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TOEIC・英語 大学生・専門学校生・社会人

これの和訳して貰えませんか?

5 Reading Passage 10 15 20 Yuna Kim is one of the world's best figure skaters. At the 2010 Winter Olympics in Vancouver, she set three world records. In fact, one of those world records broke a record she set in 2009. program and a At the Olympics, both male and female skaters perform a short seven program. In the short program, skaters have less than three minutes to perform required jumps, spins, or other moves. While doing these seven things, the skaters also have to show judges how well they can put these elements together into a kind of dance performance on the ice. The long program is similar to the short program except that skaters perform for a longer time and have more required moves. long Before the 2010 Winter Olympics began, many people thought Yuna Kim was likely to win a gold medal. Certainly, there were other women skaters who had the skill to win gold at the Olympics. However, Ms. Kim had an advantage. She had already set a number of world records. In 2007, she set the record for the highest score in a short program with 71.95 points in Japan. The same year she also set the world record for the highest score in a long program with 133.7 points in Russia. Then, in 2009 she beat her own record in the short program by scoring 76.12 in the United States. At that competition, she also became the first woman to score over 200 points with her short and long programs - her combined score was 207.71. The next year at the Winter Olympics in Vancouver, she broke her records again. In the short program, Ms. Kim scored 78.5, a new world record. In the long program, she scored 150.06, another world record. This gave her a combined total of 228.56 points, a third world record! Needless to say, her score was enough to win gold.

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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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TOEIC・英語 大学生・専門学校生・社会人

自己採点が不安なのでお時間ある方に採点していただきたいです。

4. ライティング 15 ● 以下の TOPIC について、あなたの意見とその理由を2つ書 きなさい。 ●POINTSは理由を書く際の参考となる観点を示したもので す。ただし、これら以外の観点から理由を書いてもかまいませ the future Ⅰ have Two reasons why I think ん。 so. To begin with, father increase telework 語数の目安は80語〜100語です。 ●解答は、右にあるライティング解答欄に書きなさい。 なお、解 these days. It makes him so relay and no 答欄の外に書かれたものは採点されません。 ● 解答がTOPIC に示された問いの答えになっていない場合や、 strees. In additon, I think so that spreds TOPIC からずれていると判断された場合は、0点と採点され Internet technology. Insing ipad in school. ることがあります。 TOPIC の内容をよく読んでから答えて 53 ください。 合う There are young people using it. For these reasons, I think the number of these people will increuse in the fature. TOPIC Nowadays, more and more people are at home and teleworking. Do you think the number of these people will increase in the future? POINTS Communication • Infectious disease • Internet technology 英検2級 weknow by Interstate 練習シート interstate.co.jp 練習日: 2/2 ④ ライティング解答欄 指示事項を守り、文字は、はっきりと分かりやすく書いて下さい。 太枠に囲まれた部分のみが採点の対象です。 Skype セッションで添削を予約>> I think the number of these people will increase in 10 15

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物理 大学生・専門学校生・社会人

赤線の数値ってどこから来たんですか? 分かる人教えて欲しいです。

解答は導き方も簡単に示して下さい。 1. 真空中を振動数 v [1/s] の光子が進んでいるとき、この光子の運動量の大きさはいくらか。 ただし、プランク定数を h [Js]、 真空中の光速をc[m/s] とする。 2. 黒体放射において、 黒体の温度を上昇させた場合、 放射光のエネルギー密度のピークの波長はどうなるか。 3. 光電効果において、入射光子の強度を増加すると、 放出される光電子はどうなるか。 4. 単色のX線を炭素の結晶に照射したとき、炭素の結晶中の電子によって散乱されたX線の振動数は、散乱角が大きく なるとどうなるか。 5.à=1、β=1としたとき、 [àâ, ] を求めよ。 6. 領域 (0≦x≦ a) では質量mの粒子1個が自由に運動しているが、この領域外には出られないという1次元の量子力 学系を考える。この系の波動関数は重(z)= = Vaz sinzz) (n=1,2,3,...) で与えられる。 第2励起状態において、粒 子の存在確率が一番低い点の座標の値を求めよ。 7.3 次元の直方体の箱の中に質量mの粒子が1つ閉じ込められている量子力学系を考える。 直方体のx,y,z 方向の辺の 長さがそれぞれ2a、α、 α のとき、 基底状態、 第1励起状態、 第2励起状態はどのような量子状態か。r,y,z 方向の量 子数 nx, ny, nz, (nony,n=1,2,3,...) の組み合わせ (n, ny, nz) を用いて答えよ。 8. 原子核の質量を無限大とした近似では、水素類似原子系のエネルギー準位は、En = -Z2 Rochen と表される。ここ で、Zは原子番号、 R. はリュードベリ定数、んはプランク定数、cは真空中の光速、 n(n=1,2,3,...) は主量子数を それぞれ表している。 この近似のもとで Be + の 2p軌道から 1s 軌道へ電子が遷移した時に放出される光子の振動数は いくらか。 記号を用いて答えよ。 9. 球面調和関数 Y5, -3(0, 0) に対する軌道角運動量の大きさの2乗を表す演算子 と軌道角運動量の成分を表す演算子 の固有値を求めよ。 10. 原子軌道をラッセルーソンダースカップリングで考える。 マグネシウム原子 Mg の基底状態の配置 1s22s22p 3s2 の全 スピン角運動量量子数の値はいくらか。 また、 その値になる理由を説明せよ。 11. 原子軌道をラッセルーソンダースカップリングで考える。 ベリリウム原子 Be の励起状態の配置 1s22s 2pl の取り得る 可能な軌道すべての項の記号を書け。 12. 区間 0≦x≦ a に閉じ込められた粒子を考える。非摂動状態では、この区間内では、粒子に働くポテンシャルは0 とする。この区間内に摂動として (1) = -esin' (™z/a) (sは正の定数)が加わった場合を考える。基底状態の非摂 動波動関数は (0) = sin(πz/a) である。この状態に対するエネルギーの一次補正を求めよ。計算には積分公式 a ∫ sin(ax)dx = 誓 on sin(ar) cos(az) - do sin' (az) cos (az) +C (C は積分定数) を用いてよい。 8a 13. 水素類似原子の 2p 軌道における電子の距離の逆数の期待値 <-> 2p を求めよ。ただし、動径方向の波動関数は Z +2 1/16 (3) ²0 2√6 で表され、 Z は原子番号、 α はボーア半径を表す。 R2.1(r)= re-(Z)r 14. 授業中に紹介した20世紀以降に生まれた物理学者1名の名前 (苗字だけでよい) を示して、その人の業績を説明せよ。

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