Carl Stark Carl Stark
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์ํํจ์ค์์ ํจํProject-Planning-Design์ต๊ณ ํ์ง์ธ์ฆ์ํ์๋ฃ๋คํ๋ฌธ์ ๋ชจ์์ง
Pass4Test๋NCARB Project-Planning-Design์ธ์ฆ์ํ์ ์ด๋งค์ ๊ฐ์ ์ฌ์ดํธ์ ๋๋ค.NCARB Project-Planning-Design์ธ์ฆ์ํ ๊ด์ฐ ๋คํ๊ฐ ์ฐ๋ฆฌPass4Test์์ ์ถ์๋์์ต๋๋ค. ์ฌ๋ฌ๋ถ์ดNCARB Project-Planning-Design์ธ์ฆ์ํ์ผ๋ก ๋ ์์ ๊ณผ ์๊ธฐ๋ง์ ๋ฐ์ด๋ ์ง์ ๋ฉด์ ์ฆ๋ช ํ๊ณ ์ถ์ผ์๋ค๋ฉด ์ฐ๋ฆฌ Pass4Test์NCARB Project-Planning-Design๋คํ์๋ฃ๊ฐ ๋ง์ ๋์์ด ๋ ๊ฒ์ ๋๋ค.
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Project-Planning-Design์ํ๋คํ์๋ฃ & Project-Planning-Design์ธ๊ธฐ์๊ฒฉ์ฆ ์ํ ๋คํ์๋ฃ
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์ต์ Architect Registration Examination Project-Planning-Design ๋ฌด๋ฃ์ํ๋ฌธ์ (Q15-Q20):
์ง๋ฌธ # 15
A new four-story apartment building is being designed on a site that has solid bedrock subsurface conditions.
The client requested the lowest cost of installation, highest energy efficiency, the shortest round trip time, and minimized loss of usable building space.
Which elevator type should the architect recommend?
- A. Gearless traction elevator
- B. Dual jack hole-less hydraulic elevator
- C. Machine-roomless elevator
- D. Conventional hydraulic elevator
์ ๋ต๏ผC
์ค๋ช
๏ผ
Comprehensive and Detailed Explanation From Exact Extract:
Given the constraints:
Lowest cost of installation and minimized loss of usable space favor elevators that don't require a separate machine room.
Machine-roomless elevators (D) have compact machinery integrated within the hoistway, reducing space needs and construction costs.
Hydraulic elevators (A, C) require pits and often larger machine rooms, and are less energy efficient and have slower round trip times compared to traction types.
Gearless traction elevators (B) provide excellent speed and efficiency but usually require machine rooms, increasing cost and space.
Thus, machine-roomless elevators balance cost, efficiency, space, and speed best for mid-rise residential buildings.
References:
ARE 5.0 PPD - Building Systems and Assemblies, Vertical Transportation
The Architect's Handbook of Professional Practice, 15th Edition - Elevators and Conveying Systems
ย
์ง๋ฌธ # 16
When designing a three-story wood-frame home located in a high wind region, the addition of a green roof with a two-foot soil bed would do which one of the following?
- A. Increase the structure's resistance to racking
- B. Require additional tie-downs
- C. Increase the structure's resistance to overturning
์ ๋ต๏ผB
์ค๋ช
๏ผ
Comprehensive and Detailed Explanation From Exact Extract:
Adding a green roof with a two-foot soil bed significantly increases the dead load on the roof and affects the uplift forces caused by high winds. This heavier roof mass necessitates additional structural tie-downs or anchorage to resist wind uplift and prevent overturning or structural failure.
The added weight does not inherently increase resistance to overturning (A) or racking (C); rather, it increases loads that require structural reinforcement.
References:
ARE 5.0 PPD - Building Systems and Assemblies, Structural Loads and Wind Design The Architect's Handbook of Professional Practice, 15th Edition - Wind-Resistant Design
ย
์ง๋ฌธ # 17
A new, sprinklered, mid-rise office building of Type II-A construction has a ground-level restaurant and offices above. The restaurant has an A-2 occupancy and the offices have a B occupancy. The architect needs to provide fire separation between the two occupancy types and select the most cost-efficient floor/ceiling assembly option.
Which one of the following assemblies is most appropriate?
- A. 2-hour-rated assembly with lightweight precast concrete
- B. 1-hour-rated assembly with 2 x 10 wood joists
- C. 1-hour-rated assembly with open web steel joists @ 24" o.c.
์ ๋ต๏ผC
์ค๋ช
๏ผ
Comprehensive and Detailed Explanation From Exact Extract:
According to IBC Table 508.4, with sprinklers installed throughout (S), a 1-hour fire separation is required between A-2 and B occupancies in Type II-A construction.
Open web steel joists (C) can be used in 1-hour-rated assemblies, providing cost efficiency and structural flexibility.
Wood joists (A) might not meet Type II-A non-combustible requirements.
2-hour-rated precast concrete (B) is more costly than needed per code.
Thus, option C balances code compliance and cost.
References:
IBC Table 508.4
ARE 5.0 PPD - Codes and Regulations, Fire Separation
The Architect's Handbook of Professional Practice, 15th Edition - Fire-Resistive Construction
ย
์ง๋ฌธ # 18
An architect is designing a mixed-use building and must provide fire separation between the various use types.
Which properties must be considered to meet the fire separation requirements? Check the three that apply.
- A. Orientation of building
- B. Air changes per hour
- C. Length of exit corridor
- D. Wall assembly materials
- E. Wall to structure connection
- F. Occupancy type
์ ๋ต๏ผD,E,F
์ค๋ช
๏ผ
Comprehensive and Detailed Explanation From Exact Extract:
To meet fire separation requirements, the following must be considered:
Occupancy type (B): Different uses have different fire hazard classifications influencing separation.
Wall assembly materials (D): Materials define fire resistance ratings.
Wall to structure connection (A): Proper connection maintains fire separation integrity.
Air changes (C) relate to ventilation, not separation.
Exit corridor length (E) and building orientation (F) affect egress and solar exposure, not fire separation.
References:
ARE 5.0 PPD - Codes and Regulations, Fire Separation
The Architect's Handbook of Professional Practice, 15th Edition - Fire-Resistive Construction
ย
์ง๋ฌธ # 19
Refer to the exhibit (multi-use building with apartments, offices, stores, parking).
The multipurpose building shown is located in a cold-winter, mild-summer climate.
Which of the following is the best location for the mechanical equipment floor?
- A. Top floor
- B. Store level
- C. Parking level
- D. Between the office and apartment levels
์ ๋ต๏ผD
์ค๋ช
๏ผ
Comprehensive and Detailed Explanation From Exact Extract:
In mixed-use buildings in cold climates, placing mechanical equipment in a mid-level floor between different occupancy types (C) offers several benefits:
This location reduces the length and complexity of vertical distribution of heating and cooling systems to both apartments (above) and offices (below).
It avoids heat loss associated with exterior walls (as opposed to the top floor or parking level).
The equipment can be more centrally located, improving energy efficiency and system performance.
Locating equipment on the parking level (A) or store level (B) may require longer ductwork or piping runs and pose maintenance challenges.
The top floor (D) exposes mechanical equipment to outdoor weather, which is not ideal in cold climates.
References:
ARE 5.0 PPD - Building Systems and Assemblies, Mechanical Systems in Mixed-Use Buildings The Architect's Handbook of Professional Practice, 15th Edition - HVAC Systems Design
ย
์ง๋ฌธ # 20
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Project-Planning-Design์ต๊ณ ํ์ง ์ธ์ฆ์ํ์๋ฃ ์ต์ ๋คํ๋ฌธ์
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- thewealthprotocol.io, ncon.edu.sa, quiklearn.site, mn-biotaiba.com, pct.edu.pk, motionentrance.edu.np, arcoasiscareacademy.com, elearning.cmg-training.co.uk, de-lionlinetrafficschool.com, shortcourses.russellcollege.edu.au
