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CTTAM Civil-Engineering-Technology Exam Syllabus Topics:

SectionWeightObjectives
Transportation Engineering15%- Highway & Road Design
  • 1. Traffic Engineering & Planning
    • 2. Pavement Design & Materials
      Civil Engineering Fundamentals25%- Engineering Mathematics & Applied Science
      • 1. Surveying & Geomatics
        • 2. Fluid Mechanics & Hydraulics
          • 3. Statics & Mechanics of Materials
            Geotechnical Engineering18%- Soil Mechanics & Foundation Engineering
            • 1. Earthworks & Retaining Structures
              • 2. Soil Properties & Testing
                Structural Engineering20%- Structural Analysis & Design
                • 1. Concrete & Steel Structures
                  • 2. Timber & Masonry Design
                    Water Resources & Environmental Engineering12%- Hydrology & Water Systems
                    • 1. Environmental Regulations & Sustainability
                      • 2. Wastewater & Water Treatment
                        Construction Management & Materials10%- Construction Methods & Project Management
                        • 1. Codes, Standards & Ethics
                          • 2. Construction Materials & Quality Control

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                            CTTAM Technical Examination - Civil Engineering Technology C.E.T Sample Questions (Q80-Q85):

                            NEW QUESTION # 80
                            Which of the following situations would cause the most serious delay on a project?

                            Answer: C

                            Explanation:
                            Unexpected discovery ofhuman remains/burials(or suspected remains) during excavation can trigger immediate legal and procedural requirements that typically halt work in the affected area. Environmental and regulatory guidance for construction sites commonly instructs contractors tostop workand notify appropriate authorities (e.g., police/coroner and archaeological authorities) when human skeletal remains are found. This can lead to investigations, permitting/licensing, archaeological excavation, and documentation, all of which may significantly disrupt sequencing and access and can extend for days to months depending on findings and jurisdictional requirements. In contrast, a single non-fatal injury, a flooded trench, or a ruptured gas service line can be serious and may cause delays, but they are often addressed through emergency response and repair
                            /restoration measures within defined operational procedures. Because discoveries of bones/remains can impose mandatory stoppages and third-party involvement before work can resume, they are typically among the most serious schedule impacts.


                            NEW QUESTION # 81
                            Based on the diagram below, what is the percentage slope between D1 and C2 if the grid is 10 m × 10 m?

                            Answer: A

                            Explanation:
                            Percent slope is computed as:
                            This is the standard civil engineering definition of grade/slope used in surveying, drainage, and roadway work. With a 10 m × 10 m grid, the plan distance between two grid points is determined from the grid spacing (10 m increments). Using the elevations/contours shown at pointsD1andC2, the elevation difference divided by the plan distance yields a slope that matches6.79%. This corresponds to a rise/fall of roughly0.679 m per
                            10 mof horizontal distance (or an equivalent ratio based on the exact D1-C2 spacing in the grid), which is consistent with the computed percent. Therefore, the correct selection is6.79% (Option C).


                            NEW QUESTION # 82
                            A civil engineering technologist is performing a concrete test on a site. What minimum number of cylinders should the technologist make?

                            Answer: C

                            Explanation:
                            Concrete compressive strength is verified using standardized specimens that represent the delivered concrete.
                            A typical field/lab testing program preparesa set of cylindersso strength can be checked at standard ages and so at least one specimen remains available if a test is invalid or confirmation is required. InExperiment Design for Civil Engineering, the compressive strength procedure explicitly states thatsets of four cylindersshould be prepared and thenone cylinder from each setis tested at7, 14, 21, and 28 days. This "four-cylinder set" directly supports the minimum needed to obtain a time-history of strength development through the common curing ages used in practice and referenced by ASTM C39 age tolerances. While many projects may require additional cylinders (for 7-day early breaks, hold cylinders, or additional acceptance tests), the question asks theminimumnumber, and the documented testing set described isfour.


                            NEW QUESTION # 83
                            Which factor aggravates a freeze-thaw cycle and contributes to asphalt pavement deterioration?

                            Answer: C

                            Explanation:
                            Freeze-thaw pavement damage is driven bywater presencein cracks/voids and repeated freezing and thawing. When water enters pavement cracks and freezes, it expands and worsens cracking; repeated cycles promote disintegration and pothole formation. Poor drainage increases theavailability and residence time of waterin the pavement structure, so more water can infiltrate cracks and remain trapped in layers, intensifying freeze-thaw action and accelerating deterioration. This mechanism is consistent with documented observations that water entering cracks, freezing, and thawing expands cracks and breaks bonding, leading to potholes and rapid local deterioration under traffic. Therefore, among the given choices, the factor that most directly aggravates freeze-thaw cycles and contributes to asphalt deterioration ispoor drainage.


                            NEW QUESTION # 84
                            A cologist is required to inspect the installation of a sanitary service pipe to confirm the slope. The technologist measures an elevation of 705.667 at the end of the service and 705.202 at the main. The horizontal measurement from the main to the end of the service is 22.10 m. What is the slope of the pipe?

                            Answer: B

                            Explanation:
                            Pipe slope is computed asrise (or fall) divided by run, expressed as a percent:
                            This matches standard civil engineering definitions of grade/slope as elevation change over horizontal distance.
                            Here, the elevation drop from the service end to the ma5.202 =0.465 m.
                            Horizontal distance (run) =22.10 m.
                            Slope = 0.465 / 22.10 = 0.02104 =2.104%, which rounds to2.1%.
                            This calculation reflects standard practice used in roadway and pipeline work for checking grades, confirming that installed utilities meet design slopes for gravity flow. The answer choice that matches the computed slope is2.1% (Option C).


                            NEW QUESTION # 85
                            ......

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