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英語 高校生

英語の長文わかる方教えてください😭🙏🏻

15 5 10 ing Reading Passage 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. At the Olympics, both male and female skaters perform a short program and a long program. In the short program, skaters have less than three minutes to perform seven 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. 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. 'figure skater an ice skater who uses athletic skills and dancing skills

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化学 高校生

上部の気体定数についてです。 ボイルシャルルの PV/T のVは体積なのに なぜモル体積(L/mol)を当てはめて 代入すると気体定数が出てくるんですか😭 ×1(mol)をして体積(L)に直さないんですか、?

2 気体の状態方程式 1 気体定数と気体の状態方程式 JEE PV T ●気体定数 ボイル・シャルルの法則 =k" について, k” の値を標準状 態 (0℃, 1.013×105 Pa) における気体 1mol の場合で求めてみる。 標準状態 における気体1mol の体積 (モル体積) を とすると,”は22.4L/molであり. k” は次のように求められる。 Pv 1.013×105 Pa×22.4L/mol T (7) 式で得られた値は, gas constant 記号 R で表される。 R を用いると, (7) 式は次のように表すことができる。 Pv=RT (8) AU ●気体の状態方程式 〔mol] の気体の場合,その体積V〔L〕は,モル体積 V n v 〔L/mol] のn倍であり, V = nv となる。 したがって, v= を (8)式に代入 AN すると,次のように表される。 これを気体の状態方程式という。 equation of state k"= = PV=nRT = 273 K (R=8.31×10Pa・L/ (K・mol)) 圧力×体積 物質量 気体定数 × 温度 [Pa〕 〔L〕 [mol〕 〔Pa・L/(K・mol)〕 〔K〕 × =8.31×10 Pa・L/(K・mol) (7) 気体定数とよばれ、 気体の種類によらず一定であり, 203 (9) 気体の圧力〔Pa〕, 体積〔L〕, 物質量〔mol], 絶対温度〔K〕のうちの3つがわ かれば,気体の状態方程式から,残る1つの値を求めることができる。 注意

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