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NFPA CWBSP Exam Syllabus Topics:
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CWBSP Practice Questions: Certified Water-Based Systems Professionals & CWBSP Exam Dumps Files
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NFPA Certified Water-Based Systems Professionals Sample Questions (Q71-Q76):
NEW QUESTION # 71
For an Extra Hazard Group 1 remote area of 2,500 ft2 (232.25 m2) using fire sprinklers with a coverage area of
92 ft2 (8.547 m2), how many gallons per minute of water are required per sprinkler?
- A. 26.8 gpm (101.449 lpm)
- B. 23.0 gpm (87.055 lpm)
- C. 31.3 gpm (118.394 lpm)
- D. 36.8 gpm (139.288 lpm)
Answer: A
Explanation:
For an Extra Hazard Group 1 area of 2,500 ft² using sprinklers with a coverage area of 92 ft², a flow rate of approximately 26.8 gpm per sprinkler is required to meet the density requirements for this type of hazard, ensuring sufficient water is available for fire suppression.
References: NFPA 13 design criteria for Extra Hazard Group 1 occupancies, which specify the water delivery requirements based on the system's design area and sprinkler coverage.
NEW QUESTION # 72
What is the minimum flow rate required for the most hydraulically remote Class I standpipe?
- A. 1,000 gpm (3785 L/min)
- B. 250 gpm (946 L/min)
- C. 750 gpm (2840 L/min)
- D. 500 gpm (1893 L/min)
Answer: D
Explanation:
The minimum flow rate for the most hydraulically remote Class I standpipe is typically 500 gpm. This ensures sufficient water volume for firefighting efforts in buildings where Class I standpipes are installed, catering to the needs of fire department hoses.
References: General principles from NFPA standards related to standpipe system design and performance requirements.
NEW QUESTION # 73
The minimum design criteria for the design of a new sprinkler system in a residential occupancy, with noncombustible concealed spaces, in an NFPA 13 based design is how many residential sprinklers and what density?
- A. 4 sprinklers at 0.10 gpm/ft2 (4.1 mm/min)
- B. 8 sprinklers at 0.10 gpm/ft2 (4.1 mm/min)
- C. 2 sprinklers at 0.05 gpm/ft2 (2.0 mm/min)
- D. 3 sprinklers at 0.05 gpm/ft2 (2.0 mm/min)
Answer: A
Explanation:
The minimum design criteria for a new sprinkler system in a residential occupancy, considering noncombustible concealed spaces and based on NFPA 13, would typically involve 4 sprinklers at a density of
0.10 gpm/ft². This provides a baseline level of fire protection suitable for residential settings.
References: NFPA 13 provides design criteria for sprinkler systems in various occupancies, including residential, with specific guidelines for sprinkler quantity and density.
NEW QUESTION # 74
The minimum flow rate for the required forward flow test of a backflow prevention assembly shall be the
- A. listed flow rate of the device.
- B. system demand excluding hose stream allowance, where applicable.
- C. system demand plus hose stream allowance, where applicable.
- D. maximum flow rate of the device.
Answer: C
Explanation:
The minimum flow rate for the forward flow test of a backflow prevention assembly should be the system demand plus hose stream allowance, where applicable, to ensure the assembly can handle the maximum expected flow during a fire event.
References: NFPA standards related to backflow prevention and system testing requirements, ensuring that fire protection systems can provide adequate flow under demand conditions.
NEW QUESTION # 75
If a jockey pump start point is set at 165 psi (11.4 bar), the jockey pump stop point should be not less than
- A. 175 psi (12.06 bar).
- B. 188 psi (12.96 bar).
- C. 130 psi (8.96 bar).
- D. 153 psi (10.55 bar).
Answer: A
Explanation:
The jockey pump stop point is typically set slightly above the fire pump start point to prevent unnecessary cycling of the fire pump. If the jockey pump start point is at 165 psi, the stop point should be higher to maintain system pressure and prevent overlap with the fire pump activation threshold, making 175 psi a suitable stop point.
References: NFPA 20 and CWBSP materials, which cover the installation and testing of fire pumps, including jockey pumps, recommend setting the jockey pump's stop pressure above its start pressure to ensure seamless system pressure maintenance.
NEW QUESTION # 76
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