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Practicing with the EXIN CDCS practice test, you can evaluate your EXIN CDCS exam preparation. It helps you to pass the CDCS test with excellent results. CDCS imitates the actual EXIN EPI Certified Data Centre Specialist exam environment. You can take the EXIN CDCS Practice Exam many times to evaluate and enhance your EXIN CDCS exam preparation level.
EXIN CDCS Exam Syllabus Topics:
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CDCS Updated Test Cram, CDCS Free Sample
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EXIN EPI Certified Data Centre Specialist Sample Questions (Q63-Q68):
NEW QUESTION # 63
The temperature in the computer room is increased from 18 °C (64 °F) to 27 °C (81 °F). What is the impact on the amount of gas required to suppress a fire assuming a halocarbon agent?
- A. The amount of gas required will not change
- B. The change cannot be determined without knowing the change in humidity as well
- C. The amount of gas required will be less
- D. The amount of gas required will be higher
Answer: D
Explanation:
Design concentrations for halocarbons (e.g., FM-200/HFC-227ea, Novec 1230) increase with ambient temperature; higher temperature # higher minimum extinguishing concentration # more agent mass.
References: NFPA 2001 (Clean Agent Fire Extinguishing Systems) §5.4 & Annex A (temperature correction for halocarbons); ISO 14520-1 §5.4.
NEW QUESTION # 64
You are allowed to use a calculator for this question.
A computer room has a net volume of approximately 2,500 m³ / 88,287 ft³.
The temperature is 20 °C / 68 °F.
The required design concentration is 7%.
The S-Factor is 0.1359 (metric) / 1.885 (imperial).
Calculate the amount of gas required for this computer room based on FM200. What is the correct weight?
- A. Approximately 1,390 kg / 3,000 lbs
- B. Approximately 410 kg / 900 lbs
- C. Approximately 820 kg / 1,800 lbs
- D. Approximately 1,640 kg / 3,600 lbs
Answer: C
Explanation:
The amount of FM200 gas required can be calculated using the formula:
Weight of Gas=Net Volume×Design Concentration×S-Factor ext{Weight of Gas} = ext{Net Volume}
imes ext{Design Concentration} imes ext{S-Factor}
Weight of Gas=Net Volume×Design Concentration×S-Factor
Using metric units:
* Net Volume: 2,500 m³
* Design Concentration: 7% (or 0.07)
* S-Factor: 0.1359
Calculation:
2,500 m3×0.07×0.1359=821.325 kg2,500 , ext{m}
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