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100+ Free Maharashtra HSC Electronics Field Technician (NSQF F6) Practice Questions

Maharashtra Higher Secondary Certificate (HSC) NSQF subject Electronics-Field Technology / Electronics Field Technician under the Maharashtra State Board of Secondary and Higher Secondary Education (MSBSHSE), Pune — subject code F6 practice questions are available now; exam metadata is being verified.

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2026 Statistics

Key Facts: Maharashtra HSC Electronics Field Technician (NSQF F6) Exam

F6

MSBSHSE subject code for Electronics-Field Tech. / Electronics Field Technician

MSBSHSE HSC subject statistics listings

~35%

Common minimum HSC subject pass floor under MSBSHSE (confirm year notification)

Maharashtra HSC pass-mark practice

Theory + practical/skills

Official NSQF HSC assessment mode — not a pure MCQ board paper

MSBSHSE / NSQF vocational assessment pattern

Field service focus

Install, troubleshoot, ESD, customer service, tools, cabling, documentation

Electronics field technician job-role competencies (e.g., ELE field QPs)

Distinct from bifocal Electronics

F6 is listed separately from C2 Electronics and EA–EC Electronics Technology papers

MSBSHSE subject code listings

English MCQ adaptation

This free local bank is not the official Higher Secondary paper format

OpenExamPrep practice policy

MSBSHSE HSC NSQF Electronics Field Technician (F6) is a Maharashtra skill-based HSC subject on field install/service of electronics and computing peripherals, assessed with theory plus practical/skills (not pure MCQ), commonly with a ~35% pass floor — confirm the year’s circulars. This free 2026 bank is an English MCQ study adaptation for safety, tools, install, troubleshoot, cabling, service, and documentation.

Sample Maharashtra HSC Electronics Field Technician (NSQF F6) Practice Questions

Try these sample questions to test your Maharashtra HSC Electronics Field Technician (NSQF F6) exam readiness. Each question includes a detailed explanation. Start the interactive quiz above for the full 100+ question experience with AI tutoring.

1According to Ohm’s law, voltage (V) across a conductor equals:
A.Current plus resistance (V = I + R)
B.Current divided by resistance (V = I / R)
C.Current times resistance (V = I × R)
D.Resistance divided by current (V = R / I)
Explanation: Ohm’s law states V = I × R for a conductor at constant temperature. Field technicians use it to interpret meter readings and estimate loads.
2In a simple series circuit, the same quantity through every component is the:
A.Voltage drop on every component
B.Power in every component
C.Resistance of every component
D.Current
Explanation: Series connection provides one path, so current is identical through each part. Voltage and power depend on each resistance.
3A silicon PN-junction diode typically shows a forward voltage drop of about:
A.0.1 V
B.0.7 V
C.12 V
D.5.0 V
Explanation: Silicon diodes commonly drop about 0.6–0.7 V when forward biased—used in multimeter diode tests.
4Electrical power consumed by a resistive load is correctly calculated as:
A.P = V − I
B.P = V + I
C.P = V × I
D.P = V / I
Explanation: Power is the product of voltage and current (P = VI). Also P = I²R = V²/R for pure resistance.
5Two equal resistors connected in parallel have an equivalent resistance that is:
A.Equal to one resistor’s value
B.Half of one resistor’s value
C.Twice one resistor’s value
D.Zero ohms
Explanation: For two equal resistors R in parallel, R_eq = R/2 because two equal paths share current.
6Alternating current (AC) differs from direct current (DC) primarily because AC:
A.Can only be produced by batteries
B.Never produces a magnetic field
C.Periodically reverses polarity and direction of flow
D.Always has zero frequency
Explanation: AC reverses polarity periodically (e.g., 50 Hz mains in India). DC maintains one polarity. Always set meters to the correct mode.
7A capacitor’s primary function in many electronic circuits is to:
A.Store energy only in a magnetic field like an inductor
B.Generate continuous DC voltage from nothing
C.Act solely as a permanent short circuit to DC
D.Store energy in an electric field and oppose sudden voltage change
Explanation: Capacitors store energy electrically and resist abrupt voltage changes (filter/decouple). After charging, ideal capacitors block steady DC.
8Kirchhoff’s Current Law (KCL) states that at any circuit node:
A.Resistance equals voltage only
B.The algebraic sum of currents entering and leaving is zero
C.Power is always zero at every node
D.All voltages around any loop must be infinite
Explanation: KCL is charge conservation at a node: currents in equal currents out (algebraic sum zero).
9A bipolar junction transistor (BJT) used as a switch is typically driven so that it operates in:
A.Only the active linear region for switching
B.Breakdown region continuously for normal switching
C.Saturation (on) or cut-off (off)
D.Open base with collector–emitter short as the normal off design
Explanation: Switching uses cut-off (off) and saturation (on). Active region is for amplification; breakdown damages the device.
10In a full-wave bridge rectifier, the main conversion performed is:
A.DC input to pure AC sine output without switching
B.Digital logic high to optical fibre light only
C.Resistance measurement to current measurement
D.AC input to pulsating DC output
Explanation: A bridge of four diodes converts AC to unidirectional pulsating DC for later filtering/regulation.

About the Maharashtra HSC Electronics Field Technician (NSQF F6) Practice Questions

Verified exam format metadata for Maharashtra Higher Secondary Certificate (HSC) NSQF subject Electronics-Field Technology / Electronics Field Technician under the Maharashtra State Board of Secondary and Higher Secondary Education (MSBSHSE), Pune — subject code F6 is pending. The practice questions above remain available while official exam length, timing, passing score, fee, and administrator details are reviewed.