I am using tesseract in ubuntu command line, the version is 
tesseract 3.04.01
 leptonica-1.73
  libgif 5.1.2 : libjpeg 8d (libjpeg-turbo 1.4.2) : libpng 1.2.54 : libtiff 
4.0.6 : zlib 1.2.8 : libwebp 0.4.4 : libopenjp2 2.1.0

Regarding the part of gibberish text, i had to convert the image to .tif 
format . Then i used tesseract with the .tif image as:
tesseract img.tif outtif
The text generated in my case has notable difference from yours. Your one's 
has a good accuracy. Please tell me how did u achieved so.
Have a look at the text file attachment

On Sunday, February 25, 2018 at 9:48:32 PM UTC+5:30, shree wrote:
>
> which version of tesseract are you using?
>
> See attached results with Tesseract 4 and eng from tessdata_fast
>
>
>
> ShreeDevi
> ____________________________________________________________
> भजन - कीर्तन - आरती @ http://bhajans.ramparivar.com
>
> On Sun, Feb 25, 2018 at 8:16 PM, Zdenko Podobny <[email protected] 
> <javascript:>> wrote:
>
>> https://github.com/tesseract-ocr/tesseract/wiki/ImproveQuality
>>
>> Zdenko
>>
>> 2018-02-25 11:38 GMT+01:00 Dusayanta Prasad <[email protected] 
>> <javascript:>>:
>>
>>> I am try to convert the below image using Tesseract in linux using the 
>>> following command:
>>>
>>> tesseract img.jpg out -l eng
>>>
>>>
>>> <https://lh3.googleusercontent.com/-J5RCuBU_Wro/WpKRMkcPgdI/AAAAAAAADEM/NXaGsh1A-EgqRAC4KVOCK5TBeP_tSy8TwCLcBGAs/s1600/img.jpg>
>>>
>>> and i am getting the result like this
>>>
>>>
>>> <https://lh3.googleusercontent.com/-HMqQ9GLfPHk/WpKR9iiC2GI/AAAAAAAADEU/zvzRu4rai-smuhG1q2tCqwlyzVk5nyjFwCLcBGAs/s1600/text_snap.png>
>>>
>>>
>>>
>>> Please help me out.
>>>
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UNIVERSITY OF ENGINEERING & MANAGEMENT AIPUR
Course Description

'l‘itle of Course: Structural Dynamics & Earthquake Engineering

. x \ ‘ u. ‘l C V l .
lcqll‘nstl (“REC/()1 604C Course Credits: 3
.J— L. c neme: , — ‘

‘ ' -‘ ' - ' ~ e to the
Introductitm: This course examines the basrc theory of Vibrations. The 
students1 are 6311305 See t of
concept of single degree freedom system, transient loading. The subject also 
exp ores 1e co p
seismology and principles ofcarthquakc res1stant des1gn.

Objectives: . '

The students will have a clear idea of the theory of vibrations, response of 
Single degree freedom system
to harmonic loading. The students will also have a clear concept of the 
undamped harmonic excrtatlons
and damped harmonic excitations. T hcy will be exposed to the fundamentals of 
seismology and elastic
rebound theory. The concept of plate tectonics will also be discussed in 
detalls. The students Will be able
to effectively design earthquake resistant structures as per the latest IS Code 
pI‘OVISIOH.

Learning Outcomes:

Knowledge:

The students will have a clear idea ofthe following concepts:

Degrees of freedom, Undampcd single degree freedom system, Dampedsingle degree 
freedom system,
Natural frequency, modes of vibration, Introduction to multiple degree freedom 
system. Undamped
harmonic excitation, Damped Harmonic excitation Duhamel‘s Integral, Response 
due to constant force,
Rectangular load, Introduction to numerical evaluation of Duhamel’s integral of 
undamped system.
Fundamentals: Elastic rebound theory, Plate tectonics, Definitions of magnitude, 
Intensity, Epicenter etc.,
Seismographs, Seismic zoning, Response of Simple Structural Systems. 
Terminology, General principles
and Design criteria, Methods of Analysis, Equivalent lateral? force method of 
Analysis for multi-storied

building as per Indian Standard Code of Practice, Introduction to RCSponse 
Spectrum Method,
Fundamental concepts of Ductilcdetailing.

Course Contents:

Unit 1: Theory of vibrations: Degrees of freedom, Undampcd sin
single degree freedom system, Natural frequency, modes of vibr
freedom system.

gle degree freedom system, Damped
ation, Introduction to multiple degree

'Unit 2: Response of single degree freedom

system due to harmonic loading: Undampcd harmonic
excitation, Damped Harmonic excitation

Unit 3: Response due, to Transient loading: Duhamel’s Integral,

‘ Response due to constant force,
Rectangular load, Introduction to numerical evaluation

of Duhamel’s integral of undamped system.

Unit 4: Elements of seismology: Fundamentals: Elastic rebound theory, Plate 
tectonics, Definitions of
magnitude, Intensity, Epicenter etc.,

Seismographs, Seismic zoning, Response of Simple Structural
Systems.

General principles and Design criteria,
for multistoried building as per Indian
onse Spectrum Method, Fundamental concepts of

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