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NCARB Project-Planning-Design Exam Syllabus Topics:
Topic
Details
Topic 1
- Project Costs & Budgeting: This section of the exam measures skills of architectural designers and assesses the ability to evaluate design alternatives based on program goals, perform cost evaluations, and manage cost considerations throughout the design process.
Topic 2
- Codes & Regulations: This section of the exam measures the skills of project architects and focuses on applying zoning laws, environmental rules, and building codes during the planning stage. Candidates are tested on how to integrate multiple regulatory requirements into a project’s design effectively.
Topic 3
- Environmental Conditions & Context: This section of the exam measures skills of architectural designers and covers how to use site analysis information to determine building placement and environmental planning decisions. It emphasizes applying sustainable principles and considering the neighborhood context to guide project design.
Topic 4
- Project Integration of Program & Systems: This section of the exam measures skills of project architects and focuses on integrating decisions about environmental conditions, codes, and building systems into one cohesive project design. It highlights how to configure the building and incorporate both program requirements and contextual conditions in a unified design approach.
Topic 5
- Building Systems, Materials, & Assemblies: This section of the exam measures skills of architectural designers and covers the understanding of building systems such as mechanical, electrical, and plumbing, along with structural and specialty systems. It also involves selecting appropriate materials and assemblies to align with program needs, budgets, and regulations.
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NCARB ARE 5.0 Project Planning & Design (PPD) Sample Questions (Q63-Q68):
NEW QUESTION # 63
A recital hall requires a clear span of 75 feet. Special consideration must also be given to the prevention of airplane noise that would interfere with performances.
Which of the following wall-bearing structural solutions will provide the most reasonable and economical roof-framing system to meet these needs?
- A. Cast-in-place reinforced concrete slab
- B. Long-span steel joists spaced at 7'-6" o.c. supporting preformed metal decking
- C. Precast, prestressed 8' wide concrete tee sections
- D. Laminated wood beams spaced at 6'-0" o.c. supporting tongue-and-groove wood decking
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
For a recital hall needing noise reduction and a 75-foot clear span:
Cast-in-place reinforced concrete slabs (B) provide mass and stiffness, reducing noise transmission (including airplane noise) and offering sound isolation.
Steel joists and wood beams (A, D) are lighter, less dense, and less effective acoustically.
Precast concrete tees (C) may provide structural support but less acoustic mass.
Therefore, cast-in-place concrete best balances span, acoustics, and cost.
References:
ARE 5.0 PPD - Building Systems and Assemblies, Acoustic and Structural Design
NEW QUESTION # 64
The architect's greatest contribution to good seismic design is in the design of which of the following?
- A. Building's plan and cross-sectional configuration
- B. Site location and building orientation
- C. Building's interior partition arrangement
- D. Structural components and connections
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Architects have the most influence on seismic performance through building form and configuration, including the plan and cross-sectional layout. A regular, symmetrical, and well-configured building reduces torsional forces and stress concentrations during seismic events.
Structural components and connections (A) are primarily the engineer's responsibility.
Interior partitions (B) affect non-structural behavior but are less critical to seismic response.
Site location and orientation (D) influence seismic forces but are often fixed or limited by client and site constraints.
Thus, architects significantly improve seismic safety through thoughtful spatial and structural configuration design.
References:
ARE 5.0 PPD - Environmental Conditions and Context, Seismic Design
The Architect's Handbook of Professional Practice, 15th Edition - Earthquake Resistant Design
NEW QUESTION # 65
The use of a central computer system to monitor a building's heating and cooling demands will do which one of the following?
- A. Increase the cost of energy consumption
- B. Interactively select the least energy-intensive system or combination of systems
- C. Be primarily for solar-heating and natural-cooling systems
- D. Eliminate the use of a facility manager
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Central building automation systems (BAS) monitor and control HVAC and other systems to optimize energy efficiency by selecting the best combination of available systems and adjusting operation based on demand and conditions. This reduces energy consumption and operational costs.
BAS does not eliminate the need for facility managers (A), who oversee broader operations.
It aims to reduce, not increase, energy costs (C).
BAS is applicable to all mechanical systems, not limited to solar or natural cooling (D).
References:
ARE 5.0 PPD - Building Systems and Assemblies, Building Automation
The Architect's Handbook of Professional Practice, 15th Edition - Mechanical Systems
NEW QUESTION # 66
According to model codes, wind pressure can be positive on the roof of a low-rise building when wind is which one of the following?
- A. Perpendicular to ridge and roof slope is 30 to 45 degrees
- B. Parallel to the ridge and roof slope is 30 to 45 degrees
- C. Parallel to long side and the roof is flat
- D. Perpendicular to ridge and roof slope is 15 degrees
Answer: A
Explanation:
Wind pressure on a building's roof can be either positive (pressure pushing down on the surface) or negative (suction or uplift). The distribution of pressure depends largely on wind direction relative to the building geometry and roof slope.
* Option C: When wind strikes the roof perpendicular to the ridge with slopes between 30 and 45 degrees, the wind creates a positive pressure on the windward side of the roof. This is because the air impinges directly onto the sloped surface, pushing downward and exerting positive pressure. The leeward side of the roof, by contrast, experiences negative pressure (suction). This condition is well documented in ASCE 7 and reflected in the IBC (International Building Code) wind load provisions.
* Option A: Wind parallel to the long side with a flat roof typically causes mostly negative pressures (suction) on the roof, not positive pressures, because the airflow accelerates over the roof surface.
* Options B and D: At lower roof slopes (like 15 degrees) or when the wind is parallel to the ridge with moderate slopes, the roof usually experiences suction (negative pressure) rather than positive pressure.
The flatter or more parallel the surface is relative to wind flow, the more suction effects dominate.
Positive wind pressure on roofs is important for structural design because it influences the design of roofing systems, connections, and overall structural loads. Understanding when and where positive pressure occurs ensures proper anchorage and prevents failures due to uplift or overturning forces.
References:
ARE 5.0 Project Planning & Design Content Outline: Environmental Conditions and Context - Wind Loads and Effects ASCE 7-16: Minimum Design Loads for Buildings and Other Structures (Chapter on Wind Loads) The Architect's Handbook of Professional Practice, 15th Edition, Chapter 13: Building Codes, Standards, and Regulations - Wind Design
NEW QUESTION # 67
Refer to the exhibit (residential floor plan with three outlined elevator core locations A, B, C).
During design development, an owner has chosen an elevator that does not fit in the location previously selected for the two-car elevator core. The elevator core should be near the main entrance lobby and centrally located. The minimum program requirements for each residential floor are the following:
One bicycle room
Five studios
Five 1-bed units
Eight 2-bed units
Three 3-bed units
Which outlined location meets the requirements?
- A. B
- B. C
- C. A
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Location C is centrally located near the main entrance lobby and accommodates program requirements. It aligns with circulation patterns and building massing necessary to support efficient vertical transportation and access to all unit types, including bicycle storage.
Locations A and B are less centralized or do not provide convenient access, making C optimal.
References:
ARE 5.0 PPD - Project Integration of Program and Systems
The Architect's Handbook of Professional Practice, 15th Edition - Vertical Transportation
________________________________________
NEW QUESTION # 68
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