12th Standard Syllabus & Materials
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TN 12th Computer Applications மின்னணு தரவு பரிமாற்றம் Sample Question Papers Study Material - QB365 Set A
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TN 12th Computer Applications மின்னணு செலுத்தல் முறைகள் Sample Question Papers Study Material - QB365 Set A
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TN 12th Computer Applications மின் - வணிகம் Sample Question Papers Study Material - QB365 Set A
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TN 12th Computer Applications திறந்த மூல கருத்துருக்கள் Sample Question Papers Study Material - QB365 Set A
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TN 12th Computer Applications வலையமைப்பு வடமிடல் Sample Question Papers Study Material - QB365 Set A

Published on: 12/10/2020
12th Standard Physics English Medium Free Online Test 1 mark questions 2020 Part Eight
Download Tamil Nadu 12th Standard Physics question papers, model tests, one-mark questions, important questions, and public exam papers in PDF format. Free study materials and answer keys for TN State Board students.
Questions + Answers key
Take MCQ Physics Test1.
A concave mirror of radius of curvature 60 cm is placed at the bottom and height of 20 cm, The mirror faces upwards with its axis vertical. Solar light fall normally on the surface of water and the image of the sun is formed. If a \(\\ \\ \\ { \mu }_{ \omega }=\cfrac { 4 }{ 3 } \) then will the observer in air, the distance of the image from the surface of the water is ____________.
30 cm
10 cm
7.5 cm above
7.5 cm below
2.
Two plane mirrors are parallel to each other and spaced 20cm apart. An object is kept in between them at 15cm from A. out of the following at which point on the image is not formed in mirror A (distance measured from mirror A) ___________.
15 cm
25 cm
45 cm
55 cm
3.
The clocks in moving ships will appear to go _______ clocks on earth.
faster than
slower than
the same as
stops after leaving earth
4.
A N-P-N transistor conducts when collector is _________ and emitter is ________ with respect to base.
positive, negative
positive, positive
negative, negative
negative, positive
5.
The photo current in an experiment on photoelectric effect increases if ____________.
the intensity of the source is increased
the exposure time is increased
the intensity of the source is decreased
the exposure time is decreased
6.
According to to Bohr, the relation between principal quantum number (n) and radius of the orbit (r) is _____________.
r α \(\frac1n\)
r α \(\frac{1}{n^2}\)
r α n
r α n2
7.
The variation of frequency of carrier wave with respect to the amplitude of the modulating signal is called ______.
Amplitude modulation
Frequency modulation
Phase modulation
Pulse width modulation
8.
The half-life period of a radioactive element A is same as the mean life time of another radioactive element B. Initially both have the same number of atoms. Then _____.
A and B have the same decay rate initially
A and B decay at the same rate always
B will decay at faster rate than A
A will decay at faster rate than B
9.
A light source of wavelength 520 nm emits 1.04 x 1015 photons per second while the second source of 460 nm produces 1.38 x 1015 photons per second. Then the ratio of power of second source to that of first source is _____.
1.00
1.02
1.5
0.98
10.
A plane glass is placed over a various coloured letters (violet, green, yellow, red) The letter which appears to be raised more is _____.
red
yellow
green
violet
11.
The absorption spectra are characteristic of the __________.
source
absorbing substance
time of travel from source to screen
spectrometer used to study the spectrum
12.
Cellular phones use radio frequencies in ______________.
AM band
UHF band
FM band
upto 54 MHz
13.
A power of 11,000 W is transmitted at 220 V. The current through line wires is _____________.
50 A
5 A
500 A
0.5 A
14.
Near a charged object A another earthed object B is placed. Charges are induced on B. If B is removed. After that the charge on A ________.
remains the same
decreases
increases
becomes zero
15.
The repulsive force between two like charges of 1 coulomb each separated by a distance of 1 m in vacuum is equal to :
9 x 109 N
109 N
9 x 10-9 N
9 N
16.
The total dipole moment per unit volume of the dielectric is________.
induction
charge distribution
polarisation
quantisation
17.
During charging a capacitor variation of potential V of the capacitor with time t as shown a
18.
What will happen if two conducting spheres are separately charged and then brought in contact?
Total charge on the two spheres is conserved
The total energy is conserved
Both charge and energy are conserved
The final potential is the mean of the original potentials.
19.
Two short bar magnets have magnetic moments 1.20 Am2 and 1.00 Am2 respectively. They are kept on a horizontal table parallel to each other with their north poles pointing towards south. They have a common magnetic equator and are separated by a distance of 20.0 cm. The value of the resultant horizontal magnetic induction at the mid-point O of the line joining their centres is (Horizontal components of Earth’s magnetic induction is 3.6 × 10–5 Wb m–2 )
3.60 × 10-5 Wb m-2
3.5 × 10-5 Wb m-2
2.56 × 10-4 Wb m-2
2.2 × 10-4 Wb m-2
20.
An electron moves in a straight line inside a charged parallel plate capacitor of uniform charge density σ. The time taken by the electron to cross the parallel plate capacitor undeflected when the plates of the capacitor are kept under constant magnetic field of induction \((\vec{B})\) is

\({ \varepsilon }_{ ° }\frac { elB }{ \sigma } \)
\({ \varepsilon }_{ ° }\frac { lB }{ \sigma {l} } \)
\({ \varepsilon }_{ ° }\frac { lB }{ {e}\sigma } \)
\({ \varepsilon }_{ ° }\frac { lB }{ \sigma } \)
21.
In an electrical circuit, R, L, C, and AC voltage source are all connected in series. When L is removed from the circuit, the phase difference between the voltage and current in the circuit is \(\frac{\pi}{3}\). Instead, if C is removed from the circuit, the phase difference is again \(\frac{\pi}{3}\). The power factor of the circuit is
1/2
1/\(\sqrt2\)
1
\(\sqrt3\)/2
22.
A thin semi-circular conducting ring (PQR) of radius r is falling with its plane vertical in a horizontal magnetic field B, as shown in the figure.

The potential difference developed across the ring when its speed v, is
Zero
\(\frac { { Bv\pi { r }^{ 2 } } }{ 2 } \) and P is at higher potential
πrBv and R is at higher potential
2rBv and R is at higher potential
23.
During the propagation of electromagnetic waves in a medium __________________.
electric energy density is double of the magnetic energy density
electric energy density is half of the magnetic energy density
electric energy density is equal to the magnetic energy density
both electric and magnetic energy densities are zero
24.
Three capacitors are connected in triangle as shown in the figure. The equivalent capacitance between the points A and C is
1μF
2μF
3μF
\(\frac{1}{4}\)μF
25.
In a large building, there are 15 bulbs of 40 W, 5 bulbs of 100 W, 5 fans of 80 W and 1 heater of 1 kW are connected. The voltage of electric mains is 220 V. The maximum capacity of the main fuse of the building will be ______.
14 A
8 A
10 A
12 A
1.
(c)
7.5 cm above
2.
(d)
55 cm
3.
(a)
faster than
4.
(b)
positive, positive
5.
(a)
the intensity of the source is increased
6.
(d)
r α n2
7.
(b)
Frequency modulation
8.
TA1/2 = ፒB
\(\frac{0.6931}{\lambda_{\mathrm{A}}}=\frac{1}{\lambda_{\mathrm{B}}} \)
\(\lambda_{\mathrm{B}}=\frac{\lambda_{\mathrm{A}}}{0.6931}=1.44 \lambda_{\mathrm{A}}\)
Hence, B will decay at faster rate than A
9.
\(P =\frac{E}{t}=\frac{n h v}{t}=\frac{n h c}{\lambda t} \Rightarrow P \propto n / t \)
\(\frac{P_1}{P_2} =\frac{1.38 \times 10^{15}}{460} \times \frac{520}{1.04 \times 10^{15}}=1.5\)
10.
Refractive index for violet is more and wavelength for violet is very low comparing other colours. So, the letter which appears to be raised more is violet.
11.
(b)
absorbing substance
12.
(b)
UHF band
13.
(a)
50 A
14.
(a)
remains the same
15.
(a)
9 x 109 N
16.
(c)
polarisation
17.
(a)
18.
(a)
Total charge on the two spheres is conserved
19.
(c)
2.56 × 10-4 Wb m-2
20.
Electric field between the plates \(= \frac{σ}{ε_0}\)
Electric force on an electron \(= e\frac{σ}{ε_0}\)
Magnetic force on an electron, F = BIl
But, \(I= \frac{e}{t}\)
∵Electron moves in a straight line. So,
EF = MF
\(e\frac{σ}{ε_0}=B(\frac{e}{t})l\)
\(\therefore t = ε_0\frac{lB}{σ}\)
21.
\(\Phi = \frac{\pi}{3}-\frac{\pi}{3}=0 \)
Power factor = cosФ = cos 0 = 1
22.
(d)
2rBv and R is at higher potential
23.
(c)
electric energy density is equal to the magnetic energy density
24.
\(\frac{1}{C_s}=\frac{1}{2}+\frac{1}{2}=1 \ μF\)
Cp = 1 + 1 = 2 μF
25.
Total power = 15 x 40 + 5 x 100 + 5 x 80 + 1000
= 600 + 500 + 400 + 1000
= 2500 W
P = VI, V = 220 V
\(I=\frac{P}{V}=\frac{2500}{220}=11.363 \ A\)
≃ 12 A
12th Standard Syllabus & Materials
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