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関連する概念動画

Gauss's Law: Planar Symmetry01:27

Gauss's Law: Planar Symmetry

A planar symmetry of charge density is obtained when charges are uniformly spread over a large flat surface. In planar symmetry, all points in a plane parallel to the plane of charge are identical with respect to the charges. Suppose the plane of the charge distribution is the xy-plane, and the electric field at a space point P with coordinates (x, y, z) is to be determined. Since the charge density is the same at all (x, y) - coordinates in the z = 0 plane, by symmetry, the electric field at P...
Absolute Motion Analysis- General Plane Motion01:24

Absolute Motion Analysis- General Plane Motion

Visualize a drone, with its propellers spinning rapidly, hovering mid-air. The fascinating movements and operations of this drone can be comprehended by applying the principle of general plane motion.
As the drone's propellers rotate, an upward force is generated that counteracts the force of gravity, enabling the drone to lift off from the ground. This initial movement of the drone is along a straight path, representing a form of translational motion. In this phase, every point on the drone...
Systems of Linear Equations in Two Variables01:25

Systems of Linear Equations in Two Variables

Solving a system of linear equations is a fundamental concept in algebra. A system of equations consists of two or more linear equations involving the same set of variables. One of the most efficient algebraic methods for solving such systems is the substitution method. This technique involves expressing one variable in terms of the other from one equation and substituting it into the second equation. This method is particularly useful when one of the equations is easily rearranged.Consider the...
Problem Solving: Volume01:13

Problem Solving: Volume

The volume of a fuel tank mounted on the wing of a jet aircraft can be modeled using the concept of solids of revolution. In this case, the tank is formed by rotating a two-dimensional region, defined by a mathematical function, about the x-axis. The region extends along the axis from zero to two meters, and the resulting three-dimensional shape is symmetric about the axis of rotation. Because the boundary curve lies directly against the axis, the disk method is an appropriate technique for...
Planes in Space01:31

Planes in Space

A plane in three-dimensional space is fundamentally characterized by a point that lies on the plane and a normal vector that is perpendicular to its surface. This normal vector uniquely determines the orientation of the plane, making it an essential geometric descriptor. In architectural applications, such as the installation of a sloped glass panel on a building façade, this mathematical model provides a precise representation of the panel’s position and orientation in space.Let r₀ be the...
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Vectors in 2D: Problem Solving

A plane traveling due north at 180 km/h in still air was found to be 80 km off-course after 30 minutes, deviating approximately 5 degrees east of north. This deviation means the influence of a crosswind alters the plane’s intended trajectory. The actual ground path formed a diagonal, suggesting that the aircraft’s effective ground speed was reduced to 160 km/h and directed slightly to the east due to the wind.By analyzing the displacement from the intended path, the velocity contributed by the...

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Updated: Jul 9, 2026

Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling
20:36

Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling

Published on: July 4, 2007

スペースシャトル計画:政策の失敗?

J M Logsdon

    Science (New York, N.Y.)
    |May 30, 1986
    PubMed
    まとめ

    1972年に開始された米国のスペースシャトルプログラムは,政治的承認のために設計上の妥協によって根本的な課題に直面しました. これらの初期の決定は,日常的で費用対効果の高い宇宙輸送システムとしての有効性に影響を与えました.

    科学分野:

    • 宇宙探査 (宇宙探査) とは,宇宙探査のことです.
    • 航空宇宙工学とは
    • 輸送システム 輸送システム

    背景:

    • 1972年のスペースシャトル計画の発表は,米国の宇宙活動に大きな変化をもたらした.
    • このプログラムは,1970年代に米国のために新しい宇宙輸送システムを確立することを目的とした.

    研究 の 目的:

    • シャトル宇宙計画が米国の宇宙活動に与える根本的な影響を分析する.
    • シャトルの開発段階で行われた設計選択と妥協の評価.
    • 確立された政策目標の達成におけるプログラムの成功を評価する.

    主な方法:

    • スペースシャトルプログラムの開始と発展の歴史的分析.
    • 政策目標と実際のシステムのパフォーマンスを比較する.
    • 設計決定とその結果の遡及的評価.

    主要な成果:

    • 選択されたスペースシャトルの設計は本質的に欠陥があり,多くの政策目標を達成できませんでした.
    • 1971-72年の承認期間中に行われた妥協は,シャトルの運用問題に大きく貢献しました.
    • シャトルは,主要な打ち上げ用ロケットとして機能し,費用対効果の高い輸送を提供するために苦労しました.

    さらに関連する動画

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    A Rapid Method for Modeling a Variable Cycle Engine

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    Eye Tracking During A Complex Aviation Task For Insights Into Information Processing

    Published on: April 4, 2025

    関連する実験動画

    Last Updated: Jul 9, 2026

    Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling
    20:36

    Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling

    Published on: July 4, 2007

    A Rapid Method for Modeling a Variable Cycle Engine
    04:58

    A Rapid Method for Modeling a Variable Cycle Engine

    Published on: August 13, 2019

    Eye Tracking During A Complex Aviation Task For Insights Into Information Processing
    07:48

    Eye Tracking During A Complex Aviation Task For Insights Into Information Processing

    Published on: April 4, 2025

    結論:

    • スペースシャトルプログラムは,大手技術企業に対する欠陥のある国家のコミットメントのケーススタディとして機能しています.
    • 初期の設計上の妥協は,スペースシャトルの意図された機能と効率に永続的な悪影響を及ぼしました.
    • プログラムの課題は,大規模なプロジェクトにおける政治的考慮と技術的な実現可能性のバランスを取ることの重要性を強調しています.