A triangulation data structure is a data structure designed to handle the representation of a two dimensional triangulation. Triangulation is the one who is responsible for the creation and removal of faces and vertices (memory management).
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Triangulation of the exact location of any given thing has become much easier with the development of satellite technology.
I'm guessing after the triangle was made.
Triangulation points, also known as survey markers or control points, are fixed locations on the Earth's surface used in surveying and mapping to determine precise geographical positions. These points are established through a process called triangulation, which involves measuring angles from known locations to calculate distances and positions. Triangulation points are crucial for creating accurate maps and are often marked with physical monuments or markers. They serve as reference points for various applications, including land surveying, construction, and navigation.
One example of an astronomer's use of trigonometry is determining the distance to a star by triangulation.
Triangulation is a technique or a method that uses the shape of a triangle on structures that require a lot of strength to serve its purpose, this is why it is popular for building structures from large to small, permanent to temporary. A triangular form is one of the strongest shapes known to man, triangulation of material adds strength by reducing lateral movement.
the Eiffel tower
Triangulation is an excellent way of building structures because it provides stability and support by distributing loads evenly throughout the structure. The triangular shape is inherently strong and resistant to forces such as compression and tension, making it ideal for constructing sturdy buildings and bridges. Additionally, triangulation allows for efficient use of materials and can help in minimizing the overall weight of the structure.
Triangulation is a technique or a method that uses the shape of a triangle on structures that require a lot of strength to serve its purpose, this is why it is popular for building structures from large to small, permanent to temporary. A triangular form is one of the strongest shapes known to man, triangulation of material adds strength by reducing lateral movement.
Walter F. Reynolds has written: 'Triangulation in Maine' -- subject(s): Triangulation, Geodesy 'First-order triangulation in southeast Alaska' -- subject(s): Triangulation, Geodesy
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A Laser Triangulation Sensor is a device for measuring heights. Basically, you point a laser beam directly at a surface, is reflected and falls on the sensor, through the lens. Depending on the beams position on the sensor, the angle towards the surface is calculated.
Yes the Brooklyn bridge does use triangulation. If you want proof look at a really big picture or use this link below. Zoom in and you can see the triangulation at the sides.
Jasper S. Bilby has written: 'Reconnaissance and signal building' -- subject(s): Triangulation 'Bilby steel tower for triangulation' -- subject(s): Triangulation signal towers
Structures that rely on triangulation for their strength include bridges, trusses, and certain types of roofs. Triangular shapes distribute weight evenly and provide stability, making them ideal for supporting heavy loads. Common examples are the truss bridges, which use triangular units to efficiently transfer forces, and geodesic domes, which utilize triangular frameworks for strength and lightness. This design principle helps prevent deformation and enhances overall structural integrity.
Answer #1:no=================Answer #2:Yes.Another answer: The primary use of triangulation may not be to measure the distance of stars, but the method which is used to measure the distance of close stars is primarily triangulation.
Triangulation navigation works by using multiple reference points to determine an object's position. In modern technology, this method is commonly used in GPS systems to provide accurate location information. The benefits of triangulation navigation in modern technology include improved accuracy, reliability, and efficiency in determining location, which is essential for navigation, tracking, and mapping applications.