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DTSTART;VALUE=DATE:20260917
DTEND;VALUE=DATE:20260918
DTSTAMP:20260917T054936Z
CREATED:20260524T071602Z
LAST-MODIFIED:20260917T054936Z
UID:232-1789603200-1789689599@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz - Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     33\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    \n\n\n\nPrepare 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                    \n                    \n                    \n                        \n                        \n                                The ingredient to be added to produce Aerated Cement Concrete\, is \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Gypsum\n\n            \n            \n                \n\n                \n\n                Aluminium\n\n            \n            \n                \n\n                \n\n                Calcium chloride\n\n            \n            \n                \n\n                \n\n                Sulphur\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The cause of short column effect\, during seismic occurrence\, is due to \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Buckling of columns\n\n            \n            \n                \n\n                \n\n                Centralized rupture of the column\n\n            \n            \n                \n\n                \n\n                Stress concentration\n\n            \n            \n                \n\n                \n\n                Tearing of reinforcement bars\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Poor behaviour of short columns is due to the fact that in an earthquake\, a tall column\nand a short column of same cross-section move horizontally by same amount (Figure below).\nHowever\, the short column is stiffer as compared to the tall column\, and it attracts larger earthquake\nforce. \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 Performance\nFactor (EPF) of a building as per the Energy Conservation Building Code (ECBC)\, 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                        \n                            Refer to ‘Appendix D: Building Envelop Trade-off Method’ of ECBC User Guide 2011. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Complementary colours in a Munsell pigment colour wheel refers to \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                A pair of secondary colours\n\n            \n            \n                \n\n                \n\n                Colours opposite to one another\n\n            \n            \n                \n\n                \n\n                Colours adjacent to each other\n\n            \n            \n                \n\n                \n\n                Colours in alternate positions\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Complementary colors are pairs of colors which\, when combined or mixed\, cancel each\nother out by producing a grey-scale color like white or black. When placed next to each other\, they\ncreate the strongest contrast for those two colors. Complementary colors may also be called & quot ; opposite\ncolors. & quot; \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                ‘Sight Distance’ is considered in the design of \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Fenestration\n\n            \n            \n                \n\n                \n\n                Auditorium\n\n            \n            \n                \n\n                \n\n                Road intersection\n\n            \n            \n                \n\n                \n\n                Open kitchen\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \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 62% Follow Us\n\n                    \n                        \n                    \n                    \n                        \n                    \n                    \n                        \n                    \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
URL:https://quiz.gatearchitecture.co.in/quiz/architecture-daily-quiz-8/
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260918
DTEND;VALUE=DATE:20260919
DTSTAMP:20260918T061308Z
CREATED:20260524T103733Z
LAST-MODIFIED:20260918T061308Z
UID:237-1789689600-1789775999@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz - Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     30\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    \n\n\n\nPrepare 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                    \n                    \n                    \n                        \n                        \n                                The solar protection system consisting of fixed slates or grids\, outside a building façade\nin front of openings\, is known as \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Trombe wall\n\n            \n            \n                \n\n                \n\n                Brise-soleil\n\n            \n            \n                \n\n                \n\n                Solarium\n\n            \n            \n                \n\n                \n\n                Malqaf\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The spherical surface of the geodesic dome comprises of \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Isosceles triangles of various sizes\n\n            \n            \n                \n\n                \n\n                Equilateral triangles of various sizes\n\n            \n            \n                \n\n                \n\n                Equilateral triangles of uniform size\n\n            \n            \n                \n\n                \n\n                Isosceles triangles of uniform size\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            A geodesic dome is a hemispherical thin-shell structure (lattice-shell) based on\na geodesic polyhedron (a convex polyhedron made from equilateral triangles). \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                A sanitary landfill is provided with High Density Poly Ethylene (HDPE) lining 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                Bleaching\n\n            \n            \n                \n\n                \n\n                Leaching\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            High Density Polyethylene (HDPE) is a common field fabricated geo-membrane material used for lining sanitary landfill to prevent Leachate flow. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Which of the following projection types is adopted in Universal Transverse Mercator (UTM)? \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Spherical\n\n            \n            \n                \n\n                \n\n                Cylindrical\n\n            \n            \n                \n\n                \n\n                Conical\n\n            \n            \n                \n\n                \n\n                Planar\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            The UTM projection flattens the sphere 60 times by shifting the cylinder central\nmeridian 6° for each zone. This gives cartographers a map to work with always in meters. The\nUniversal Transverse Mercator (UTM) coordinate system is a grid-based method of specifying\nlocations on the surface of the Earth that is a practical application of a 2-dimensional Cartesian\ncoordinate system. To map any spot on Earth\, one picks the UTM Zone centerline that is closest to it\nand then makes a map using that &quot;UTM Zone&quot; cylindrical projection. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The abrupt change or junction between two ecological zones is termed as \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Ecosystem\n\n            \n            \n                \n\n                \n\n                Ecological niche\n\n            \n            \n                \n\n                \n\n                Ecotype\n\n            \n            \n                \n\n                \n\n                Ecotone\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \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 66% \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
URL:https://quiz.gatearchitecture.co.in/quiz/architecture-daily-quiz-10/
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260919
DTEND;VALUE=DATE:20260920
DTSTAMP:20260919T053302Z
CREATED:20260524T105506Z
LAST-MODIFIED:20260919T053302Z
UID:243-1789776000-1789862399@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz - Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     24\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    \n\n\n\nPrepare 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                    \n                    \n                    \n                        \n                        \n                                The law of Primate City was first proposed by: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Mark Jefferson\n\n            \n            \n                \n\n                \n\n                Colin Clark\n\n            \n            \n                \n\n                \n\n                Samuel A. Stouffer\n\n            \n            \n                \n\n                \n\n                Harold Hotelling\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            A primate city is a neologism used to refer to the largest city in its country\, province\,\nstate\, or region\, disproportionately larger than any others in the urban hierarchy. The law of the\nprimate city was first proposed by the geographer Mark Jefferson in 1939. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                What is the dependent variable in a regression based trip generation model? \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Number of employees\n\n            \n            \n                \n\n                \n\n                Number of trips\n\n            \n            \n                \n\n                \n\n                Number of households\n\n            \n            \n                \n\n                \n\n                Population of Traffic Analysis Zone\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Most trip production models are two- or three-way cross-classification tables with\nthe dependent variable being trips per household or trips per person. The independent variables are\nmost often income\, auto ownership\, and household size. The dependent variables would be the\nnumber of trip produced from each of the wards within the divided zones in the selected towns. The\ndata pertaining to the number of trips produced from each of the ward can be obtained by conducting\nthe socio-economic survey and forming the O-D matrix. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The traffic assignment technique where the traffic arranges itself in congested networks\nsuch that the journey time in all used routes between an Origin-Destination pair are equal\nand less than those that would be experienced in all unused routes. This is known as: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                User equilibrium\n\n            \n            \n                \n\n                \n\n                System equilibrium\n\n            \n            \n                \n\n                \n\n                Incremental\n\n            \n            \n                \n\n                \n\n                All–or–nothing\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            John Glen Wardrop (1922–1989)\, born in Warwick\, England\, was an English mathematician and transport analyst who developed what became known as Wardrop's first and second principles of equilibrium in the field of traffic assignment.  Network equilibrium models are commonly used for the prediction of traffic patterns in transportation networks that are subject to congestion. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                In the European Union which constitutes the cities namely\, London\, Paris\, Brussels\,\nAmsterdam\, Cologne\, Frankfurt\, Munich and Milan\, lie within a linear megalopolitan\nzone known as: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Blue Banana\n\n            \n            \n                \n\n                \n\n                Golden Polygon\n\n            \n            \n                \n\n                \n\n                Purple Zone\n\n            \n            \n                \n\n                \n\n                Yellow Corridor\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                The curve traced by a point on a circle rolling inside another circle is known as: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                hypocycloid\n\n            \n            \n                \n\n                \n\n                helix\n\n            \n            \n                \n\n                \n\n                involute\n\n            \n            \n                \n\n                \n\n                hyperbola\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Hypocycloid is a curve traced by a point on the circumference of a circle which is rolling\non the interior of another circle. \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 49% \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
URL:https://quiz.gatearchitecture.co.in/quiz/architecture-daily-quiz-12/
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260921
DTEND;VALUE=DATE:20260922
DTSTAMP:20260921T054555Z
CREATED:20260601T074336Z
LAST-MODIFIED:20260921T054555Z
UID:254-1789948800-1790035199@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz - Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     28\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    \n\n\n\nPrepare 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                    \n                    \n                    \n                        \n                        \n                                Freight flows are converted to truck flows using: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Distance load factor\n\n            \n            \n                \n\n                \n\n                Volume factor\n\n            \n            \n                \n\n                \n\n                Weight factor\n\n            \n            \n                \n\n                \n\n                Payload factor\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Transportation agencies analyze highway deficiencies based on the number of vehicles\ntraveling on highway facilities and comparing that demand to the capacity of those facilities. Freight\nAnalysis Framework reports forecasts annual flows in tons between origins and destinations. In truck\nbased models: Truck surveys are used for estimating choice parameter. Freight flows are converted\ninto truck flows using payload factor. Payload factors are determined from truck surveys and weigh\nbridge data. (Average amount of load in different kind of vehicles can be determined by survey or\nweigh bridge) \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                An urban governance tool to mobilize financial resources by permitting additional FAR\nover and above the prescribed FAR by imposing a charge or fee for the same is known as: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Floor Area Incentive Tax\n\n            \n            \n                \n\n                \n\n                Impact Fee\n\n            \n            \n                \n\n                \n\n                Betterment Levy\n\n            \n            \n                \n\n                \n\n                Land Value Increment Tax\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Land value increment tax or betterment tax is an old land based fiscal tool that was\nintroduced in the legislation related to city improvement trusts in the last decade of the nineteenth\ncentury. Later the concept was incorporated in the town planning schemes. Provisions also exist to\ncapture land value increments in case of specific projects. (Source: Land Based Fiscal Tools and\nPractices for Generating Additional Financial Resources\, August 2013; supported under Capacity\nBuilding for Urban Development project (CBUD)\, a partnership program between Ministry of Urban\nDevelopment\, Government of India &amp; The World Bank) \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Rebound hammer test is used to measure: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                compressive strength of concrete\n\n            \n            \n                \n\n                \n\n                tensile strength of concrete\n\n            \n            \n                \n\n                \n\n                permeability of concrete\n\n            \n            \n                \n\n                \n\n                bond stress between rebar and concrete\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Rebound hammer test is done to find out the compressive strength of concrete by using\nrebound hammer as per IS: 13311 (Part 2) - 1992. The underlying principle of the rebound hammer\ntest is: The rebound in the hammer is a function of the surface hardness and therefore the rebound is\ntaken to be related to the compressive strength of the concrete. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Coefficient of Performance (COP) for heat pump is used to calculate: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                the number of air changes\n\n            \n            \n                \n\n                \n\n                the Energy Select Sector index\n\n            \n            \n                \n\n                \n\n                the Indoor Air Quality index\n\n            \n            \n                \n\n                \n\n                the Energy Efficiency Ratio\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Both Energy Efficiency Ratio (EER) and Coefficient of Performance (COP) indicate the\nratio of heating or cooling provided by a unit relative to the amount of electrical input required to\ngenerate it. Thus\, if an air conditioner generates 5kW of heat from a 1kW electrical input\, its COP is\nsaid to be 5.0. The higher the COP and EER\, the more energy efficient is the equipment. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Identify the colour palette that is created using any three equally spaced hues around the\ncolour wheel. \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Complementary\n\n            \n            \n                \n\n                \n\n                Analogous\n\n            \n            \n                \n\n                \n\n                Split – complementary\n\n            \n            \n                \n\n                \n\n                Triads\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            A triadic colour scheme is comprised of three colours evenly spaced on the colour wheel.\nThe two most basic triadic palettes are the primary colours red\, blue\, and yellow and the secondary\nhues orange\, purple\, and green. \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 59% \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
URL:https://quiz.gatearchitecture.co.in/quiz/architecture-daily-quiz-15/
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260922
DTEND;VALUE=DATE:20260923
DTSTAMP:20260922T052244Z
CREATED:20260601T074959Z
LAST-MODIFIED:20260922T052244Z
UID:259-1790035200-1790121599@quiz.gatearchitecture.co.in
SUMMARY:Architecture Daily Quiz - Attempt Now
DESCRIPTION:/5\n                \n                \n                    \n                     28\n                    \n                    \n            \n            \n            \n            \n            \n                \n                    \n                    \n                    GATE Architecture & Govt. Jobs \n                    \n\n\n\nPrepare 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                    \n                    \n                    \n                        \n                        \n                                As per Census of India\, a place becomes Urban if it has \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                More than 5000 population\, more than 75% of which are engage in non-agricultural occupation.\n\n            \n            \n                \n\n                \n\n                Less than 5000 population\, more than 75% of which are engage in non-agricultural occupation\n\n            \n            \n                \n\n                \n\n                Less than 5000 population\, more than 75% of which are engage in agricultural occupation\n\n            \n            \n                \n\n                \n\n                More than 5000 population\, more than 75% of which are engage in agricultural occupation\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            According to the Census of India\, a place is classified as urban if it meets\nspecific demographic and occupational criteria:\n A minimum population of 5\,000\n At least 75% of the male working population engaged in non-agricultural activities\n and a population density of at least 400 persons per square kilometer.\nThese areas are also known as Census Towns. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                During earthquake\, soft storey failure in a building is due to: \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                stress discontinuity initiated by abrupt changes of stiffness\n\n            \n            \n                \n\n                \n\n                shear failure initiated by short column effect\n\n            \n            \n                \n\n                \n\n                drift of building storey initiated by pounding effect\n\n            \n            \n                \n\n                \n\n                failure of column initiated by weak column – strong beam effect\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            A soft storey building is a multi-storey building in which one or more floors have\nwindows\, wide doors\, large unobstructed commercial spaces\, or other openings in places where a\nshear wall would normally be required for stability. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Sir Ebenezer Howard gave the concept of _______ \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Walkable City\n\n            \n            \n                \n\n                \n\n                Garden City\n\n            \n            \n                \n\n                \n\n                Green City\n\n            \n            \n                \n\n                \n\n                Blue City\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Sir Ebenezer Howard is best known for popularizing the concept of the\nGarden City\, which he described in his book &quot;Tomorrow: A Peaceful Path to Real Reform&quot;\n(later published as &quot;Garden Cities of To-Morrow&quot;). This concept involved planned\, self-\ncontained communities that integrated urban and rural elements\, aiming to offer the best\nof both worlds while mitigating the negative aspects of industrial cities. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Which type of temporary supporting structure can be used in case of rebuilding the lower\npart of a load bearing wall at ground floor above plinth level? \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                Dead Shore\n\n            \n            \n                \n\n                \n\n                Pit Underpinning\n\n            \n            \n                \n\n                \n\n                Flying Shore\n\n            \n            \n                \n\n                \n\n                Needle Scaffolding\n\n                                    \n                        \n                        \n                        \n                        \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            Shoring is a temporary structure used to provide temporary support to an unsafe\nstructure. Three types of shoring are raking shoring\, flying shoring and dead shoring. Dead shoring is\nalso called vertical shoring. It can be defined as the type of shoring which is mostly used to provide\nsupport to the wall\, roofs\, floors etc. particularly when the lower part of a wall has been removed to\nprovide an additional opening in the wall or even to rebuild a defective load bearing wall in a\nstructure. The shores that are used for such purposes are known as dead shores. \n\n                        \n                        \n                            \n                           \n                        \n                        \n                    \n                \n                    \n                    \n                    \n                    \n                        \n                        \n                                Following five activities are associated with construction contract management. Choose the option\nshowing the correct progressive sequence of the activities.\nP. Opening of Bid\nQ. Submission of Security Deposit\nR. Publication of Notice Inviting Tender (NIT)\nS. Issue of Letter of Intent (LOI)\nT. Submission of Earnest Money Deposit (EMD) \n\n                            \n                            \n                        \n            \n                \n\n                \n\n                R – T – P – S – Q\n\n            \n            \n                \n\n                \n\n                R – Q – P – T – S\n\n            \n            \n                \n\n                \n\n                S – T – P – R – Q\n\n            \n            \n                \n\n                \n\n                S – P – R – T – Q\n\n                                    \n                        \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \n                            \n                        \n                        \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 41% \n                0%\n                \n                    \n                \n            \n                    \n                    Restart quiz
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