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Distance Corrections01:15

Distance Corrections

To achieve precise distance measurements, especially in surveying and construction, certain corrections must be applied to account for potential sources of error like the standardization errors, temperature variations, and slope adjustments.Standardization error emerges when measurement equipment undergoes changes, such as wear, repairs, or weather impacts. To address this, surveyors compare the equipment’s readings to a standard. This process identifies any deviation that might lead to...
Differential Leveling01:12

Differential Leveling

Differential leveling is a precise method in surveying used to determine the elevation difference between two points. Its primary goal is to establish accurate vertical measurements to create level surfaces or grade lines critical for designing and constructing infrastructures such as roads, bridges, and buildings.The procedure for differential leveling begins with setting up and leveling the instrument at a point where the benchmark can be seen. The level rod is held on the benchmark (BM), and...
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During leveling, the Earth's curvature and atmospheric refraction introduce deviations in the line of sight from a true horizontal reference. When the line of sight is leveled, it remains perpendicular to the plumb line only at a single point. Beyond this, it deviates due to the Earth’s curvature, represented by the correction C. For a sight distance D, the deviation can be derived using the relationship:This relationship shows that the deviation increases quadratically with distance. Over a...
Common Leveling Mistakes and Errors01:17

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A survey team is tasked with determining the elevation difference between points Point A and Point B, separated by uneven terrain. They use a leveling instrument and a leveling rod.Common MistakesMisreading the Rod: During a backsight reading at Point A, the instrumentman observes the rod partially obscured by tall grass. Instead of reading 1.135 m, they mistakenly record 1.735 m due to the misalignment of the crosshair with the wrong graduation. This error adds 0.600 m to all subsequent...
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Latitudes and departures are essential concepts in surveying, providing a systematic way to analyze the projections of traverse lines. These projections allow surveyors to interpret a line's north-south and east-west components, which are crucial for precisely calculating areas, bearings, and lengths. Latitude is the north-south projection of a line, calculated as the product of the line's length and the cosine of its bearing. Departure, conversely, is the east-west projection obtained by...
The Distance Formula01:20

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In geometry, measuring the direct distance between two points on a plane is essential in various practical and theoretical applications. Whether in navigation, engineering, or computer graphics, determining the shortest path between two locations involves using the distance formula. This formula is derived from the Pythagorean Theorem, which relates the lengths of the sides of a right triangle. On a coordinate plane, the horizontal and vertical distances between two points serve as the legs of...

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Distancia determinada por la declinación angular debajo del horizonte.

T L Ooi1, B Wu, Z J He

  • 1Department of Biomedical Sciences, Southern College of Optometry, Memphis, Tennessee 38104, USA. tlooi@sco.edu

Nature
|November 9, 2001
PubMed
Resumen
Este resumen es generado por máquina.

Nuestro sistema visual utiliza el ángulo de los objetos por debajo del horizonte para juzgar la distancia. Ver a través de prismas alteró este ángulo, lo que condujo a juicios erróneos en la distancia percibida, lo que demuestra cómo las señales visuales influyen en el sentido espacial.

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Área de la Ciencia:

  • La percepción visual es la percepción visual.
  • Psicología Ecológica Psicología Ecológica
  • La cognición espacial humana es el conocimiento espacial humano.

Sus antecedentes:

  • Los sistemas biológicos aprovechan las regularidades ambientales para la eficiencia.
  • El sentido espacial humano se basa en las regularidades de la superficie del suelo.
  • La estructura del campo visual, desde los pies hasta el horizonte, constituye una base para la estimación de la distancia.

Objetivo del estudio:

  • Para probar la hipótesis de que el sistema visual utiliza la declinación angular por debajo del horizonte para el juicio de distancia.
  • Para investigar los efectos de la declinación angular alterada en la distancia percibida.
  • Explorar los mecanismos subyacentes a la sobreestimación de la distancia después de la adaptación del prisma.

Principales métodos:

  • Tarea de acción dirigida visualmente empleada para evaluar el juicio a distancia.
  • Visualización binocular a través de prismas de base hacia arriba para manipular la declinación angular.
  • Paradigma de adaptación del prisma para estudiar los efectos posteriores en la percepción a distancia.

Principales resultados:

  • El aumento de la declinación angular (ver a través de prismas de base hacia arriba) condujo a la subestimación de la distancia.
  • Después de la adaptación a los prismas base-up, se produjo una sobreestimación de la distancia al eliminar el prisma.
  • La sobreestimación de la distancia se atribuyó a una disminución del nivel del ojo percibido, reduciendo la declinación angular del objeto.

Conclusiones:

  • La declinación angular por debajo del horizonte es una señal crítica para el juicio de la distancia visual.
  • La recalibración del sistema visual a una entrada visual alterada (adaptación del prisma) puede conducir a efectos secundarios significativos en la percepción espacial.
  • El nivel del ojo percibido juega un papel crucial en la modulación de la interpretación de la declinación angular para la estimación de la distancia.