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NCARB ARE 5.0 Project Planning & Design (PPD) Sample Questions (Q52-Q57):
NEW QUESTION # 52
Which light fixture and finish configuration will increase the apparent length of an office corridor?
- A. Install lighting parallel to the sight line and paint the ceiling a dark color.
- B. Install direct lighting pendants and paint the ceiling a dark color.
- C. Install direct lighting pendants and a light color, highly reflective floor finish.
- D. Provide indirect cove lighting and paint the ceiling a light color.
Answer: D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
The apparent length of a corridor can be influenced by lighting and finish strategies that affect perception of depth and spatial volume.
* Option D: Providing indirect cove lighting and painting the ceiling a light color helps increase the apparent length of the corridor. Indirect lighting washes light softly onto the ceiling and walls, creating a continuous visual flow along the corridor. When combined with a light-colored ceiling, this reduces shadows and visual breaks, making the corridor feel longer and more expansive.
* Option A and C: Dark-colored ceilings absorb light and visually compress spaces, making corridors feel shorter and more confined. Direct lighting pendants create localized illumination that can produce shadows and disrupt visual continuity, which diminishes perceived length.
* Option B: While a light, highly reflective floor finish can brighten the corridor, direct lighting pendants and lack of emphasis on ceiling treatment limit the extension of perceived length. Reflective floors can increase brightness but don't significantly elongate space without complementary ceiling and wall treatments.
NCARB's ARE Project Planning & Design guidelines highlight that light color, fixture type, and ceiling finish greatly affect spatial perception. Light, evenly distributed illumination combined with light ceiling colors enhances the feeling of spaciousness and length in enclosed spaces like corridors.
References:
ARE 5.0 Project Planning & Design Content Outline: Environmental Conditions and Context - Lighting and Material Finishes The Architect's Handbook of Professional Practice, 15th Edition, Chapter 9: Interior Environments and Lighting NCARB PPD Study Materials: Perception of Space and Lighting Strategies
NEW QUESTION # 53
A proposed six-story commercial building will have a basement level with finished floor 20'-0" below grade.
The building site is located less than 1 mile from the coastline. A site survey indicates that the average site elevation is 5'-0" above sea level.
Based on the site-specific conditions, which four issues should the architect address in the design? Check the four that apply.
- A. Water table height
- B. Spread footings
- C. Dewatering during construction
- D. Potential corrosion of exterior finishes due to salt in water vapor
- E. Hydrostatic pressure on basement walls
- F. Radiant flooring in the basement slab
Answer: A,C,D,E
Explanation:
Comprehensive and Detailed Explanation:
Dewatering during construction (A): The deep excavation (20' below grade) near sea level likely intersects the water table, necessitating dewatering to keep the site dry during construction.
Water table height (B): Proximity to the coast raises the water table, which affects foundation and waterproofing design.
Potential corrosion due to salt (D): Salt in water vapor and marine air can corrode metal exterior finishes and reinforcements; materials and coatings must be selected accordingly.
Hydrostatic pressure on basement walls (E): High water tables create significant lateral water pressure requiring robust waterproofing and structural resistance.
Spread footings (C) may or may not be suitable depending on soil but are not specific to coastal or basement conditions.
Radiant flooring (F) is unrelated to site conditions and more a mechanical choice.
References:
ARE 5.0 PPD - Environmental Conditions and Context, Site and Foundation Design The Architect's Handbook of Professional Practice, 15th Edition - Coastal and Marine Environment Design
NEW QUESTION # 54
To reduce embodied energy in a 500-unit redevelopment, the architect should create a strategy to include which of the following? Check the three that apply.
- A. Decrease the percentage of high-rise units
- B. Re-use existing buildings and structures wherever possible
- C. Use simple geometric structures
- D. Construct buildings and infrastructure from local and low-energy materials where possible
- E. Orient the building to create transitional spaces within the development
- F. Increase the percentage of single-story units
Answer: B,C,D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Reducing embodied energy involves strategies that minimize new material production and transportation impacts:
Re-using existing buildings (A) avoids new material consumption and demolition waste.
Using local and low-energy materials (C) reduces transportation energy and energy-intensive materials.
Simple geometric structures (F) use fewer materials and minimize complexity, lowering embodied energy.
Orientation and transitional spaces (B) mainly affect operational energy, not embodied energy.
Altering the proportion of high-rise or single-story units (D, E) affects land use and operational efficiency more than embodied energy.
NCARB emphasizes these strategies in sustainable design practices.
References:
ARE 5.0 PPD - Environmental Conditions and Context, Sustainable Design
The Architect's Handbook of Professional Practice, 15th Edition - Sustainable Building Materials
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NEW QUESTION # 55
During design development of a new motel, the owner receives a cost estimate which was higher than what they had budgeted for. The project descriptions are as follows:
* Number of units: Twenty
* Construction type: V-B
* Number of stories: Two
* Structural system: Light wood frame
* Mechanical system: Central air system
The client wants the architect to reduce the initial construction cost without sacrificing the potential return on investment.
- A. Change the structural system to a precast concrete system.
- B. Change the scope to an eighteen-unit development.
- C. Change the number of stories to three.
- D. Change the central air system to individual through-the-wall units at each room.
Answer: D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Switching from a centralized HVAC system to individual through-the-wall units (PTACs) significantly reduces initial construction and mechanical costs by eliminating the need for extensive ductwork and mechanical rooms.
Increasing stories (A) increases structural and construction costs.
Reducing units (C) reduces revenue potential.
Precast concrete system (D) is typically more expensive than light wood framing.
Thus, individual room units save cost without reducing revenue potential.
References:
ARE 5.0 PPD - Project Costs and Budgeting
The Architect's Handbook of Professional Practice, 15th Edition - Mechanical Systems and Cost Control
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NEW QUESTION # 56
An architect is designing a multistory student housing project to be built of light wood framing. The following criteria must be met:
Minimize the floor assembly thickness
Maximize ceiling height
No individual HVAC room controls
No exposed ductwork
Which HVAC system should be selected for this project?
- A. Four-pipe fan-coil system
- B. Packaged terminal units (PTAC)
- C. Variable air volume (VAV)
Answer: A
Explanation:
For multistory residential buildings such as student housing with light wood framing, HVAC system selection must balance space constraints and occupant comfort. The requirement to minimize floor thickness and maximize ceiling height typically rules out bulky ductwork or ceiling-mounted systems.
Packaged Terminal Air Conditioners (PTACs) provide individual room control and require wall penetrations, conflicting with the "no individual HVAC room controls" and likely leading to more complex maintenance.
Variable Air Volume (VAV) systems typically require extensive ductwork and ceiling space, contradicting the goal to minimize floor thickness and eliminate exposed ductwork.
The Four-pipe fan-coil system is an efficient choice for this application: it uses small fan coil units within the ceiling or wall cavities with chilled and hot water supply pipes running vertically. This system minimizes the thickness of mechanical floors and allows centralized control rather than individual room controls. The fan coil units can be concealed, addressing the "no exposed ductwork" criterion.
This approach aligns with NCARB's guidance on HVAC system selection for multifamily and residential occupancies where ceiling height and floor thickness are critical constraints, and centralized control systems are preferred for ease of maintenance and energy management.
References:
ARE 5.0 PPD Study Guide - Building Systems and Assemblies
The Architect's Handbook of Professional Practice, 15th Edition - Mechanical Systems NCARB Guidelines on HVAC Systems for Residential Buildings
NEW QUESTION # 57
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