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API-SIEE Latest Dumps Questions - New API-SIEE Practice Materials
The Source Inspector Electrical Equipment (API-SIEE) certification is a requirement if you want to succeed in the API industry quickly. But after deciding to take the API-SIEE exam, the next challenge you face is the inability to find genuine API-SIEE Questions for quick preparation. People who don't study with API-SIEE real dumps fail the test and lose their precious resources.
API API-SIEE Exam Syllabus Topics:
Topic
Details
Topic 1
- Electrical Skid Mounted Equipment: Addresses inspection of skid-mounted assemblies including hazardous location equipment, grounding, cable systems, control wiring, and applicable codes.
Topic 2
- Motor Control Centers (Low to Medium Voltage): Covers design standards, materials, enclosure types, breakers, amp capacity, cable entry, and grounding components for MCCs.
Topic 3
- Terms and Definitions: Covers the foundational terminology and definitions used throughout electrical source inspection work.
Topic 4
- Source Inspection Management Program: Addresses the organizational framework and management practices that govern source inspection programs.
Topic 5
- Liquid-Immersed Transformers: Covers the design, construction, and applicable industry codes and standards for liquid-immersed transformers.
Topic 6
- Electrical Induction Motors: Covers design and construction standards, materials of construction, and motor testing requirements for electrical induction motors.
Topic 7
- Electrical Inspection Tools and Test Equipment: Covers the tools and test equipment used by inspectors to perform electrical source inspections.
Topic 8
- Source Inspection Performance: Covers inspector conduct, safety, project document review, report writing, and handling nonconformances and deviations during inspections.
Topic 9
- Switchgear (Low & Medium Voltage): Covers design, construction, ratings, interlocks, wiring, enclosures, bus compartments, breakers, transformers, and metering for LV and MV switchgear.
API Source Inspector Electrical Equipment Sample Questions (Q70-Q75):
NEW QUESTION # 70
The highest voltage rating on a piece of medium voltage equipment is the:
- A. AC high potential.
- B. nominal voltage.
- C. basic impulse level.
- D. DC high potential.
Answer: C
Explanation:
The correct answer isA, basic impulse level. On medium voltage equipment, thebasic impulse level BILis the highest voltage-related rating normally associated with the insulation system. BIL represents the ability of the equipment insulation to withstand a specified high-voltage impulse, such as a lightning surge or switching surge, without failure. It is therefore a dielectric withstand rating that is higher than the equipment's normal operating or system voltage and is used to define insulation coordination for the equipment.
The other choices are not the best answer.Nominal voltageidentifies the intended system operating voltage class, but it is not the highest voltage-related rating.AC high potentialandDC high potentialare test voltages used during dielectric testing, not the principal nameplate rating that defines the equipment's insulation impulse withstand capability. In source inspection of switchgear and other medium voltage assemblies, the inspector verifies that the equipment ratings, including voltage class, insulation level, and test records, agree with the purchase specification and applicable standards.
Because BIL expresses the highest recognized insulation withstand rating among the listed options,Ais the verified answer.
NEW QUESTION # 71
Metallic shielding components such as tapes, wires, or braids shall be connected to a:
- A. low voltage connector.
- B. center tap of a transformer.
- C. equipment grounding busbar.
- D. low voltage ceramic insulator.
Answer: C
Explanation:
The correct answer isA. Metallic shielding components in cables, such asshield tapes, drain wires, metallic braids, or similar conductive shielding layers, are connected to theequipment grounding system, commonly through anequipment grounding busbaror other approved grounding termination point. The purpose of this connection is to provide a low-impedance path for induced voltages, capacitive charging current, noise, and fault-related currents, while also helping reduce electromagnetic interference and maintaining personnel safety.
In source inspection and quality surveillance of electrical systems, correct shield termination is important because improper grounding can lead to noise problems, unreliable signal performance, unsafe touch potentials, or ineffective fault-current control. The inspector therefore checks that cable shields and associated metallic components are terminated in accordance with the approved drawings, cable schedules, and project grounding requirements.
The other options are incorrect. Aceramic insulatordoes not provide the required grounding path. Alow voltage connectoris too generic and is not the intended grounding termination. Atransformer center tapis a system neutral point, not the correct destination for cable metallic shielding. Therefore, the proper connection point is theequipment grounding busbar.
NEW QUESTION # 72
A qualified person, as defined by NFPA 70E, is a person:
- A. who has demonstrated skills related to the operation of electrical equipment and received safety training to identify and avoid the hazards.
- B. designated by the authority having jurisdiction as an electrician, electrical technician, electrical supervisor or electrical engineer.
- C. who has taken the national electrical safety certification and received the certificate.
- D. with a 2 year associate degree in electrical technology or electrical engineer or the IBEW equivalent.
Answer: A
Explanation:
The correct answer isD. UnderNFPA 70E, aqualified personis not defined by job title, academic degree, union equivalency, or simply being appointed by an authority. Instead, the person must havedemonstrated skills and knowledge related to the construction and operation of electrical equipment and installations, and must also have receivedsafety training to identify and avoid the hazards involved. This definition is especially important in source inspection and quality surveillance because inspectors may observe energized testing, equipment verification, or manufacturing activities where electrical hazards are present. In such cases, qualification is based oncompetence plus hazard-recognition training, not on position alone.
Options A, B, and C are incorrect because they describe credentials, titles, or formal recognition that may support a person's background, but they do not satisfy the full NFPA 70E definition by themselves. A source inspector working around electrical equipment must understand that only personnel who can bothperform the task competentlyandrecognize the associated electrical risksare considered qualified. That is why optionDis the best and verified answer.
NEW QUESTION # 73
What requirement shall be included in a lockout/tagout procedure?
- A. A voltage testing requirement where there might be direct exposure to electrical hazards
- B. A power testing requirement where a direct exposure situation can be detected
- C. A voltage and current testing for direct exposure situations
- D. An arc flash requirement where a high level of exposure is foreseen
Answer: A
Explanation:
The correct answer isC. A properlockout/tagout procedurefor electrical work must include a requirement totest for absence of voltagewherever there may be direct exposure to electrical hazards. Lockout and tagout are not complete merely because disconnecting means have been opened and locked. The worker must verify that the circuit or equipment is actually de-energized before contact, because stored energy, incorrect isolation, backfeed, or mislabeled circuits can leave hazardous voltage present.
In electrical safety practice, this verification is a critical step between isolation and the start of work. The procedure therefore needs a clearvoltage-testing requirementusing an appropriate test instrument and safe work method. This aligns with the source inspection and electrical safety mindset reflected in the API guide, where conformance to procedure, verification steps, and documented controls are essential to safe handling of electrical equipment.
Option A is too general because arc flash PPE may be required for certain tasks, but it is not the core procedural verification step in lockout/tagout. Option B is vague, and option D adds current testing, which is not the standard required element. The required inclusion isvoltage testing.
NEW QUESTION # 74
Apparent power is measured in:
- A. watts.
- B. volt-amperes.
- C. vars.
- D. mhos.
Answer: B
Explanation:
The correct answer isCbecauseapparent powerin an AC electrical system is measured involt-amperes VA.
Apparent power represents the total electrical power supplied to a circuit and is the combination ofreal powerandreactive power. Real power, which performs useful work such as turning a motor shaft or producing heat, is measured inwatts. Reactive power, which supports magnetic and electric fields in inductive or capacitive equipment, is measured invars. Apparent power is therefore the vector sum of these two and is expressed inVAor larger units such askVAandMVA.
The other options are incorrect for this reason.Mhosis a unit of conductance, not power.Varsmeasure reactive power only.Wattsmeasure true or active power only. In source inspection and quality surveillance of electrical equipment, understanding these distinctions is important when reviewing motor data sheets, transformer ratings, switchgear load data, and electrical test reports. Equipment such as transformers and generators are commonly rated inkVA or MVAbecause their thermal and current-carrying capability is tied toapparent power, makingvolt-amperesthe correct answer.
NEW QUESTION # 75
......
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