Concept explainers
The geodetic coordinates for a point A.
-->
The geodetic coordinate for point A is
Given:
The state plane coordinates of points A and B are shown in the following table.
Point | E(m) | N(m) |
A | | |
B | | |
Concept Used:
Write the expression for the actual
Here,
Write the expression for the actual
Here,
Write the expression for the convergence angle.
Here,
Write the expression for the radius of the earth.
Here,
Write the expression for geodetic longitude.
Here,
Write the expression for the number of arcs.
Here,
Write the expression for geodetic latitude.
Calculate the value of
For Pennsylvania’s North Zone.
Substitute
Calculate the value of
Substitute
Calculate the convergence angle.
Substitute
Calculate the radius of Earth.
Substitute
Calculate the geodetic longitude of point
For Pennsylvania’s north zone
Substitute
Calculate the geodetic latitude with the help of table showing various parameters for the North Zone of Pennsylvania.
Latitude
| Radius(m) | Tab. Difference | Scale factor
f |
| 7264593.050 | 30.84830 | 0.99996400 |
| 7262742.152 | 30.84836 | 0.99996295 |
As per the calculations the computed radius,
Substitute
Calculate the geodetic latitude.
Substitute
Conclusion:
The geodetic coordinate of point

Want to see the full answer?
Check out a sample textbook solution
Chapter 20 Solutions
ELEMENTARY SURVEYING LL W/MASTERING ENGR
- Draw the shear and the moment diagrams for each of the frames below. If the frame is statically indeterminate the reactions have been provided. Problem 1 (Assume pin connections at A, B and C). 30 kN 2 m 5 m 30 kN/m B 60 kN 2 m 2 m A 22 CO Carrow_forwardThis is an old exam practice question. The answer key says the answer is Pmax = 52.8kN but I am confused how they got that.arrow_forwardF12-45. Car A is traveling with a constant speed of 80 km/h due north, while car B is traveling with a constant speed of 100 km/h due east. Determine the velocity of car B relative to car A. pload Choose a File Question 5 VA - WB VBA V100 111413 + *12-164. The car travels along the circular curve of radius r = 100 ft with a constant speed of v = 30 ft/s. Determine the angular rate of rotation è of the radial liner and the magnitude of the car's acceleration. Probs. 12-163/164 pload Choose a File r = 400 ft 20 ptsarrow_forward
- P6.16 A compound shaft (Figure P6.16) consists of a titanium alloy [G= 6,200 ksi] tube (1) and a solid stainless steel [G= 11,500 ksi] shaft (2). Tube (1) has a length L₁ = 40 in., an outside diameter D₁ = 1.75 in., and a wall thickness t₁ = 0.125 in. Shaft (2) has a length 42 = 50 in. and a diameter d₂ = 1.25 in. If an external torque TB = 580 lb ft acts at pulley B in the direction shown, calculate the torque Tcrequired at pulley C so that the rotation angle of pulley Crelative to A is zero. B Te (2) TB (1) FIGURE P6.16arrow_forward7.43 Neglecting head losses, determine what horsepower the pump must deliver to produce the flow as shown. Here, the elevations at points A, B, C, and D are 124 ft, 161 ft, 110 ft, and 90 ft, respectively. The nozzle area is 0.10 ft². B Nozzle Water C Problem 7.43arrow_forwardA 1.8m x 1.8m footing is located at a depth of 1 m below the ground surface in a deep deposit of compacted sand (f'= 33 , f' = 28 , γ = 17.5 kN/m). Calculate the ultimate net bearing capacity considering several factors (e.g., shape, depth, and inclination) when the groundwater table is located (a) at 5 m below the footing base, (b) at the ground surface, (c) at the footing base, and (d) at 1.5 m below the footing base. Also, explain the effects of the groundwater levels in the bearing capacities of the footing with your own words. If the information is not given for the calculation, please assume it reasonably.arrow_forward
- Structural Analysis (10th Edition)Civil EngineeringISBN:9780134610672Author:Russell C. HibbelerPublisher:PEARSONPrinciples of Foundation Engineering (MindTap Cou...Civil EngineeringISBN:9781337705028Author:Braja M. Das, Nagaratnam SivakuganPublisher:Cengage Learning
- Fundamentals of Structural AnalysisCivil EngineeringISBN:9780073398006Author:Kenneth M. Leet Emeritus, Chia-Ming Uang, Joel LanningPublisher:McGraw-Hill EducationTraffic and Highway EngineeringCivil EngineeringISBN:9781305156241Author:Garber, Nicholas J.Publisher:Cengage Learning





