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Quiz 62
Mdcat-past-papers Quiz
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1221. In equations E = -ΔV/Δx, Negative sign indicates that:
E points towards increasing V
E points towards decreasing V
E is perpendicular to V
E is parallel to ΔV
1222. What does the electric field around a charge represent?
Size of the charge
Effective area for electrostatic force
Path followed by the charge
Speed of charge
1223. Which statement is the best for electric flux of a point charge?
Independent of charge
Independent of medium
Independent of shape of surface in which charge is enclosed
Independent position of charge in shape
1224. Electric intensity due to charge distributions are calculated using which of the following law?
Ohm's law
Faraday's law
Gauss's law
Ampere's law
1225. A particle carrying a charge 2e falls through a potential difference of 3V, the energy acquired by it will be:
6eV
7eV
1.5eV
5eV
1226. Magnetic lines of force are:
Imaginary lines which show actual magnetic field
Actual lines which show actual magnetic field
Imaginary lines which show imaginary magnetic field
Actual lines which show imaginary magnetic field
1227. The instantaneous power supplied to a circuit is a product of the:
Instantaneous current & instantaneous voltage
Instantaneous voltage, instantaneous conductance
Instantaneous voltage, instantaneous conductance
Instantaneous current, instantaneous power
1228. The values of Electric intensity will ___ due to the presence of dielectric medium:
increase
increase exponentially
decrease
remain same
1229. A quantity which is related to both N/C and V/m is:
electric intensity
Electric force
electric energy
electric charge
1230. Electric field intensity is:
force per unit mass
Force per unit tesla
Force per unit charge
force/watt
1231. When a charged particle enters the magnetic field parallel, it will:
Direct towards north
Direct towards south
move straight
Move in circular path
1232. The electric field at a distance of 10cm from a 2μc point charge is:
1.8 C
180 C
18 C
1800 C
1233. Electric potential due to 2μ charge at distance of one meter is equal to :
18 × 10^4 Volt
1.8 × 10^4 Volt
1.8 × 10^6 Volt
18 × 10^6 Volt
1234. What is the potential difference between two points in an electric field if it takes 600J of energy to move a charge of 2C between these two points?
1200J
800J
300J
0J
1235. What is the potential difference between two points in an electric field if it takes 600 J of energy to move a charge of 2C between these two points?
1200J
300J
800J
0J
1236. Find the potential difference in moving 2C charge which requires 600J of work between two points.
1200V
300V
150V
2400V
1237. The change in electric potential with respect to distance equals to:
Potential gradient
Amount of the charge
Potential difference
Surface charge density
1238. The SI unit of potential difference is:
Volt
Coulomb
Watt
eV
1239. Electric potential is defined as:
Work per unit charge
Force per unit charge
Power per unit charge
Force
1240. Due to polarization process of dielectric, the electric intensity:
Increases
Decreases
Remains same
Becomes zero
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