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Previous year question hub

Climate, Thermal Comfort and Passive Design - Climatology and Environmentally Responsive Design - Architecture and Planning Previous Year Questions

Practice Climate, Thermal Comfort and Passive Design - Climatology and Environmentally Responsive Design - Architecture and Planning previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

7Papers
7Years
14Questions
1Topics

Climate, Thermal Comfort and Passive Design question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Climate, Thermal Comfort and Passive Design. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 11 78.6%
Medium 3 21.4%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 13 92.9%
Numerical Answer Type (NAT) 1 7.1%

Subject weightage

Top subjects by unique question coverage.

Architecture and Planning
14 Qs

Most asked topics

Top topics across the included previous year papers.

Climatology and Environmentally Responsive Design
14 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Climate, Thermal Comfort and Passive Design
14 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Architecture and Planning (AR) 2020
1 Qs
Architecture and Planning (AR) 2013
2 Qs
Architecture and Planning (AR) 2011
3 Qs
Architecture and Planning (AR) 2010
3 Qs
Architecture and Planning (AR) 2009
2 Qs
Architecture and Planning (AR) 2008
1 Qs
Architecture and Planning (AR) 2007
2 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Architecture and Planning (AR) 202020201View paper
Architecture and Planning (AR) 201320132View paper
Architecture and Planning (AR) 201120113View paper
Architecture and Planning (AR) 201020103View paper
Architecture and Planning (AR) 200920092View paper
Architecture and Planning (AR) 200820081View paper
Architecture and Planning (AR) 200720072View paper

All Climate, Thermal Comfort and Passive Design previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2007

A person standing at a point in a public plaza is observing a façade of height 40 metres from a distance of 120 metres. The sense of enclosure experienced by the person is equivalent to the limits of

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2
2007 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2007
Match the characteristics in Group I with the climate types in Group II. Group I: P. High humidity accelerates rusting and rotting, Q. High daytime temperature and rapid cooling at night cause materials to crack, R. Seasonal changes in relative humidity cause rapid weakening of building materials. Group II: 1. Composite or monsoon, 2. Hot dry desert, 3. Hot dry maritime, 4. Tropical Upland, 5. Warm humid
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3
2008 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2008
Heating, cooling and ventilation in passive system designs are dependent on
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4
2009 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2009
If the height of the facade h = h, and the distance of the observer from the building = d, then match the enclosure types in Group I with their corresponding h/d ratio in Group II:
Group IGroup II
P. Full enclosure1. 1
Q. Threshold of enclosure2. 1/2
R. Minimum enclosure3. 1/3
S. Loss of enclosure4. 1/4
5. 1/5
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5
2009 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2009
The heat gain through the external walls and windows (in watts) will be
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6
2010 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2010

A major hole in the Ozone layer has been identified above the

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7
2010 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2010
Global climate change is expected to bring about a combination of the following changes. Identify the correct combination.
P. Increase in Biodiversity
Q. Emergence of New Diseases
R. Loss of Biodiversity
S. Loss of all Rocky Outcrops
T. Sea Level Rise
U. Extinction of Polar Bears
V. Emergence of New Islands
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8
2010 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2010

Bioclimatic chart developed by Victor Olgyay shows the relationship between

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9
2011 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2011

Which of the following generates heat island?

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10
2011 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2011

The difference between Wet Bulb Temperature and Dry Bulb Temperature is called

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11
2011 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2011
Match the instruments in Group I with their corresponding functions in Group II
Group I
P. Hygrometer
Q. Disdrometer
R. Anemometer
S. Manometer
Group II
1. Precipitation
2. Vapor Pressure
3. Solar Radiation
4. Relative Humidity
5. Velocity of Air
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12
2013 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2013

The tendency of an ecosystem to maintain its balance by regulatory mechanisms when disrupted, is known as

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13
2013 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2013
Match the organism type from Group I with the appropriate example from Group II
Group I
P. Autotroph
Q. Heterotroph
R. Chemotroph
S. Saprophyte
Group II
1. Nitrifying Bacteria
2. Grasshopper
3. Grass
4. Vulture
5. Fungus
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14
2020 · Architecture and Planning · Climatology and Environmentally Responsive Design · Climate, Thermal Comfort and Passive Design
Architecture and Planning (AR) 2020
The solar altitude angle on April 16 at 7:00 AM in Kochi is 16°. The same solar altitude angle will occur at the same time in the same year at the same location on
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