Civil Engineering (CE) Exam  >  Civil Engineering (CE) Notes  >  Topic wise GATE Past Year Papers for Civil Engineering  >  Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE) PDF Download

Q1: A delivery agent is at a location R. To deliver the order, she is instructed to travel to location P along straight-line paths of RC, CA, AB  and BP of 5 km each. The direction of each path is given in the table below as whole circle bearings. Assume that the latitude (L) and departure (D) of R is (0, 0)km. What is the latitude and departure of P (in km, rounded off to one decimal place)?  [2023, Set-II]
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

(a) L = 2.5 ; D = 5.0
(b) L = 0.0 ; D = 5.0
(c) L = 5.0 ; D = 2.5
(d) L = 0.0 ; D = 0.0
Ans:
(b)
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)


Q2: The direct and reversed zenith angles observed by a theodolite are 5600′ 00′′ and 303 00′ 00′′, respectively. What is the vertical collimation correction?  [2023, Set-I] 
(a) +1 00′ 00′′ 
(b) −1 00′ 00′′ 
(c) −0 30′ 00′′ 
(d) +0 30′ 00′′
Ans:
(d)
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)In above example of both direct zenith angle and reversed zerwith angle are smaller than true value.
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Q3: The diameter and height of a right circular cylinder are 3 cm and 4 cm, respectively. The absolute error in each of these two measurements is 0.2 cm. The absolute error in the computed volume (in cm3 , round off to three decimal places), is _______.   [2020, Set-II] 
(a) 1.65 
(b) 7.52 
(c) 3.25 
(d) 5.18
Ans: 
(d)
Let diameter, x = 3 and height = y = 4 and error = ±0.2
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Q4: A series of perpendicular offsets taken from a curved boundary wall to a straight survey line at an interval of 6m are 1.22, 1.67, 2.04, 2.34, 2.14, 1.87, and 1.15 m. The area (in m2 , round off to 2 decimal places) bounded by the survey line, curved boundary wall, the first and the last offsets, determined using Simpson's rule, is _______   [2019, Set-II]
(a) 35.50 
(b) 45.25 
(c) 68.50
(d) 75.45
Ans:
(c)
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)Area by Simpson's rule
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Q5: Consider the hemi-spherical tank of radius 13 m as shown in the figure. What is the volume of water (in m3) when the depth of water at the centre of the tank is 6 m?  [2019, Set-II]
Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)(a) 78π
(b) 156π
(c) 396π
(d) 468π
Ans: 
(c)
Volume of water

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)


Q6: The method of orientation used, when the plane table occupies a position not yet located on the map, is called as    [2017 : 1 Mark, Set-II]
(a) traversing
(b) radiation
(c) levelling
(d) resection

Ans: (d)
1. Traversing: 'Traverse’ means to pass across. Traversing refer to the framework of series of lines forming an open or closed polygon.
2. Radiation: It is a method of locating a point by drawing a radial line from the plane table station to the station under consideration.
3. Levelling: It is the method of determining the difference of elevations or levels of different points on the earth’s surface.
4. Resection:It is the method of locating a station occupied by the plane table when the position of that station has not been plotted earlier on the sheet when the plane table occupied other station

Q7: The VPI (vertical point of intersection) is 100 m away (when measured the horizontal) from the VPC (vertical point of curvature). If the vertical curve parabolic, the length of the curve (in meters and measured along the horizontal) is ________.  [2017 :1 Mark, Set-II]
Ans:

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)


Q8: A circular curve of radius R connects two straights with a deflection angle of 60°. The tangent length is  [2016 : 1 Mark, Set-II]
(a) 0.577 R
(b) 1.155 R
(c) 1.732 R
(d) 3.464 R
Ans: (a)

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Tangent length

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Q9: In a survey work, three independent angles, X, Y and Z were observed with weights Wx, WY, Wz, respectively. The weight of the sum of angles X, Y and Z is given by  [2015 : 2 Marks, Set-T]

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)
Ans: (a)
Various laws of weight
Let there be quantities A and B with weight Wa and Wb respectively

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)


Q10: The chainage of the intersection point of two straights is 1585.60 m and the angle of intersection is 140°. If the radius of a circular curve is 600.00 m, the tangent distance (in m) and length of the curve (in m), respectively are  [2014 : 2 Marks, Set-II]
(a) 418.88 and 1466.08
(b) 218.38 and 1648.49
(c) 218.88 and 418.82
(d) 418.88 and 218.38
Ans: (c)

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Δ = 180° - 140° = 40°
Length of the curve

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Tangent distance (7) is the distance between
P-C to P.I (also the distance from P.I to P. T)
⇒ T = T1V

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

= 600 tan 20° = 218.88 m

Q11: A tacheometer was placed at point P to estimate the horizontal distances PQ and PR. The corresponding stadia intercepts with the telescope kept horizontal, are 0.320 m and 0.210 m, respectively. The ∠QPR is measured to be 61° 30' 30". If the stadia multiplication constant = 100 and stadia addition constant = 0.10 m, the horizontal distance (in m) between the points Q and R is ______.  [2014 : 2 Marks, Set-II]

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

Ans:

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

PQ = ks + C
= 100(0.32) + 0.1 = 32.1 m
PR = ks + C
= 100(0.21) + 0.1 = 21.1 m
Applying the cosine rule

Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors | Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

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FAQs on Past Year Questions: Tacheometric, Curve, Hydrographic and Plane Table Surveying & Theory of Errors - Topic wise GATE Past Year Papers for Civil Engineering - Civil Engineering (CE)

1. What is tacheometric surveying and how is it different from traditional surveying methods?
Ans.Tacheometric surveying is a rapid method of obtaining horizontal and vertical distances using a tacheometer, which combines the functions of a transit and an odometer. Unlike traditional surveying methods that require direct measurements over longer distances, tacheometric surveying employs angular measurements and staff readings to calculate distances indirectly, making it more efficient for large areas.
2. What are the key components of curve surveying in civil engineering?
Ans.The key components of curve surveying include the radius of the curve, the degree of curvature, and the length of the curve. Additionally, elements such as the tangent, external distance, and the central angle are essential in designing and laying out curves in road and railway constructions to ensure smooth transitions for vehicles.
3. How does hydrographic surveying differ from other types of surveying?
Ans.Hydrographic surveying specifically focuses on mapping and measuring bodies of water, including rivers, lakes, and oceans. Unlike land surveying, which deals with terrestrial features, hydrographic surveying involves understanding water depth, currents, and underwater topography, making it crucial for navigation, construction, and environmental management.
4. What is the significance of the theory of errors in surveying?
Ans.The theory of errors is significant in surveying because it helps in understanding and quantifying the uncertainties and inaccuracies in measurements. By applying statistical methods, surveyors can estimate the precision of their data, identify potential errors, and apply corrections, thus ensuring more reliable and accurate survey results.
5. What are the common applications of plane table surveying in modern engineering projects?
Ans.Plane table surveying is commonly used in engineering projects for site planning, mapping, and creating topographic surveys. Its applications include laying out construction sites, establishing control points, and conducting field surveys, as it allows for direct plotting of features in real-time, enhancing efficiency and accuracy in data collection.
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