PHYSICS MCQs 1st Year CHAPTER NO.7 OSCILLATIONS Test No.1

11th Class Physics MCQs 1st Year Chapter No.7 Oscillations Test No. 1, FSc, Grade 11, First Year Multiple Choice Questions, Medical College ( MDCAT ) , ECAT & University Admission Entry Test Exams Online Preparation, Chapter Wise Question Answers Notes in Pdf, Old Board Papers reference with Each Question, All Queries accommodated within 24 Hours. Click here to Contact us for any Query/Question regarding Exams.

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PHYSICS 
Chapter Name : OSCILLATIONS 
Chapter No. 7  [Test No.1]
1st Year
Multiple Choice Questions
Note : All MCQ’s selected in this test are from OLD F.Sc. board , UHS and PMC(Pakistan Medical Commission) Islamabad 5-Years Papers.

 

 

 








Book Name :  PHYSICS
Chapter No. 7 (Test No.1)
Chapter Name : OSCILLATIONS 
Total MCQ from Text Book/Board/UHS/PMC Papers :  49
Book Version  :
2022

Published By : Punjab Text Book Board Lahore
Approved By : Govt of the Punjab and Federal Ministry for Education
Test Type : MCQ’s
Exam conduct By : Inter Boards of Sindh, KPK, Balochistan, AJK, Gilgit Baltistan, Punjab & Federal
Class / Grade  : 11 ( F.Sc. Intermediate)
Total Marks : 49
Total Time :   49 minutes
239

Grade 11 - Physics - Chapter 7 - OSCILLATIONS - Test No. 1

Grade 11 - Physics - Chapter 7 - OSCILLATIONS - Test No. 1

1 / 49

Acceleration of projection of a particle moving around a circle is given by relation (MTN 2013)

2 / 49

The expression for frequency of mass m attached to a spring of constant k is (SGD, GRW 2014) (RWP 2015)

3 / 49

When three fourth of the cycle of a vibrating body completed then the phase of vibration is: (RWP 2018)

4 / 49

In equation x = xo sin (ωt + π/2) the initial position of body is along. (AJK 2017)

5 / 49

Maximum velocity is SHM is (SGD 2018 GI)

6 / 49

If the time period of simple pendulum is 2 second, its frequency wil be: (Sahiwal 2017)

7 / 49

In order to double period of a simple pendulum the length of the pendulum should be increased by: (LHR 2019 GII)

8 / 49

If F = 0.08N and x = 4cm then k = (MTN 2013)

9 / 49

The ratio of angular frequency and linear frequency is: (LHR 2018 GII)

10 / 49

The wave form of SHM is (DGK 2008)

11 / 49

The S.I unit of spring constant is (SGD 2015 GII)

12 / 49

When the bob of simple pendulum is at extreme position its kinetic energy is (SGD 2014)

13 / 49

Distance covered by a body in one vibration is 20cm. The amplitude of the vibration will be (SGD 2019 GI)

14 / 49

At mean position during the SHM (BWP 2011)

15 / 49

The total energy of mass-spring system' is independent of: (GRW 2019 GI)

16 / 49

Which expression is correct for the time period of a simple pendulum? (Lhr 201511 Grw-2012)

17 / 49

When the bob of simple pendulum is at extreme position then its K.E is: (GRW 2019 GII)

18 / 49

The relation between linear frequency and angular frequency (DGK, RWP 2018)

19 / 49

The time period of an oscillating mass spring system is 2 second. If the spring is cut in two equal parts and one spring is set for oscillations with the same mass, the new time period will be: (AJK 2018)

20 / 49

If the initial Phase is π/2 then displacement of SHO is: (BWP 2019 GI)

21 / 49

The velocity of spring-mass vibrating system at mean position is: (MTN 2019 GII)

22 / 49

Distance covered during one vibration of an oscillating body in terms of amplitude A (SWL 2013) (LHR 2017 GI)

23 / 49

The time period of an oscillating mass spring system is 10 second. If mass attached to spring is doubled then time period becomes: (DGK 2016 GI)

24 / 49

The velocity of a particle having SHM is v at mean position. If Its amplitude is doubled then velocity at mean position will be (SGD 2016 GI)

25 / 49

In case of oscillating pendulum, its acceleration "a" is (Federal 2013 Bwp-2011)

26 / 49

If a pendulum vibrate with frequency 0.5 Hz, then its length will be: (Mirpur(Kashmir) 2015)

27 / 49

SI unit of plane angle is: (MTN 2016 GII)

28 / 49

Acceleration in S.H.M is proportional to the: (MTN 2019 GI)

29 / 49

When a particle isjnoving in a circular path; its projection along diameter executes: (DGK 2018 GII)

30 / 49

The phase θ = ωt of a body performing the SHM indicates (GRW 2014) (FSD 2015)

31 / 49

At which place the motion of a simple pendulum will be slowest: (Fsd 2017)

32 / 49

A simple pendulum is moved from the Earth to the Moon. How does it change the period of oscillation? (Acceleration due to gravity on moon = 1.6 m/s2) (Federal 2017)

33 / 49

The force responsible for the vibratory motion of simple pendulum is (DGK 2016 Group II)

34 / 49

If Mass of Pendulum becomes double, then its time period will be (DGK 11, BWP 2015)

35 / 49

One complete round trip of a vibrating body called (DGK 2013) (BWP 2014)

36 / 49

By increasing mass of the object four times attached to a spring. Time period will become: (SWL 2018)

37 / 49

The product of frequency and time period is (SWL 2016) (DGK 2015 GII)

38 / 49

The product of frequency and time period is (SGD 2019 GII)

39 / 49

The acceleration of a body performing the SHM depends upon (RWP 2012)

40 / 49

10 cm extension is produced in a string due to a force of 20 N. The spring constant is (MTN 2012)

41 / 49

The frequency of second pendulum is (Sgd-2015 Sahiwal-15 Lhr-2013 DGK 08, SwI 2016, Sgd 2015 G I, Mtn 2015 G II, Mtn 2016 G)

42 / 49

Which of the following quantity can be expressed in kg S-2 (DGK 2015 GI)

43 / 49

When a particle is moving uniformly along a circular path, its projection along the diameter executes (RWP 2014) (MTN 2015 GI) (DGK 2018)

44 / 49

The dimension of spring constant is (LHR 2014)

45 / 49

If amplitude of a simple pendulum is increased by 4 times the time period will be: (Lhr 15 GI)

46 / 49

Base units of spring constant is: (LHR 2019 GI)

47 / 49

The frequency of Simple Pendulum is given by: (Bwp 2016)

48 / 49

Angular frequency is basically a characteristic of (FSD 2010)

49 / 49

If mass attached to a spring is made four times, maximum velocity becomes (AJK 2019 GI)

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