マインドマップギャラリー 中学校生物 植物のくらし
根の構造、つぼみの構造、花の構造、葉の構造、植物の生理機能。詳しい紹介があり、興味のある方の参考になれば幸いです!
2024-02-11 12:45:26 に編集されましたThis template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
This template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
植物の生態
3. 開花と結実
花の構造
花の主な構造は雌しべと雄しべです
受粉
自家受粉
他家受粉
4. 植物の生理活動
蒸散
蒸散原理
生きている植物の表面から水が水蒸気の形で大気中に失われるプロセスは蒸散と呼ばれます
導管: 水と無機塩を下から上に輸送します。
葉は表皮、葉肉、葉脈から構成されています。
葉の表面には、孔辺細胞のペアに囲まれた気孔があります。気孔は、葉と外界との間のガス交換と蒸散の入り口です。
蒸散の意味
植物の温度を下げる
根からの吸水を促進する
植物内の水と無機塩の輸送を促進する
蒸散に影響を与える要因
イルミネーション
枝葉の数
空気の流れの速度
蒸散の応用
植物を移植するときは、枝や葉をいくつか取り除き、曇りの日または夕方を選び、移植後に日陰に置きます。これはすべて、植物の蒸散を減らし、水分の損失を減らし、植物の生存を促進するためです。
光合成
光合成の産物はエネルギーを蓄える有機物と酸素です
光合成に必要な原料:水、二酸化炭素、光
場所: 葉緑体
2. 植物の成長
根端構造
芽の構造
1. 種子の発芽
種子の発芽条件
種子自体の状態: 胚は完全で生きており、種子は休眠期間にありません。
種子の発芽のための環境条件: 適切な温度、一定の湿度、および十分な空気
種子の発芽のプロセス
まず幼根が種皮を突き破って根になり、胚軸が伸びて根と茎をつなぐ部分になり、胚が芽となり、さらに茎や葉が形成されます。