11.5
A line in three-dimensional space can be described using vectors when a point on the line and a direction for the line are known.
This concept applies during construction, where laser beams from surveying instruments are used to map positions and guide alignment.
The starting point P0 of the beam is known and is shown by a position vector r0 from the origin.
The beam travels in a fixed direction, modeled by a direction vector v parallel to the line.
Any point P on the beam also has a position vector r from the origin. The vector that connects P0 to P is represented by vector a.
By the triangle law of vector addition, r equals r0 plus a.
Since a lies along the beam’s direction, it is written as a scalar multiple of v.
Substituting this gives the vector equation of the line. This scalar acts like a parameter; as it varies, the equation traces the beam's full path in space. A positive scalar corresponds to points on one side of P0, and a negative scalar to the other.
This helps align columns or markers along the beam’s path because the laser tool uses 3D vectors to convert sensor data into precise spatial information.
3次元解析幾何学では、直線上の点とその方向の両方がわかっている場合、ベクトル方程式を使用して直線を完全に記述することができます。このアプローチは、正確な空間モデリングが不可欠なエンジニアリングや測量などの分野で実際に応用されています。たとえば、建設現場に向けられた測量機器からのレーザー光線は、ベクト…
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