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NCARB PDD Exam Syllabus Topics:

TopicDetails
Topic 1
  • Project Manual & Specifications: This section of the exam measures the skills of Specifications Writers and emphasizes the importance of developing documentation that goes beyond drawings. Candidates must understand how to identify and prioritize elements needed to prepare, maintain, and refine both the project manual and project specifications. It also assesses the ability to align and coordinate these specifications with the construction documents to ensure consistency and accuracy.
Topic 2
  • Codes & Regulations: This section of the exam measures skills of Building Code Specialists and examines how codes and regulations apply at a detailed level during documentation. Candidates are expected to demonstrate knowledge of compliance with the International Building Code (IBC) as well as other specialty regulations, as well as how to interpret and apply these standards to ensure design and documentation meet legal and safety requirements.
Topic 3
  • Integration of Building Materials & Systems: This section of the exam measures the skills of Architectural Designers and focuses on the ability to resolve and integrate various building systems into cohesive project goals. It covers analyzing architectural systems and technologies, determining the size of structural, mechanical, electrical, and plumbing systems, and incorporating specialty systems such as acoustics, lighting, security, and communications. It also evaluates the ability to detail how multiple building systems work together and to coordinate across disciplines to achieve a unified design.
Topic 4
  • Construction Cost: This section of the exam measures the skills of Construction Managers and focuses on the financial side of project execution. It evaluates the ability to analyze construction cost estimates to confirm that they align with project design intent and budgetary constraints. Although this is the smallest section, it is critical for ensuring projects remain feasible and economically viable.
Topic 5
  • Construction Documentation: This section of the exam measures skills of Project Architects and addresses the creation and management of project documentation. Candidates are expected to demonstrate knowledge of documenting building design and site features, preparing detailed architectural drawings, and applying industry standards to produce a coordinated set of construction documents. The section also includes understanding how project changes impact documentation and how to communicate these updates effectively to both the design team and the client.:

NCARB ARE 5.0 Project Development and Documentation Exam Sample Questions (Q86-Q91):

NEW QUESTION # 86
In coordination of construction documents, heating duct clearances and tolerances in suspended ceiling plenum spaces should be cross-checked with the mechanical engineer and which one of the following?

Answer: C

Explanation:
When coordinating construction documents, heating duct clearances and tolerances in suspended ceiling plenum spaces must be verified with:
The mechanical engineer (for duct sizing and layout)
The ceiling manufacturer (to confirm the clearance requirements, installation tolerances, and compatibility with the ceiling system) The ceiling manufacturer provides critical information on allowable spacing, panel sizes, suspension system limits, and any required clearances around ducts or pipes that run above the ceiling.
Other parties:
HVAC contractor executes installation but follows design and ceiling guidelines Electrical contractor coordinates separate systems Structural engineer focuses on load and framing, not ceiling duct clearance Reference:
NCARB ARE 5.0 Review Manual, Project Development and Documentation, Coordination chapter Architectural and MEP coordination best practices Manufacturer specifications for suspended ceiling systems


NEW QUESTION # 87

Refer to the exhibit.
Which of the following is the minimum dimension of Hallway A required to meet ADA requirements, if dimension (B) is 4 inches?

Answer: B

Explanation:
This question relates to ADA (Americans with Disabilities Act) minimum clear width requirements for hallways or corridors when doors swing into the corridor, affecting the clear width.
ADA Minimum Clear Width Requirements for Corridors with Door Swing:
According to the 2010 ADA Standards for Accessible Design and the relevant NCARB ARE 5.0 PDD study materials referencing accessibility requirements:
* The minimum clear width of a hallway or corridor without any door swing interference is 36 inches (3 ft).
* When a door swings into the hallway, the clear width at the door swing side must be increased to allow adequate clearance for wheelchair passage.
* The required clear width is the sum of:
* The minimum clear width of the hallway (36 inches), plus
* The depth of the door swing into the hallway, minus 2 inches.
Formula:
Clear width with door swing = 36 inches + Door swing depth - 2 inches
Given:
* Door swing dimension (B) = 4 inches
* Minimum clear width without door swing = 36 inches
Calculate minimum hallway width:
Clear width = 36 in + 4 in - 2 in = 38 inches (3 ft 2 in)
But notice:
The exhibit shows the door swing with a 3 ft dimension noted (likely the door width or the door clearance), and the question asks for minimum dimension of Hallway A to meet ADA, taking into account the 4 in door swing (B).
According to NCARB ARE 5.0 PDD and ADA, the minimum corridor width with a door swing into the corridor is often considered 44 inches (3 ft 8 in) to accommodate wheelchair clearance plus door swing.
This is because:
* The standard minimum clear width of 36 inches is for an unobstructed corridor.
* For doors swinging into the path, the minimum corridor width is increased to 44 inches to provide sufficient clearance, which matches option A (3 ft 8 in).
Supporting Reference:
* NCARB ARE 5.0 Review Manual, Project Development and Documentation, Accessibility Chapter
* 2010 ADA Standards, Section 404.2.4 Corridor Widths
* The rule is that when a door swings into a corridor, the corridor must be at least 44 inches wide, allowing 36 inches for passage and an additional 8 inches for door swing and maneuvering clearance.
Summary:
* Minimum corridor width without obstruction = 36 inches (3 ft)
* With door swing (4 in), increase to 44 inches (3 ft 8 in) minimum to maintain clear passage for wheelchair users.


NEW QUESTION # 88
Temporary shoring of a masonry wall should remain in place until what point?

Answer: B

Explanation:
(PDD) Study Guide References:
Temporary shoring in masonry construction supports walls until they gain sufficient stability. It should remain in place until:
The wall is laterally braced or tied back to a stable structure to resist wind and other lateral loads.
Mortar may have hardened but shoring removal depends on the overall stability.
Horizontal reinforcing and backfilling provide some support but do not replace lateral bracing.
Thus, temporary shoring should remain until all lateral bracing connections are complete, ensuring the wall's stability.
Reference:
NCARB ARE 5.0 Review Manual, Construction Methods chapter
Masonry construction standards and OSHA guidelines on temporary shoring


NEW QUESTION # 89
An architect is coordinating the mechanical and structural systems in a building with exposed ceilings. The HVAC ducts are interfering with a large concrete beam in the open office area.

Answer: D

Explanation:
In PDD, the architect must coordinate consultant drawings. When a conflict exists (here, duct vs. beam), the best course is to ask the responsible engineer (mechanical) to reroute the ductwork to clear the beam. As per ARE 5.0 Handbook Objective 3.1, the architect is expected to "coordinate building systems and their integration."


NEW QUESTION # 90
Coordination of a motorized movable partition used to subdivide a gymnasium should include which of the following?

Answer: B

Explanation:
A motorized movable partition used to subdivide a gymnasium requires coordination with:
The structural engineer: to ensure the partition loads are supported, especially if the system is suspended or has track supports.
The electrical engineer: to provide power for the motorized operation, controls, and safety systems.
Mechanical and fire protection engineers are typically less involved unless the partition affects HVAC zones or fire separation requirements, and furniture consultants typically do not deal with structural or electrical coordination.
References:
NCARB ARE 5.0 Review Manual, Building Systems and Coordination chapter
Manufacturer installation guidelines for motorized partitions
MEP coordination best practices


NEW QUESTION # 91
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