学年

教科

質問の種類

英語 中学生

英語の長文についてです。 写真↓の長文の音読に10分も時間がかかりました。5分に縮めるための解決策を教えて下さい。 ○今の自分の読み方 ・読んでいるところを見失わないように指でなぞる ・英文を1語1語読み込みすぎない ・英文を和訳するときに戻り読みをしてない        ... 続きを読む

都立プレOP 1015 次の文章を読んで, あとの各問に答えなさい。 3 (*印がついている単語・語句には、本文のあとに 〔注〕 がある。) Food is useful and delicious. It gives us energy for daily life and many good things for our bodies. But if we do not take care of food, we may get *food poisoning. So, how can food *stay good for a longer time? And what can you do at home to make your food safe? Fresh food does not stay good for a long time. Many foods *go bad in a few days. Some change fast even in a few hours. Warm weather and water make this problem bigger. Very small living things can grow on food and in food. These living things are *microorganisms, and some of them are *bacteria. They can come from the air, hands, tools, and tables. When they become many, food can change. The color can change, and a strange *smell may appear. So people keep creating many ways to *preserve food. This means that food stays good longer, and it is safer to eat. One of the oldest ways is drying. Drying takes water out of food. With less water, microorganisms do not grow fast. Then food can stay good longer. Look at Picture 1. Long ago, people put food under the sun and in the wind for many hours. Dried fish and dried fruit are good examples. Drying makes food light and (1)-a So dried food was useful for travelers on long trips. However, dried food can change quickly after it becomes wet again. So people needed a dry place and a closed bag. 1 II Li Drying can also change the *taste and the feeling in the mouth. For example, grapes can become (1)-b Dried grapes taste good. On the other hand, when a bag of dried food is open on a very easy to carry very small and sawetan take in water. Then it may not taste good, and bacteria may start to grow. After that, the food may go bad soon. boll To make food drier, people used more ideas than just the sun and wind. One idea was salt. Salt could pull water out of food, and the food could become drier. For example, people put salt on fish, and then they put it outside. The fish became dry and very salty. It stayed good for many days, so people could eat it later. Before cooking, people often washed the fish in water, and some salt went away. Another idea was *smoke from a fire. People hung meat or fish over a small fire for many hours. The smoke made the food drier, and it could give a special smell and taste. This food stayed good longer than fresh food. But if the inside was still wet, it could go bad. These ways are still used today in many places.00 yw yron al sobi blo Another old idea is cooling. When the temperature goes down, changes in food become slower. Bacteria also grow more slowly. Today, many homes have a *fridge, but long ago, people used nature. In cold areas, people used snow and ice. In other places, people used cool places in the mountains or cold river water. Later, people built special places for ice. They put ice in ice houses with thick walls, and the ice stayed (1)-c . Look at Picture 2. In Japan, people built a special building. It was a himuro. They used it old for many mice for the summer. In winter, they brought snow and ice from cold places and put them inside. Even today, the same idea is useful. An *ice pack can alad be(2) But it slowly turns cool a lunchbox for some time. 9

解決済み 回答数: 1
理科 中学生

(2)答えの式の意味がわかりません。教えてください🙇‍♀️

6. うすい塩酸に亜鉛を加えて気体を発生させる実験を行いました。 【実験】 うすい塩酸 30cm' に 0.2gの新船を加えて、発生した気体の体験をはかった 亜鉛の質量を0.4g、0.6g、0.8g, 1.0gにして、それぞれ同様に発生した 体の体積をはかった。 ET 亜鉛の質量と発生した気体の体積の関係を表にしてまとめた。 亜鉛の質量[g] 0.2 75 発生した気体の体積 [cm] 0.4 0.6 0.8 1.0 150 225 225 225 〒 (2) 亜鉛の質量が0.8g 1.0gのときは亜鉛がすべて溶けずに残りました。亜鉛の質 量が0.8gのとき残っていた亜鉛をすべて溶かすためには、同じ濃度の塩酸をあと 何cm加える必要がありますか。 05 cm³ 25 cm³ 17 10 cm³ 15 cm³ 20 cm³] 630 cm³ 35 cm³ 40 cm³ (3)同じ濃度の塩酸の量を20cmにして亜鉛を入れた場合、亜鉛の質量と発生した気 体の体積との関係を正しく表したグラフはどれですか。 18 (1)発生する気体の性質と捕集方法の組み合わせとして正しいものはどれですか。 16 <気体の性質> A 火を近づけるとポンと音を立てて燃える A B 石灰水を白くにごらせる A #NE O (株) at <捕集方法> C 上方置換 D 下方置換 E 水上置換 X> 気体の性質 捕集方法 X 0 A YYXO ① 109 ② AA C A D A E O [⑤ ⑥ BBB C D E ① 300 発生した気体の体積 250 [200] 150 積 100 発生した気体の体積 C [cm³] 50 ② 300 250 200 150 積 100 [cm³] 50 0 0.2 0.4 0.6 0.8 1.0 亜鉛の質量[g] 0 0.2 0.4 0.6 0.8 1.0 亜鉛の質量[g] testa er 300 発生した気体の体積 250 200 150 積 100 [cm³] 50 0 0 300 250 発生した気体の体積 200 150 100 [cm³] 50 0.2 0.4 0.6 0.8 1.0 亜鉛の質量 [g] A 0 0.2 0.4 0.6 0. 亜鉛の質量 <-10-

解決済み 回答数: 1
1/52