petabyte
简明释义
n. 拍字节或千万亿字节或千T字节(较高级的储存单位)
英英释义
A petabyte is a unit of digital information storage equal to 1,024 terabytes or 1,000,000 gigabytes. | 一个拍字节是数字信息存储的单位,等于1,024太字节或1,000,000吉字节。 |
单词用法
同义词
拍字节 | 该数据中心存储超过10拍字节的信息。 | ||
拍字节(缩写形式) | A single petabyte can hold about 500 billion pages of standard printed text. | 一个拍字节大约可以容纳5000亿页标准印刷文本。 |
反义词
字节 | 这个文件的大小只有几个字节。 | ||
千字节 | 一个典型的文本文件大约是5千字节。 |
例句
1.When they hear the term big data, most people immediately think of large data sets; when data volumes get into the multi-terabyte and multi-petabyte range, they require different treatment.
当我们听到词语 “大数据” 时,大部分人立即会想到庞大的数据集,当数据量达到TB和PB 级时,它们就需要以不同的方式对待。
2.If you want to scale to the petabyte level, or the billion requests a day, you need to be.
如果你想伸展到拍字节(Petabyte, 2的50次方,约千万亿)的级别,或者每天数十亿请求,你就需要。
3.When they hear the term big data, most people immediately think of large data sets; when data volumes get into the multi-terabyte and multi-petabyte range, they require different treatment.
当我们听到词语 “大数据” 时,大部分人立即会想到庞大的数据集,当数据量达到TB和PB 级时,它们就需要以不同的方式对待。
4.But when data sets get to the petabyte scale, the old way simply isn't feasible.
但当数据集达到PB级别的时候,老方法就不那么可行了。
5."This 120 petabyte system is on the lunatic fringe now, but in a few years it may be that all cloud computing systems are like it, " Hillsberg says.
“现在120拍字节系统属于极少数,但以后几年也许所有云计算系统与他类似,”Hillsberg说。
6.The new maximum pp size provides an architectural support for 256 petabyte disks.
新的最大PP大小提供了支持256PB个磁盘的体系结构。
7.The data center has a storage capacity of over 5 petabytes.
这个数据中心的存储容量超过5拍字节。
8.A typical high-resolution video can take up to 1 petabyte of space when stored.
一段典型的高分辨率视频在存储时可能占用多达1拍字节的空间。
9.Google processes more than 20 petabytes of data every day.
谷歌每天处理超过20拍字节的数据。
10.The new cloud service offers users 10 petabytes of storage for their files.
新的云服务为用户提供10拍字节的文件存储空间。
11.NASA collects approximately 30 petabytes of satellite data each year.
美国宇航局每年收集大约30拍字节的卫星数据。
作文
In today's digital age, the amount of data generated every second is staggering. One of the key terms that has emerged in the realm of data storage and management is petabyte, which refers to a unit of digital information that is equal to one quadrillion bytes. To put this into perspective, a single petabyte can hold approximately 500 billion pages of standard printed text or around 200,000 high-definition movies. This immense capacity highlights the exponential growth of data in our world. As technology continues to advance, the need for larger storage solutions becomes increasingly critical. Businesses and organizations are now dealing with data that far exceeds the traditional terabyte scale, leading to the adoption of petabyte-scale storage systems. For example, large tech companies such as Google and Facebook manage data centers that store multiple petabytes of information, including user data, images, videos, and other content. The implications of handling petabytes of data are profound. With such vast amounts of information, companies must implement sophisticated data management strategies to ensure that they can efficiently store, retrieve, and analyze data. This often involves the use of cloud computing, big data analytics, and advanced database technologies. Moreover, the rise of the Internet of Things (IoT) is further contributing to the data explosion. Devices connected to the internet generate enormous volumes of data daily, which can quickly accumulate into petabytes. For instance, smart cities collect data from traffic sensors, surveillance cameras, and environmental monitors, all of which contribute to a massive pool of information that needs to be processed and analyzed. Understanding the significance of petabytes is essential for anyone involved in technology, data science, or business strategy. It represents not just a measure of data storage but also a reflection of the challenges and opportunities presented by the digital era. Organizations that can effectively harness the power of petabytes of data will have a competitive edge, allowing them to make informed decisions, enhance customer experiences, and drive innovation. In conclusion, the term petabyte symbolizes the monumental scale of data we are facing today. As we continue to navigate through this data-driven landscape, it is crucial to understand the implications of managing such vast quantities of information. The future will undoubtedly see an even greater reliance on petabytes as we strive to unlock the potential hidden within our data, leading to advancements in various fields such as healthcare, finance, and artificial intelligence. Embracing this challenge will be key to thriving in an increasingly data-centric world.
在当今数字时代,每秒生成的数据量令人震惊。一个在数据存储和管理领域出现的关键术语是petabyte,它指的是一种数字信息单位,等于一千万亿字节。为了更好地理解这个概念,一个petabyte大约可以容纳5000亿页标准印刷文本或约20万部高清电影。这种巨大的容量突显了我们世界中数据的指数增长。 随着技术的不断进步,对更大存储解决方案的需求变得愈加紧迫。企业和组织现在处理的数据远远超过传统的千兆字节规模,这导致了对petabyte级存储系统的采用。例如,像谷歌和脸书这样的科技公司管理着存储多个petabytes信息的数据中心,其中包括用户数据、图像、视频和其他内容。 处理petabytes数据的影响深远。面对如此庞大的信息量,公司必须实施复杂的数据管理策略,以确保能够高效地存储、检索和分析数据。这通常涉及使用云计算、大数据分析和先进的数据库技术。 此外,物联网(IoT)的兴起进一步推动了数据的爆炸。连接到互联网的设备每天生成大量数据,这些数据很快就会累积到petabytes。例如,智能城市从交通传感器、监控摄像头和环境监测器收集数据,所有这些都为需要处理和分析的大量信息做出了贡献。 理解petabytes的重要性对于任何参与技术、数据科学或商业战略的人来说都是至关重要的。它不仅代表了一种数据存储的度量,还反映了数字时代带来的挑战和机遇。能够有效利用petabytes数据的组织将拥有竞争优势,使他们能够做出明智的决策、提升客户体验并推动创新。 总之,petabyte一词象征着我们今天所面临的数据巨大规模。当我们继续在这个以数据为驱动的环境中航行时,理解管理如此庞大信息量的含义至关重要。未来无疑会看到对petabytes的更大依赖,因为我们努力解锁隐藏在数据中的潜力,从而在医疗、金融和人工智能等各个领域取得进展。接受这一挑战将是我们在日益以数据为中心的世界中蓬勃发展的关键。
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