodeJS probados y a la par con Go, que es un lenguaje compilado más cercano a C <a href="https://www.techempower.com/benchmarks/#section=data-r17&hw=ph&test=query&l=zijmkf-1" class="external-link" target="_blank">(todo gracias a Starlette)</a>.
    
    ### ¿Es la concurrencia mejor que el paralelismo? { #is-concurrency-better-than-parallelism }
    
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  5. docs/fr/docs/async.md

    ### Est-ce que la concurrence est mieux que le parallélisme ?
    
    Nope ! C'est ça la morale de l'histoire.
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  6. docs/de/docs/async.md

    ### Ist Nebenläufigkeit besser als Parallelität? { #is-concurrency-better-than-parallelism }
    
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  7. android/guava/src/com/google/common/util/concurrent/CycleDetectingLockFactory.java

     * weak references.
     *
     * <p><strong>Performance</strong>
     *
     * <p>The extra bookkeeping done by cycle detecting locks comes at some cost to performance.
     * Benchmarks (as of December 2011) show that:
     *
     * <ul>
     *   <li>for an unnested {@code lock()} and {@code unlock()}, a cycle detecting lock takes 38ns as
     *       opposed to the 24ns taken by a plain lock.
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  8. docs/zh-hant/docs/async.md

    這種類型的非同步性正是 NodeJS 成功的原因(儘管 NodeJS 不是平行的),這也是 Go 語言作為程式語言的一個強大優勢。
    
    這與 **FastAPI** 所能提供的性能水平相同。
    
    你可以同時利用並行性和平行性,進一步提升效能,這比大多數已測試的 NodeJS 框架都更快,並且與 Go 語言相當,而 Go 是一種更接近 C 的編譯語言(<a href="https://www.techempower.com/benchmarks/#section=data-r17&hw=ph&test=query&l=zijmkf-1" class="external-link" target="_blank">感謝 Starlette</a>)。
    
    ### 並行比平行更好嗎?
    
    不是的!這不是故事的本意。
    
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  9. docs/zh/docs/async.md

    这种异步机制正是 NodeJS 受到欢迎的原因(尽管 NodeJS 不是并行的),以及 Go 作为编程语言的优势所在。
    
    这与 **FastAPI** 的性能水平相同。
    
    你可以同时拥有并行性和异步性,你可以获得比大多数经过测试的 NodeJS 框架更高的性能,并且与 Go 不相上下, Go 是一种更接近于 C 的编译语言(<a href="https://www.techempower.com/benchmarks/#section=data-r17&hw=ph&test=query&l=zijmkf-1" class="external-link" target="_blank">全部归功于 Starlette</a>)。
    
    ### 并发比并行好吗?
    
    不!这不是故事的本意。
    
    并发不同于并行。而是在需要大量等待的特定场景下效果更好。因此,在 Web 应用程序开发中,它通常比并行要好得多,但这并不意味着全部。
    
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  10. docs/en/docs/async.md

    And as you can have parallelism and asynchronicity at the same time, you get higher performance than most of the tested NodeJS frameworks and on par with Go, which is a compiled language closer to C <a href="https://www.techempower.com/benchmarks/#section=data-r17&hw=ph&test=query&l=zijmkf-1" class="external-link" target="_blank">(all thanks to Starlette)</a>.
    
    ### Is concurrency better than parallelism? { #is-concurrency-better-than-parallelism }
    
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