Resumen automático de Colegio Parroquial Pío XII Berazategui generado por Synara
Informe de rendimiento en Mobile. Ver rendimiento en desktop
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La empresa Colegio Parroquial Pío XII Berazategui ubicada en Buenos Aires, Argentina y dedicada al sector Escuela católica, cuenta con el sitio web pioxiiberazategui.blogspot.com/, así como un perfil en Google Maps, donde ostenta 32 reseñas. Su teléfono de contacto es +541177246250.
A continuación se muestran los canales de presencia digital disponibles:
Executive Summary
Performance
Score: 90/100
Excellent result in this category.
Among the detected issues:
- Server response time is slow (TTFB).
- Some CSS rules are unused.
- Unused JavaScript detected.
- Text compression (gzip, brotli) not enabled.
- Stylesheets are unminified, impacting load time.
- Scripts are unminified, increasing payload size.
- Images are not compressed/optimized, affecting load times.
- There are resources blocking the initial render; inline or defer them.
Accessibility
Score: 58/100
Limited performance; optimisation needed.
Best Practices
Score: 96/100
Excellent result in this category.
Among the detected issues:
- Missing adequate CSP headers against XSS.
SEO
Score: 85/100
Good overall performance; minor tweaks possible.
Technical Analysis
Opportunities
Initial server response time was short
- Description: Keep the server response time for the main document short because all other requests depend on it. Learn more about the Time to First Byte metric.
- Potential Savings: 31 ms
Reduce unused CSS
- Description: Reduce unused rules from stylesheets and defer CSS not used for above-the-fold content to decrease bytes consumed by network activity. Learn how to reduce unused CSS.
Defer offscreen images
- Description: Consider lazy-loading offscreen and hidden images after all critical resources have finished loading to lower time to interactive. Learn how to defer offscreen images.
Properly size images
- Description: Serve images that are appropriately-sized to save cellular data and improve load time. Learn how to size images.
Reduce unused JavaScript
- Description: Reduce unused JavaScript and defer loading scripts until they are required to decrease bytes consumed by network activity. Learn how to reduce unused JavaScript.
- Potential Savings: 300 ms
Enable text compression
- Description: Text-based resources should be served with compression (gzip, deflate or brotli) to minimize total network bytes. Learn more about text compression.
Avoid serving legacy JavaScript to modern browsers
- Description: Polyfills and transforms enable legacy browsers to use new JavaScript features. However, many aren't necessary for modern browsers. For your bundled JavaScript, adopt a modern script deployment strategy using module/nomodule feature detection to reduce the amount of code shipped to modern browsers, while retaining support for legacy browsers. Learn how to serve modern JavaScript
Minify CSS
- Description: Minifying CSS files can reduce network payload sizes. Learn how to minify CSS.
Minify JavaScript
- Description: Minifying JavaScript files can reduce payload sizes and script parse time. Learn how to minify JavaScript.
Efficiently encode images
- Description: Optimized images load faster and consume less cellular data. Learn how to efficiently encode images.
- Potential Savings: 300 ms
Eliminate render-blocking resources
- Description: Resources are blocking the first paint of your page. Consider delivering critical JS/CSS inline and deferring all non-critical JS/styles. Learn how to eliminate render-blocking resources.
- Potential Savings: 750 ms
Use video formats for animated content
- Description: Large GIFs are inefficient for delivering animated content. Consider using MPEG4/WebM videos for animations and PNG/WebP for static images instead of GIF to save network bytes. Learn more about efficient video formats
Remove duplicate modules in JavaScript bundles
- Description: Remove large, duplicate JavaScript modules from bundles to reduce unnecessary bytes consumed by network activity.
Serve images in next-gen formats
- Description: Image formats like WebP and AVIF often provide better compression than PNG or JPEG, which means faster downloads and less data consumption. Learn more about modern image formats.
- Potential Savings: 750 ms
Preconnect to required origins
- Description: Consider adding
preconnect
ordns-prefetch
resource hints to establish early connections to important third-party origins. Learn how to preconnect to required origins.
Avoid multiple page redirects
- Description: Redirects introduce additional delays before the page can be loaded. Learn how to avoid page redirects.
- Potential Savings: 764.7913679504281 ms
Diagnostics
Metrics
- Description: Collects all available metrics.
- Numeric Value: 3473
Screenshot Thumbnails
- Description: This is what the load of your site looked like.
Mitigate clickjacking with XFO or CSP
- Description: The
X-Frame-Options
(XFO) header or theframe-ancestors
directive in theContent-Security-Policy
(CSP) header control where a page can be embedded. These can mitigate clickjacking attacks by blocking some or all sites from embedding the page. Learn more about mitigating clickjacking.
All heading elements contain content.
- Description: A heading with no content or inaccessible text prevent screen reader users from accessing information on the page's structure. Learn more about headings.
Final Screenshot
- Description: The last screenshot captured of the pageload.
Diagnostics
- Description: Collection of useful page vitals.
Resources Summary
- Description: Aggregates all network requests and groups them by type
Ensure proper origin isolation with COOP
- Description: The Cross-Origin-Opener-Policy (COOP) can be used to isolate the top-level window from other documents such as pop-ups. Learn more about deploying the COOP header.
Ensure CSP is effective against XSS attacks
- Description: A strong Content Security Policy (CSP) significantly reduces the risk of cross-site scripting (XSS) attacks. Learn how to use a CSP to prevent XSS
Avoid large layout shifts
- Description: These are the largest layout shifts observed on the page. Each table item represents a single layout shift, and shows the element that shifted the most. Below each item are possible root causes that led to the layout shift. Some of these layout shifts may not be included in the CLS metric value due to windowing. Learn how to improve CLS
- Display Value: 1 layout shift found
Script Treemap Data
- Description: Used for treemap app
Network Round Trip Times
- Description: Network round trip times (RTT) have a large impact on performance. If the RTT to an origin is high, it's an indication that servers closer to the user could improve performance. Learn more about the Round Trip Time.
- Display Value: 10 ms
- Numeric Value: 11.794545000000001
Tasks
- Description: Lists the toplevel main thread tasks that executed during page load.
Server Backend Latencies
- Description: Server latencies can impact web performance. If the server latency of an origin is high, it's an indication the server is overloaded or has poor backend performance. Learn more about server response time.
- Display Value: 0 ms
- Numeric Value: 2
Avoid chaining critical requests
- Description: The Critical Request Chains below show you what resources are loaded with a high priority. Consider reducing the length of chains, reducing the download size of resources, or deferring the download of unnecessary resources to improve page load. Learn how to avoid chaining critical requests.
- Display Value: 3 chains found
Network Requests
- Description: Lists the network requests that were made during page load.
Minimize third-party usage
- Description: Third-party code can significantly impact load performance. Limit the number of redundant third-party providers and try to load third-party code after your page has primarily finished loading. Learn how to minimize third-party impact.
- Display Value: Third-party code blocked the main thread for 0 ms
Use a strong HSTS policy
- Description: Deployment of the HSTS header significantly reduces the risk of downgrading HTTP connections and eavesdropping attacks. A rollout in stages, starting with a low max-age is recommended. Learn more about using a strong HSTS policy.
Report generated on 25/4/2025, 07:43:08
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