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CFPEํผํํธ๋คํ์ต์ ๋ฌธ์ 100%ํฉ๊ฒฉ๋ณด์ฅ๊ฐ๋ฅํ์ต์ ์ํ์๋ฃ
NFPA์ธ์ฆ CFPE์ํ์ IT์ ์ข ์ข ์ฌ๋ถ๋ค์๊ฒ ๋๋ฆฌ ์๋ ค์ง ์ ๋ช ํ ์๊ฒฉ์ฆ์ ์ทจ๋ํ ์ ์๋ ์ํ๊ณผ๋ชฉ์ ๋๋ค. NFPA์ธ์ฆ CFPE์ํ์ ์์ด๋ก ์ถ์ ๋๋๋งํผ ์ํ๋์ด๋๊ฐ ๋ง์ด ๋์ต๋๋ค.ํ์ง๋ง Itcertkr์NFPA์ธ์ฆ CFPE๋คํ๋ง ์๋ค๋ฉด ์๋ฌด๋ฆฌ ์ด๋ ค์ด ์ํ๋ ์ฌ์์ง๋๋ค. ์ค๋ฅด์ง ๋ชปํ ์ฐ๋ ์ ๋ณตํ ์ ์๋๊ฒItcertkr์ ํ์ ์ฐ์ ์ ๋๋ค. Itcertkr์NFPA์ธ์ฆ CFPE๋คํ๋ก ์ํ์ ํจ์คํ์ฌ ์๊ฒฉ์ฆ์ ์ทจ๋ํ๋ฉด ์ ์์ ์ค๋ฅผ์ ์์ต๋๋ค.
NFPA CFPE ์ํ์๊ฐ:
์ฃผ์
์๊ฐ
์ฃผ์ 1
- Administrative: This topic tests fire protection engineers and planners on their ability to prepare clear and concise reports based on observations from plan reviews. Engineers must ensure that findings align with applicable codes, standards, and jurisdiction policies while resolving deficiencies and processing documents following established procedures.
์ฃผ์ 2
- Building Plan Review: Fire protection engineers will need to verify occupancy classifications, construction types, and occupant loads in building plans. The exam tests engineersโ ability to ensure these elements comply with applicable codes and standards, as well as their ability to document and report deficiencies according to jurisdictional procedures.
์ฃผ์ 3
- General Knowledge: This topic assesses fire protection engineers' knowledge of relevant codes and standards and their ability to determine the correct document, edition, and topic for a fire protection issue. It also evaluates the engineers' participation in legal proceedings, ensuring accurate testimony and appropriate conduct during proceedings.
์ฃผ์ 4
- Site Plan Review: In this topic, fire protection engineers must demonstrate their ability to evaluate plans for fire flow, hydrant locations, and spacing to ensure compliance with codes and standards. Engineers will also be tested on evaluating emergency vehicle access, identifying deficiencies, and documenting them per jurisdictional policies.
์ฃผ์ 5
- Fire Protection and Life Safety Systems Review: This topic assesses fire protection engineers' ability to identify and evaluate the requirements for fire protection and life safety systems in plans. Engineers must demonstrate how to review the installation of fire protection systems, including pre-engineered systems, and ensure compliance with standards while documenting deficiencies as required by jurisdictional policies.
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๋ง์ฝItcertkr๋ฅผ ์ ํํ์๋ค๋ฉด ์ฌ๋ฌ๋ถ์ ๋ฐ์ ์ฑ๊ณตํ ๊ฒ์ ๋๋ค. ์ฌ๋ฌ๋ถ์ ์์ฃผ ๋น ๋ฅด๊ฒ ์์ ํ๊ฒ ๋ ์ฝ๊ฒNFPA CFPE์ธ์ฆ์ํ ์๊ฒฉ์ฆ์ ์ทจ๋ํ์ค ์ ์์ต๋๋ค. ์ฐ๋ฆฌItcertkr์์ ์ ๊ณต๋๋ ๋ชจ๋ ๋คํ๋ค์ ๋ชจ๋ 100%๋ณด์ฅ ๋๋ฅผ ์๋ํ๋ฉฐ ๊ทธ๋ฆฌ๊ณ ์ฐ๋ฆฌ๋ ์ผ๋ ๋ฌด๋ฃ ์ ๋ฐ์ดํธ๋ฅผ ์ ๊ณตํฉ๋๋ค.
์ต์ Fire Plan Examiner CFPE ๋ฌด๋ฃ์ํ๋ฌธ์ (Q50-Q55):
์ง๋ฌธ # 50
The symbol above is a representation of which one of the following?
- A. Post-indicator valve
- B. Riser
- C. Check valve
- D. Reducer
์ ๋ต๏ผC
์ค๋ช
๏ผ
The symbol in question represents a check valve. A check valve is used in a fire protection system to prevent the backflow of water, ensuring that water flows in only one direction through the pipes. Symbols for fire protection components like check valves are standardized in NFPA codes and are critical for understanding the layout and functionality of fire suppression systems.
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์ง๋ฌธ # 51
What occupancy classification is a community college classroom with an occupant load of 40 persons or less?
- A. Institutional
- B. Educational
- C. Assembly
- D. Business
์ ๋ต๏ผD
์ค๋ช
๏ผ
A community college classroom with an occupant load of 40 persons or less is classified as a "Business" occupancy according to NFPA 101, Life Safety Code. This classification applies to educational occupancies above the 12th grade with fewer than 50 persons. Classrooms and offices in such settings are considered business occupancies, and this classification dictates the specific fire safety requirements, including egress and fire protection features.
Top of Form
Bottom of Form
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์ง๋ฌธ # 52
Exhibit.
How many different sprinkler types are shown on plan F0.1?
- A. 0
- B. 1
- C. 2
- D. 3
์ ๋ต๏ผC
์ค๋ช
๏ผ
Based on the symbols and descriptions on plan F0.1, there are 5 different sprinkler types shown. These may include various types such as upright, pendant, sidewall, dry, and recessed sprinklers, each serving different functions and locations within the building. The specific types and their designations are typically detailed in the fire protection legend or key on the plan.
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์ง๋ฌธ # 53
When does a new model code take effect within a jurisdiction?
- A. When it is voted into law by the people of a jurisdiction
- B. When it is approved by the voting members of the code-making body
- C. When it is adopted into law by a jurisdiction
- D. When it is published by the code-making body
์ ๋ต๏ผC
์ค๋ช
๏ผ
A new model code takes effect within a jurisdiction when it is adopted into law by that jurisdiction. Adoption is the formal process through which a jurisdiction decides to enforce a specific code edition, thereby making it legally binding. This process ensures that the codes are applicable and relevant to the specific needs and conditions of the jurisdiction.
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์ง๋ฌธ # 54
Exhibit.
What is the approximate maximum available water indicated on supply graph 2 on plan F0.2?
- A. 3,980gpm(15,066lpm)
- B. 1.980gpm (7,495 Ipm)
- C. 980 gpm (3,709 Ipm)
- D. 1,680 gpm (6,359 Ipm)
์ ๋ต๏ผB
์ค๋ช
๏ผ
The graph labeled as"Water Supply Graph Nยฐ2"presents a standard water supply flow test summary, which indicates the relationship between pressure (psi or kPa) and flow (gpm or Lpm) for a specific system or hydrant.
How to interpret the graph:
* Static Pressure:
* This is the pressure measured when there is no water flowing, shown at the highest point on the left side of the graph (indicated as approximately 100 psi or 689 kPa in this case).
* Residual Pressure:
* This is the pressure available when water is flowing at a specific rate. The residual pressure line decreases as flow increases, indicating that the pressure reduces when water is drawn from the system.
* Maximum Available Water:
* Themaximum available wateris the point where the system can deliver the highest possible flow (gpm) before the residual pressure reaches a critical minimum level, indicating the system's limit.
* Flow at Maximum Available Water:
* In this specific graph, the point marked asMaximum Available Wateris where the flow reaches
1,980 gpm(7,495 Lpm). This is derived by following the flow axis (horizontal axis) until it intersects with theMaximum Available Watercurve on the graph.
Why the Correct Answer is C (1,980 gpm):
* By following the plotted line for residual pressure, the graph shows that the maximum flow attainable from the system is1,980 gpm(7,495 Lpm) before pressure drops too low. This value represents the system's maximum water supply capacity under normal operating conditions.
This analysis is consistent with the flow rates displayed on the graph and matches the key markers labeled, which indicate the operational limits of the system.
NFPA Relevance:
In fire protection and water supply systems, understanding the maximum available water flow is essential for ensuring that sufficient water can be delivered in the event of a fire. This calculation is particularly relevant in the context of NFPA 20 (Standard for the Installation of Stationary Pumps for Fire Protection) and NFPA 25 (Standard for the Inspection, Testing, and Maintenance of Water-Based Fire Protection Systems), as these standards require that water supply systems are capable of delivering adequate flow to suppression systems under expected fire conditions.
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์ง๋ฌธ # 55
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NFPA ์ธ์ฆ CFPE์ํ๋๋น๋คํ๋ฅผ ์ฐพ๊ณ ๊ณ์๋ค๋ฉดItcertkr๊ฐ ์ ์ผ ์ข์ ์ ํ์ ๋๋ค.์ ํฌItcertkr์์๋ ์ฌ๋ผ๊ฐ์ง IT์๊ฒฉ์ฆ์ํ์ ๋๋นํ์ฌ ๋ชจ๋ ๊ณผ๋ชฉ์ ์ํ๋๋น ์๋ฃ๋ฅผ ๋ฐ์ทํ์์ต๋๋ค. Itcertkr์์ ์ํ๋๋น๋คํ์๋ฃ๋ฅผ ๊ตฌ์ ํ์๋ฉด ์ํ๋ถํฉ๊ฒฉ์ ๋คํ๋น์ฉํ๋ถ์ ์ฒญ์ด ๊ฐ๋ฅํ๊ณ ๋คํ 1๋ ๋ฌด๋ฃ ์ ๋ฐ์ดํธ์๋น์ค๋ ๊ฐ๋ฅํฉ๋๋ค. Itcertkr๋ฅผ ์ ํํ์๋ฉด ํํํ์ง ์์๊ฒ์ ๋๋ค.
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