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NEET Practice Test - 17 - NEET MCQ


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30 Questions MCQ Test - NEET Practice Test - 17

NEET Practice Test - 17 for NEET 2024 is part of NEET preparation. The NEET Practice Test - 17 questions and answers have been prepared according to the NEET exam syllabus.The NEET Practice Test - 17 MCQs are made for NEET 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for NEET Practice Test - 17 below.
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NEET Practice Test - 17 - Question 1

The mass and volume of a body are 6.237 g and 3.5 cm3, respectively. The density of the material of the body in correct significant figures is

Detailed Solution for NEET Practice Test - 17 - Question 1



In this question density should be reported to two significant figures.
As rounding of the number, we get density =1.8g/cm3

NEET Practice Test - 17 - Question 2

The magnitude of velocity of a body is given by V = m/s, then average speed of body between 2s to 6s

Detailed Solution for NEET Practice Test - 17 - Question 2

v = |t - 6|
For t = 2s to t = 6s
v = -t + 6

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NEET Practice Test - 17 - Question 3

In the figure equals

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NEET Practice Test - 17 - Question 4

If R and h represents the horizontal range and maximum height respectively of an oblique projectile, then  represents

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NEET Practice Test - 17 - Question 5

Rohan is running down with some acceleration on a plank kept on fixed inclined plane as shown in figure. Which of the following cases are possible?

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Acceleration of the plank will depend on acceleration of Rohan, frictional force between Rohan and plank and frictional force between plank and inclined plane.

NEET Practice Test - 17 - Question 6

If  and then value of y1+y2 in Boolean algebra is

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NEET Practice Test - 17 - Question 7

When a monochromatic point source of light is at a distance of 0.2 m from a photoelectric cell, the cut-off voltage and saturation current are respectively 0.6 volt and 18.0 mA. If the same source is placed 0.6m away from the photoelectric cell, then which of the following are true?

Detailed Solution for NEET Practice Test - 17 - Question 7

Stopping potential remains same as frequency remains same. Saturation current is directly proportional to intensity of light i.e. 
The stopping potential will be 0.6 volt
The saturation current will be 2.0 mA

NEET Practice Test - 17 - Question 8

Nuclear reaction obey the law of conservation of 

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Nuclear reaction obey the law of conservation of mass, energy, charge and momentum

NEET Practice Test - 17 - Question 9

After the emission of one α -particle followed by two +1β particles from  , the number of neutrons in the newly formed nucleus is

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NP + Nn = 234
NP = 88
88 + Nn = 234
Nn = 234 - 88
= 146

NEET Practice Test - 17 - Question 10

An α -particle of energy 5 MeV is scattered through 180o by a fixed uranium nucleus. The closet distance is in order of

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NEET Practice Test - 17 - Question 11

Five resistors of resistances as indicated in the figure are connected together. If a current of 18 A enters into the resistance network at A, then the potential difference across 5Ω resistor will be

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NEET Practice Test - 17 - Question 12

A capacitor of capacitance 2 μF is charged to 40 V and another capacitor of capacitance 4 μF is charged to 20 V. If the capacitors are connected together in same polarity, then the energy lost in reorganisation of charge will be

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NEET Practice Test - 17 - Question 13

In space two point masses of mass 10 kg each are fixed. The masses are separated by a distance 10 m. Another point mass of mass 1 kg is to be projected from the point at midpoint of line joining the fixed masses such that it escapes to infinity. The minimum speed of the projection is

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NEET Practice Test - 17 - Question 14

A container of height h is completely filled with water. The container is placed on a frictional surface with coefficient of friction μ and a small hole is punctured at a depth h/2 on container wall. If area of hole is a and area of base of container is A (a << A), then the value of μ for which the container remains stationary is (g = 10 m/s2)

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NEET Practice Test - 17 - Question 15

A 1/2 kg block moving with 5 m/s strikes a spring of force constant 1000 N/m attached to another 1/2 kg block at rest. Kept on a smooth floor. The time for which the rear moving block remain in contact with the spring will be (Assume π = √10 ) 

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Required time is half of time period = 

NEET Practice Test - 17 - Question 16

If two disturbances represented by equation y1 = 4sin(ωt) and y2 = 3sininterfere at a point. Then the amplitude of the resulting disturbance will be.

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NEET Practice Test - 17 - Question 17

A charged Q is divided into two charge q1 and q2, separated by a distance r. The force of repulsion between them will be maximum when 

Detailed Solution for NEET Practice Test - 17 - Question 17

F ∝ q1q2
This will be maximum when q1 = q 2

NEET Practice Test - 17 - Question 18

If are three vectors of magnitudes 12 units, 5 unit and 13 unit. And then angle betweenis

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NEET Practice Test - 17 - Question 19

A sonometer wire of length 280 cm is divided into 3 segments having fundamental frequencies in the ratio 4: 1 : 2. The lengths of the segments are

Detailed Solution for NEET Practice Test - 17 - Question 19

f1 : f2 : f3 = 4 : 1 : 2
l1 : l2 : l = 
= 1 : 4 : 2
x + 4x + 2x = 280
7x = 280 cm
x = 40 cm
⇒ Lengths are x, 4x and 2x
40 cm, 160cm, 80cm

NEET Practice Test - 17 - Question 20

Length, breadth and height of a cuboid are measured as 1.61 m, 2.2 m, and 3.1 m. The volume of cuboid up to correct number of significant figures is

Detailed Solution for NEET Practice Test - 17 - Question 20

V = lbh = 1.61 x 2.2 x 3.1
= 10.9802 m3
= 1.1 x 101 m3

NEET Practice Test - 17 - Question 21

Choose the INCORRECT statement

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Since amount of scattering 

Blue light is scattered in all directions by the tiny molecules of air in Earth's atmosphere. Blue is scattered more than other colors because it travels as shorter, smaller waves. This is why we see a blue sky most of the time.

NEET Practice Test - 17 - Question 22

A plano concave lens fits into a plano convex lens. Their plane surfaces are parallel to each other as shown in the figure. If μ1 = 1.4, μ2 = 1.6 and radius of curvature R=20 cm, then the focal length of the combination is

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NEET Practice Test - 17 - Question 23

In one mean life

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In one half life, half the nuclei decay and mean life ≈ 1.44 (half -life)
Hence in one mean life, more than half the nuclei will decay.

NEET Practice Test - 17 - Question 24

A radioactive sample has 1.6 x1018 radioactive nuclei at a certain instant. After three half lives the number of nuclei that will remain undecayed is

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NEET Practice Test - 17 - Question 25

Hydrogen atom in ground state absorbs 12.75 eV of energy. The orbital angular momentum of the electron is increased by

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NEET Practice Test - 17 - Question 26

A wire carrying current i is shaped as shown in the figure. The magnetic field at the origin is (R: Radius of circular section)

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B due to straight wires will cancel out
⇒ B circular section = 

NEET Practice Test - 17 - Question 27

A square loop and a long straight wire are situated in a common plane such that one edge of the square is parallel to the wire. The mutual inductance between the wire and loop is

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NEET Practice Test - 17 - Question 28

A face of a prism of refracting angle 30o is silvered. A ray of light is incident on the other face at angle of incidence 45o. After refection from the silvered face, ray retraces its path. The index of refraction of prism will be

Detailed Solution for NEET Practice Test - 17 - Question 28


r2 = 0
⇒ r1 + r2 = 30°
r= 30°
1 x sin 45° = μ sin(30°)
μ = √1

NEET Practice Test - 17 - Question 29

The degree of aortic value stenosis (abnormal narrowing of blood vessels) can be determined by calculating the area A2 of valvular opening and comparing with data given

Consider following aortic flow and blood as incompressible fluid

The degree of stenosis in cross-section A2 is

Detailed Solution for NEET Practice Test - 17 - Question 29

60 × 4 = 200 × A2
A2 = 240 / 200 
A2 = 1.2
Hence, moderate.

NEET Practice Test - 17 - Question 30

Two carnot engines are operated in succession. The first one, receives heat from a source at T1 = 400 K and rejects to sink at T2 K. The second engine receives heat rejected by first engine and rejects to another sink at T3=100 K. If the efficiency of both the engines are equal then T2 is

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