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TOEIC・英語 大学生・専門学校生・社会人

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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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英語 高校生

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○区切りごとに意味をとりながら、 音読しよう。sinondai lgme od aid to fish s ei eqneb adT goingiqe bood There dows aevom pitadors There are many dances / around the world. // 2 Each of them / has a and 90 FOR O unique background. // 3 Here, / let's look at three styles of dancing: / the mod as gaisableng da ai maitinummes [waohalvtin duo w hula, / Irish dance, / and breakdancing. // z eu u to orn ini beragaeil neftor pansy roewted siden, eveb seeds alto core 4 The first dance is the hula / in Hawaii. // It comes from the odTgoituloa taon sa eredi li sevisament booles eredmom m indigenous religion there. // In ancient Hawaii, / people showed their brewreftĄ Lidge to reaniw odt ao obiseb of gaisanbodsord een of aage respect for gods / by dancing. // They also danced to pass on important aipasbaleend.vebor 20 di esoros telugog omesed vleubars eodebe values / from generation to generation. // That was because they had no blow edi bauro y a STI Activity formal writing system / at the time. // In other words, / the hula wa adrid riedsfei prutlus up edt diw beta a C OR E CAR more than a leisure activity. // we ai gained engilegt has enabi nigdt beseerxe axed algeoqueado 10 In the hula, / dancers use their hands / to express emotions / an .noitsoinummos messages through the hula.. things in nature. // The dancers believe that they can communicat various messages / through the hula. // ... The next example is Irish dance. It is famous for the dancers' qu |

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化学 高校生

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68 第3章 化学反応式の利用 演習問題4 反応量計算 (1) OHT+YOS 水溶液中のイオンの濃度は, 電気の通しやすさで測定することができる。 硫酸銀 Ag2SO4 および塩化バ リウム BaCl は,水に溶解して電解質水溶液となり電気を通す。一方, AgaSO4水溶液と BaCl 水溶液を 混合すると,次の反応によって塩化銀 AgCl と硫酸バリウム BaSO の沈殿が生じ,水溶液中のイオンの濃 度が減少するため電気を通しにくくなる。 Ag2SO4 + BaCl₂ → BaSO4 ↓ + 2AgCl ↓ イオ 08+0₂H+ (08)0 るた この性質を利用した次の実験に関する問いに答えよ。 MO+6H¹ ① 3.6 OHA+M 実験 0.010mol/LのAg2SO4水溶液100mLに濃度不明の BaCl2 水溶液を滴下しながら混合溶液の電 気の通しやすさを調べたところ, 表1に示す電流 (μA)が測定された。 ただし, 1 μA = 1 × 10 - A であ DE+0₂H8 + ¹MS00, H8+ HO + OMS 3. Mn0, +88' Se O 0 +211 200, +5H₂O₂ + S 表1 BaCl2 水溶液の滴下量と電流の関係 0x0001 +0+HA+TORAMS BaCl2 水溶液の滴下量(mL) 161 ② 4.1 2.0 3.0 4.0 5.0 AUTOLOAD EK J 6.0 7.0lo Exercise ③ 4.6 100 + HAL + OYO 592<******** 088+02, + ④ 5.1 CDS+THR+ OF (4) as + s = 問1 この実験において, Ag2SO を完全に反応させるのに必要な BaCl2 水溶液は何mLか。 最も適当な 数値を、次の①~⑤のうちから一つ選べ。 必要があれば、右の方眼紙を使うこと。SOH HOL A JA +18 Oall nate_HB + OmMDHS 電流 ( μA ) IS + 2 &H 70 *+ *HA + $08 44 0/10¹3x0 18 13 41 67 5:05.6 - 08 + 8 HS (g) INS+O.H ofif Odi h

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