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DTSTART;VALUE=DATE:20260810
DTEND;VALUE=DATE:20260811
DTSTAMP:20260810T052659Z
CREATED:20260810T052659Z
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UID:389-1786320000-1786406399@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz- Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     1\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    Prepare for GATE Architecture & Planning (AR) 2027-28 with free online quizzes and mock tests by KP GATE Classes. Practice Architecture MCQs\, PYQs\, Planning\, Structures\, Building Materials\, and Government Architecture Exam questions with instant answers and real exam-level practice. \n\n                    \n                    \n                    \n                    \n                    \n                    \n                    \n                    \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                A Classroom of 12 m x 25 m x 4 m requires 3 air changes per hour. At an \nair velocity of 2 m/s\, the necessary duct cross-section (in m²) is \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                1.5\n\n            \n            \n                \n\n                \n\n                1.00\n\n            \n            \n                \n\n                \n\n                0.75\n\n            \n            \n                \n\n                \n\n                0.50\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Volume = 12×25×4 = 1200 m³. With 3 air changes/hour\, required flow =\n1200×3 = 3600 m³/hour. Convert to m³/s: 3600 / 3600 = 1.0 m³/s. With air\nvelocity 2 m/s\, required area = Q / V = 1.0 / 2 = 0.5 m². \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The purchase price of BHK flat rises 10 percent. The demand for such flats\nis observed to decrease by 8 percent. The given elasticity of the housing\ndemand for 2010-11 (flat is rounded off to one decimal place) is \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                0.08\n\n            \n            \n                \n\n                \n\n                0.8\n\n            \n            \n                \n\n                \n\n                80\n\n            \n            \n                \n\n                \n\n                8\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Price elasticity of demand = (% change in quantity demanded) / (% change\nin price). Here demand falls by 8% when price rises by 10% → elasticity =\n−8% / +10% = −0.8. The magnitude 0.8 (rounded to one decimal) indicates\ninelastic demand (|ε| &l < 1): buyers reduce quantity less than proportionally\nto the price increase. For housing\, inelastic responses are common over\nshort periods due to transaction costs and housing being a necessity. The\nnegative sign denotes the inverse relation; exam options typically list\nmagnitudes\, so 0.8 is the correct numeric choice. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                A sanitary landfill is provided with High Density Polyethylene (HDPE)\nlining along the ground surface. This is provided primarily to prevent \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                plant growth\n\n            \n            \n                \n\n                \n\n                rodents\n\n            \n            \n                \n\n                \n\n                A sanitary landfill is provided with High Density Polyethylene (HDPE) lining along the ground surface. This is provided primarily to prevent\n\n            \n            \n                \n\n                \n\n                bleaching\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            A High Density Polyethylene (HDPE) liner is installed at the base of modern\nsanitary landfills to prevent leachate (contaminated liquid) percolating\ninto the ground and contaminating groundwater and soil. The\nimpermeable HDPE membrane\, often combined with compacted clay and\ngeotextiles\, provides containment. It does not primarily target rodents\,\nplant growth or bleaching. Proper liner systems reduce pollution risk\,\nallow controlled leachate collection and treatment and are central to\nengineered sanitary landfill design standards aimed at protecting public\nhealth and the environment. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The best location for laying the main sewer line on a flat land is \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Under the road\n\n            \n            \n                \n\n                \n\n                under the side walk\n\n            \n            \n                \n\n                \n\n                under the open space along sidewalk\n\n            \n            \n                \n\n                \n\n                under the central verge\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Placing the main sewer under the road is standard practice: roads provide\ncontinuous linear corridors with public right-of-way\, easier access for\ninspection and maintenance\, and reduced need for private land\nacquisition. Road trenches avoid disturbance of buildings\, avoid\ncompromising private compound space\, and permit alignment with other\nutilities in planned utility corridors. Sidewalks or central verges may be\nused for smaller drains\, but the main trunk sewer benefits from road\nalignment to maintain required slope\, accessibility for repair\, and\nintegration with manholes and laterals. This minimizes conflicts with\nprivate property and streamlines construction and operation. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Which of the following parameters is essential to estimate the Envelope\nPerformance Factor (EPF) of a building as per Energy Conservation\nBuilding Code (ЕСВС)\, 2011? \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Building occupancy duration\n\n            \n            \n                \n\n                \n\n                Building type\n\n            \n            \n                \n\n                \n\n                Maximum and minimum monthly  temperature\n\n            \n            \n                \n\n                \n\n                Maximum humidity\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            The Envelope Performance Factor (EPF) assesses building envelope energy\nperformance and accounts for internal heat gains and usage patterns.\nBuilding occupancy duration (operating hours) is essential because the\nenvelope’s thermal performance interacts with HVAC operating schedules\n— longer occupancy increases conditioning hours and thus energy impact\nof envelope losses/gains. ECBC envelope compliance calculators use\nclimate data together with building type and occupancy schedules to size\nglazing\, insulation and shading. While temperature extremes and building\ntype matter\, EPF calculations explicitly require occupancy duration to\nestimate annual heating/cooling loads and hence the envelope’s relative\nperformance. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                                \n                                Congratulations! You’ve completed the test. Fill out the form to view your result. \n\n                                    \n                                    \n                                        \n                                        \n                                    \n                                \n                              \n            Your score is The average score is 40% \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
URL:https://quiz.gatearchitecture.co.in/quiz/architecture-daily-quiz-72/
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