1
GATE EE 2005
MCQ (Single Correct Answer)
+2
-0.6
The simultaneous application of signals $$x(t)$$ and $$y(t)$$ to the horizontal and vertical plates, respectively, of an oscilloscope, produces a vertical figure-of-$$8$$ display. If $$P$$ and $$Q$$ are constants, and $$x(t)=P$$ $$sin(4t+30),$$ then $$y(t)$$ is equal to
A
$$Q\,\sin \left( {4t - 30} \right)$$
B
$$Q\,\sin \left( {2t + 15} \right)$$
C
$$Q\,\sin \left( {8t + 60} \right)$$
D
$$Q\,\sin \left( {4t + 30} \right)$$
2
GATE EE 2004
MCQ (Single Correct Answer)
+2
-0.6
A $$CRO$$ probe has an impedance of $$500k\Omega $$ in parallel with a capacitance of $$10pF$$. The probe is used to measure the voltage between $$P$$ and $$Q$$ as shown in Fig. The measured voltage will be GATE EE 2004 Electrical and Electronics Measurement - Cathode Ray Oscilloscope Question 6 English
A
$$3.53$$$$V$$
B
$$4.37V$$
C
$$4.54V$$
D
$$5.00V$$
3
GATE EE 2003
MCQ (Single Correct Answer)
+2
-0.6
List $$-$$ $${\rm I}$$ represents the figures obtained on a $$CRO$$ screen when the voltage signals $$\,{V_X}\,\, = \,\,{V_{Xm}}\sin \,\,\omega t\,\,$$ and $$V_y^ \cdot \,\, = \,\,{V_{ym}}\sin \,\,\left( {\omega t + \Phi } \right)\,\,$$ are given to its $$X$$ and $$Y$$ plates respectively and $$\Phi $$ is changed. Choose the correct value of $$\Phi $$ from List $$-$$ $${\rm I}$$ to match with the corresponding figure of List $$-$$ $${\rm II}$$. GATE EE 2003 Electrical and Electronics Measurement - Cathode Ray Oscilloscope Question 7 English 1 GATE EE 2003 Electrical and Electronics Measurement - Cathode Ray Oscilloscope Question 7 English 2
A
$$A = 1,\,B = 3,\,\,C = 6,\,\,D = 5$$
B
$$A = 2,\,B = 6,\,\,C = 4,\,\,D = 5$$
C
$$A = 2,\,B = 3,\,\,C = 5,\,\,D = 4$$
D
$$A = 1,\,B = 5,\,\,C = 6,\,\,D = 4$$
4
GATE EE 1998
MCQ (Single Correct Answer)
+2
-0.6
Fig. shows the electrostatic vertical deflection system of $$CRT$$. Given that $${V_A}$$ is the accelerating voltage, the deflection sensitivity (deflection/volt) is proportional to GATE EE 1998 Electrical and Electronics Measurement - Cathode Ray Oscilloscope Question 8 English
A
$${{L{L_S}} \over {d{V_A}}}$$
B
$${{L{L_S}{V_D}} \over {d{V_A}}}$$
C
$${{L{L_S}} \over d}{V_A}$$
D
$${{D{L_S}} \over {L{V_A}}}$$
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