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ハイパスレ`トNCARB PDD}鹿o創は麼勣可創 &佚m議なPDD: ARE 5.0 Project Development and Documen
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2026定MogiExamの恷仟PDD PDFダンプおよびPDDYエンジンのo創慌嗤https://drive.google.com/open?id=19S4BL7a0TU7Bu-uktoawqB99Q-xHY92m
MogiExamの NCARBのPDDYトレ`ニングY創を返に秘れるなら、埴が麿の繁の匯磯の適薦で、揖じNCARBのPDDJ協Yをgに栽鯉できます。あなたはMogiExamのNCARBのPDD}鹿を澓した瘁、暴たちは匯定gでo創厚仟サ`ビスを戻工することができます。もしうちのNCARBのPDD}鹿は}があれば、賜いはYに音栽鯉になる栽は、畠~卦署することを隠^いたします。
ITTの匯Tとして、書のPDDYY創を岑っていますか燭發形暴發靴覆ったら、PDDYに栽鯉するかどうか伉塘する駅勣がありません。益芙はPDDY屓貨の篁に鬉犬董PDDYY創を協豚議に厚仟しています。こうした、お人に畠中議かつ互瞳|のPDDYY創を戻工できます。PDDYに栽鯉するために、お人は書からPDDYY創を返に秘りましょう
PDD}鹿o創: ARE 5.0 Project Development and Documentation Exam嗤yい}鹿PDD庁MY書、暴たちNCARBは掲械に尸の爾しい弊順に廖んでいます。あなたがまともな碧並をつけて互いo創を借ぎたいなら、あなたはれた嬬薦とN源な岑Rを侭嗤していなければなりません。この彜rでは、PDDガイドトレントを侭嗤することは掲械に嶷勣です。蒙協の蛍勸でれた嬬薦を誼し、碧並をうまくI尖できるからです。暴たちが戻工するPDDYは、PDDYに栽鯉し、gにPDDYトレントを侭嗤するという瑤gFするのに叨羨ちます。
NCARB PDD J協Yの竃}譯| トピック | 竃} | | トピック 1 | - 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.:
| | トピック 2 | - 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.
| | トピック 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.
| | トピック 4 | - 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.
| | トピック 5 | - 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.
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NCARB ARE 5.0 Project Development and Documentation Exam J協 PDD Y} (Q99-Q104):| # 99
Owners of a busy two-story theater complex want to renovate. The new renovations include increasing the second floor lobby and doubling the number of second floor movie screens. The owner favors the use of escalators. Movies are scheduled to start simultaneously every three hours. The theater currently has a pair of
24-inch-wide parallel escalators, one of which goes up and the other down.
Which of the following should be proposed to accommodate the increased traffic to the second floor?
- A. Extend balustrades at escalator landings
- B. Increase the existing escalator speeds to 130 fpm
- C. Install a new escalator that reverses direction
- D. Install a new elevator in the lobby
屎盾C
盾h
Given:
The theater doubles its second-floor movie screens, increasing patron traffic.
Existing escalators are two 24-inch wide units, one up and one down, with simultaneous movie start times every 3 hours.
To handle increased traffic:
Increasing existing escalator speed to 130 fpm (option A) is limited by safety and code limits (typically max around 100 fpm); also increases wear.
Installing a new elevator (option B) is helpful for accessibility but does not efficiently handle high flow of large crowds during peak.
Installing a new escalator that reverses direction (option C) (also called a "dance" or "two-way" escalator) allows flexibility to accommodate peak traffic flow-e.g., two escalators up during rush times and one down, or vice versa.
Extending balustrades (option D) improves safety but does not increase capacity.
Therefore, option C is the best solution to manage increased passenger flow.
References:
NCARB ARE 5.0 Review Manual, Environmental Systems and Building Services chapter Vertical transportation design principles in public assembly spaces ASME A17.1 Safety Code for Elevators and Escalators
| # 100
An architect is rehabilitating a historic federal landmark that requires repairs to a garden wall. The existing brick appears to be in good condition; the mortar shows significant signs of deterioration.
Which strategy should the architect propose to repair the damaged wall?
- A. Remove loose mortar by hand raking the joints prior to repointing.
- B. Completely remove deteriorated mortar with electric saws prior to repointing.
- C. Carefully remove all mortar and repoint all joints to achieve a uniform appearance.
屎盾A
盾h
(PDD) Study Guide References
For historic masonry rehabilitation, the accepted approach (e.g., NPS Preservation Brief 2: Repointing Mortar Joints in Historic Masonry) is to hand#rake deteriorated mortar to a proper depth (typically 2-2½〜 the joint width or until sound mortar is reached), avoid power#saw removal that can damage historic brick, and match the original mortar in composition, hardness, color, and tooling.
A is incorrect because removing all mortar for a "uniform appearance" is unnecessary and risks damaging sound joints.
B is incorrect because electric saws can chip and over#cut historic brick arrises, violating preservation best practices.
C is correct: careful hand removal of loose/deteriorated mortar followed by repointing with compatible mortar is the recommended method.
PDD References: Historic fabric protection under "Codes/Regulations & Standards-Historic preservation," detailing of masonry repairs in construction documents (Division 04), and QA/QC specifications for repointing.
| # 101

Refer to the exhibit.
The metal connector shown is primarily designed to resist which one of the following?
- A. Twisting
- B. Racking
- C. Sliding
- D. Uplift
屎盾D
盾h
The detail shows a metal connector fastening a vertical framing member (stud or post) to a horizontal member (likely a top plate or beam). This type of metal connector-often a hurricane tie or hold-down-is designed to anchor the vertical framing to the horizontal framing to prevent separation caused by uplift forces.
Key points:
* Uplift occurs when wind loads or seismic activity try to pull the roof or upper framing away from the wall below.
* The connector wraps over and around members, securing them together.
* Commonly used in roof-to-wall connections to comply with wind resistance requirements in the IBC and ASCE 7.
* This does not primarily resist sliding (shear) or racking (lateral deformation of a frame), nor is it designed mainly for twisting (torsion).
PDD ARE Objective Tie-in:
ARE 5.0 PDD Objective 3.2 - Evaluate and integrate structural systems with architectural elements, ensuring proper load path continuity for resisting vertical and lateral loads, including uplift forces.
| # 102

Refer to the exhibit.
What is the purpose of the flexible connection in the fan coil shown?
- A. To provide a field point of connection of the ductwork to the fan coil unit
- B. To minimize sound transfer
- C. To insulate against heat transfer from the fan coil unit
- D. To transition from the fan coil unit flange to the desired duct size
屎盾B
盾h
Understanding the Diagram
The detail shows a fan coil unit suspended from the structure, with:
* Vibration isolators at the hanging rods to limit mechanical vibration transfer to the structure.
* Flexible duct connections between the fan coil unit and the rigid ductwork.
Purpose of Flexible Duct Connections
Flexible connections in HVAC duct systems are designed to:
* Prevent transmission of vibration and sound from the mechanical equipment (fan coil unit) into the rigid ductwork and building.
* Compensate for small misalignments between the ductwork and equipment.
* Accommodate minor thermal expansion/contraction movements.
Key Function in This Context:
Fan coil units contain fans that create vibration and noise. Without a flexible connection, this vibration would travel directly through the rigid ductwork into occupied spaces, increasing noise levels.
Why Other Options Are Incorrect:
* A. To provide a field point of connection - While the flexible connector does connect ducts, its purpose is not just convenience; it is specifically for vibration/sound isolation.
* B. To insulate against heat transfer - This is done with thermal duct insulation, not flexible connectors.
* D. To transition from flange to desired duct size - Transitions are made using sheet metal fittings, not flexible connectors.
NCARB ARE 5.0 PDD Study Guide References:
* Content Area: Integration of Building Materials & Systems - Mechanical Systems and Acoustics
* Sources:
* Mechanical and Electrical Equipment for Buildings (MEEB) - Vibration Control in Mechanical Systems
* Architectural Graphic Standards - Flexible Duct Connections for Noise and Vibration Isolation
* ASHRAE Handbook - HVAC Applications, Chapter on Sound and Vibration Control Key Point:
Flexible connectors in ductwork break the direct mechanical path for vibration and sound, reducing noise transfer from fans to occupied areas.
| # 103
In winter conditions, when the outdoor air is below freezing and the indoor humidity is maintained at 40 percent relative humidity for 24 hours a day, ice forms on the exterior surface of the stone facing.
Which of the following elements is missing from the building wall section?
- A. Wall insulation
- B. Rain screen
- C. Vapor barrier
- D. Air space
屎盾C
盾h
With outdoor below freezing and indoor RH ~40% continuously, interior vapor will migrate outward. If a proper interior-side vapor barrier/retarder is missing, moisture moves through the wall and can condense and freeze at the cold exterior stone, forming visible ice. Insulation, air spaces, or rain screens help heat/moisture management, but the symptom (ice due to vapor diffusion) points specifically to the lack of an interior vapor barrier in a cold-climate assembly.
PDD references: Moisture control & vapor retarder strategy in cold climates; condensation diagnostics (ASHRAE Fundamentals; ARE 5.0 PDD-Envelope moisture control).
| # 104
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