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情報:IT 高校生

情報1の"音のデジタル表現"の単元についてです。 下の写真の4.の3つの問題がよくわかりません。 なぜこの答えになるのか教えて下さい。 テストも近いのでなるはやでお願いします(o_ _)o ※横の赤文字が答えになります。

■ 2. 通常の音楽CDは量子化ビット数を16ビットで記録している。 これに対して, デジタル音楽 配信サービスの中には量子化ビット数を24ビットにして同じ楽曲を販売しているケースがある。 原音に対して, サンプリング周波数は同じであるとして、 次の説明のうち正しいものを1つ 選べ。 波の高さ ? ? ① 演奏時間が同じ場合,データ量は少なくなる ② データを扱う機器やコンピュータ内蔵CPUの負担は減る 超低音から超高音まで音の上下限が拡大する ④ より小さな音から大きな音までの表現力の幅が広がる <96000回 3. 音楽CDの何倍もの情報量を持つ 「ハイレゾ (High Resolution) 音源」の楽曲がネット配信 販売されている。 標本化周波数 96KHz, 量子化ビット数が24ビット, ②チャンネルのス レオであるとき, 16GBの記憶容量を持つプレーヤーなら, 1曲が4分として約何曲保存す ことができるか。 次の中から1つ選べ。 なお, 1K=1000 とする。 96000×24×2×(60×4)= 138 115 1157 (4 1382 4. 次の計算をして、適当なものをそれぞれ1つ選べ。 電話の音声をデジタル信号にするとき, 最大周波数が4KHzであった場合の標本化周波 ① 4KHz ④ 32KHz 8KHz 16KHz ✓ 上記データをマイナス範囲-8~ 0, プラス範囲0~7の16段階で量子化する場合のビ 数。 ① 8bit 上記データをそのまま符号化したとき, 1K=1000の場合の、 最低必要となる伝送速度 ① 4Kbps ④32Kbps ② 8Kbps ③ 16Kbps ① 4bit 16bit 32bit

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TOEIC・英語 大学生・専門学校生・社会人

文章を読んで上の1〜4の問題を解くものです。 分からないのでお願いします

3. Answer the following questions. 1 What is the difference between UNIX and Linux? 2 3 4 Choose one of the words in italics in the text. What is the definition of the word you have chosen? What are the three levels of a Linux system? What are the two main functions of the kernel? [Reading Text] UNIX was initially developed by researchers at Bell Labs in the 1970s. Today, UNIX and its variants are widely used mainly on servers. By far, the most well- known UNIX-like operating system is Linux. Linux is available in different distributions which include the Linux kernel and different collections of software. These distributions have various user interfaces, many experienced users preferring the command-line interface, or shell. Linux distributions include a range of software including text editors. memory. While the mechanics of Linux and other Unix operating systems are complicated, the components of a Linux system can be grouped into three levels. The lowest level is the hardware, such as Central Processing Unit (CPU) and The next level is the kernel. It enables communication between hardware and software, by providing instructions to the CPU and other hardware. The programs that are running on the system, or processes, make up the top level known as the user space. Processes in user space generally only have access to a restricted amount of memory and operations, this is called user mode. The kernel runs in kernel mode which allows it unrestricted access to hardware resources. The kernel provides functions such as process management and memory management. A computer only has limited Random Access Memory (RAM) and processor cores. Process management allows the system to run multiple programs (processes) at the same time even if the CPU can only execute only a few processes at a time. Memory management allows applications to share the system's memory while avoiding potential issues such as memory leak. Included with the kernel are device drivers that provide an interface for applications to communicate with hardware, such as hard drives. System calls allow user processes to access features that are executed at kernel mode, for example creating new processes.

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TOEIC・英語 大学生・専門学校生・社会人

この1〜4の問題お願いします🙏🏼🙏🏼

3. Answer the following questions. 1 What is the difference between UNIX and Linux? 2 3 4 Choose one of the words in italics in the text. What is the definition of the word you have chosen? What are the three levels of a Linux system? What are the two main functions of the kernel? [Reading Text] UNIX was initially developed by researchers at Bell Labs in the 1970s. Today, UNIX and its variants are widely used mainly on servers. By far, the most well- known UNIX-like operating system is Linux. Linux is available in different distributions which include the Linux kernel and different collections of software. These distributions have various user interfaces, many experienced users preferring the command-line interface, or shell. Linux distributions include a range of software including text editors. memory. While the mechanics of Linux and other Unix operating systems are complicated, the components of a Linux system can be grouped into three levels. The lowest level is the hardware, such as Central Processing Unit (CPU) and The next level is the kernel. It enables communication between hardware and software, by providing instructions to the CPU and other hardware. The programs that are running on the system, or processes, make up the top level known as the user space. Processes in user space generally only have access to a restricted amount of memory and operations, this is called user mode. The kernel runs in kernel mode which allows it unrestricted access to hardware resources. The kernel provides functions such as process management and memory management. A computer only has limited Random Access Memory (RAM) and processor cores. Process management allows the system to run multiple programs (processes) at the same time even if the CPU can only execute only a few processes at a time. Memory management allows applications to share the system's memory while avoiding potential issues such as memory leak. Included with the kernel are device drivers that provide an interface for applications to communicate with hardware, such as hard drives. System calls allow user processes to access features that are executed at kernel mode, for example creating new processes.

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