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CDCS Exam - Free Sample Questions & Answers

Preparing for the CDCS exam is simple with Certs Blitz. We offer easy-to-understand study materials that help you learn the most important exam topics. You can study using our PDF questions, practice online with a real exam-style test, or use the desktop practice software. Choose the study method that works best for you and prepare at your own pace.

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Question #1 (Topic: Demo Questions)

When are the wet bulb and dry bulb temperatures identical? 

A.

When the dry bulb's temperature is at the lowest allowable temperature for IT equipment as per ASHRAE

B.

When the dry bulb's temperature is at the highest allowable temperature for IT equipment as per ASHRAE

C.

When the relative humidity is at the best practice value for relative humidity, being 50% RH

D.

When the relative humidity is 100%

Correct Answer: D
Explanation:

The wet bulb and dry bulb temperatures become identical when the relative humidity reaches 100%. At this point, the air is fully saturated with moisture, meaning it can no longer absorb additional water vapor. As a result, the rate of evaporation decreases, and there is no difference between the dry bulb and wet bulb temperatures. Detailed Explanation: The dry bulb temperature measures the air temperature, while the wet bulb temperature takes into account the cooling effect of evaporation. When relative humidity is at 100%, the air has reached its saturation point, and no further evaporation occurs. This causes both the wet bulb and dry bulb thermometers to display the same temperature reading. This condition is critical in understanding environmental conditions, particularly in HVAC and data center environments, where humidity control is essential to avoid equipment overheating or corrosion. EPI Data Center Specialist Reference: The EPI Data Center Specialist training includes understanding humidity levels and their impact on data center environments. Knowing when wet bulb and dry bulb temperatures align helps data center operators manage moisture levels effectively, which is essential for preventing issues related to high humidity, such as condensation on IT equipment. 

Question #2 (Topic: Demo Questions)

Can you install a raised floor tight to the perimeter of the room?

A.

Yes, but only if the data center is located in Zone 0 with no or little seismic activity

B.

Yes, a raised floor needs to be installed tight to the perimeter to prevent air leakage

C.

No, to avoid damage to the raised floor due to building and hygrothermal movement

D.

No, but this applies only to raised floors with a height of over 90 cm (3 ft)

Correct Answer: C
Explanation:

Raised floors must not be installed flush against perimeter walls. Buildings expand, contract, and shift due to thermal expansion (hygrothermal movement), structural settlement, and seismic activity. If the raised floor is rigidly connected to the walls, this movement transfers directly into the raised floor grid, causing buckling, cracking, or tile misalignment.

Industry standards (e.g., CISCA -- Ceilings & Interior Systems Construction Association guidelines) require leaving a small perimeter gap (typically 1--2 cm) between raised floor tiles and walls. This gap is then sealed with flexible firestops or brush gaskets to control air leakage while preserving movement tolerance.

Therefore, the correct practice is to leave a separation space, making answer C correct. Options A and D restrict this requirement incorrectly, while B is factually wrong (sealing against the perimeter is not allowed).

Question #3 (Topic: Demo Questions)

You are installing new copper cabling. What is the advantage or disadvantage of choosing pre-terminated category 6 or 6A cabling?

A.

Pre-terminated cabling is already factory tested and saves installation time.

B.

There is no advantage as most new copper cabling network designs are based on category 3 or 5E for horizontal cabling.

C.

Pre-terminated cabling has a higher fire rating.

D.

Pre-terminated cabling makes ordering of the copper cables more complex, as you need to know in advance on which side the male or female connector needs to be located. 

Correct Answer: A
Explanation:

Choosing pre-terminated category 6 or 6A cabling provides several advantages, primarily related to time savings and reliability. Since pre-terminated cables are factory tested, they ensure consistent quality and performance, reducing the need for additional testing during installation. This makes installation faster and more efficient, which can significantly reduce labor costs and deployment times. Detailed Explanation: Pre-terminated cabling systems are manufactured and tested in controlled environments, which ensures they meet industry standards for performance. This factory testing process minimizes the likelihood of faults, reducing the need for troubleshooting and retesting on-site. Moreover, preterminated solutions can help to streamline installations because they eliminate the need for on-site terminations, which can be time-consuming and require skilled labor. This is especially beneficial for data centers, where rapid deployment and minimizing potential points of failure are critical to maintaining uptime. However, it is important to note that preterminated cables require accurate planning, as lengths and connector configurations must be predetermined. EPI Data Center Specialist Reference: According to EPI Data Center Specialist guidelines, pre-terminated cabling is advantageous in data center environments due to reduced installation time and enhanced reliability from factory testing. These attributes align with best practices for efficient data center management, where maintaining performance and minimizing downtime are priorities.

Question #4 (Topic: Demo Questions)

EMF shielding material needs to be installed as EMF levels from the transformer room into the computer room are measured at 100 mG. The transformer room is ~10 meters away, separated by a corridor. Where should shielding be installed?

A.

It does not matter; either close to the transformer room or computer room is okay

B.

As close as possible to the transformer room

C.
D.
Correct Answer: B
Explanation:

The most effective EMF mitigation is to install shielding as close as possible to the source of radiation. By blocking or redirecting magnetic flux at the origin (the transformer room walls), the overall field propagation into adjacent areas is minimized. If shielding were placed at the computer room, the field would already have spread over the intervening space, requiring more material and higher cost.

Standards such as IEEE Std 299 (EMC Shielding Effectiveness) and IEC 61000 emphasize source-based mitigation. Additionally, ANSI/TIA-942 requires EMF shielding where magnetic flux exceeds recommended ICT thresholds (generally <5 mG for sensitive tape/disk storage).

Although 100 mG is often tolerated by modern equipment, legacy magnetic storage can be affected, so shielding is still prudent. Hence, the correct location is at the transformer room wall.


Question #5 (Topic: Demo Questions)

Racks with 1.0 m depth and cold aisle containment with 3 perforated tiles are used. What aisle pitch is recommended?

A.

5 tiles pitch rule

B.

7 tiles pitch rule

C.

8 tiles pitch rule

D.

10 tiles pitch rule

Correct Answer: B
Explanation:

The aisle pitch is the total width of a rack row plus cold aisle plus rack row. For 1.0 m racks on each side with cold aisle containment, ASHRAE and TIA-942 recommend the 7-tile rule (each tile ~0.6 m). This ensures enough width for equipment clearance, airflow distribution, and human access.

5-tile pitch is too narrow, restricting containment effectiveness.

8--10 tiles may be used in some hyperscale layouts but are not standard for 1 m racks.

Thus, the correct design recommendation is the 7 tiles pitch rule.

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