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]> wrote:

> https://github.com/tesseract-ocr/tesseract/wiki/ImproveQuality
>
> Zdenko
>
> 2018-02-25 11:38 GMT+01:00 Dusayanta Prasad <[email protected]>:
>
>> 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, JAIPUR
Course Description

Structural Dynamics & Earthquake Engineering
1604C

  
 
 

Title of Cours
Course Code:

L-T Scheme: Course Credits: 3

0

 

Introduction: This course examines the basic theory of vibrations. The students 
are exposed to oe
concept of single degree freedom system, transient loading. The subject also 
explores the concept o
seismology and principles of earthquake resistant design.

 
 

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 excitations
and damped harmonic excitations. They will be exposed to the fundamentals of 
seismology and elastic
rebound theory. The concept of plate tectonics will also be discussed in 
details. The students will be able
to effectively design earthquake resistant structures as per the latest IS Code 
provision.

Learning Outcomes:

Knowledge:

The students will have a clear idea of the following concepts:

Degrees of freedom, Undamped 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 laterdf force method of 
Analysis for multi-storied
building as per Indian Standard Code of Practice, Introduction to Response 
Spectrum Method,
Fundamental concepts of Ductiledetailing.

Course Contents:
Unit 1: Theory of vibrations: Degrees of freedom, Undamped single degree 
freedom system, Damped

single degree freedom system, Natural frequency, modes of vibration, 
Introduction to multiple degree
freedom system.

 

Unit 2: Response of single degree freedom system due to harmonic loading: 
Undamped 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,

magnitude, Intensity, Epicenter ete., Seismographs, Seismic zoning,
Systems.

Plate tectonics, Definitions of
Response of Simple Structural

Unit 5: Principles of earthquake resistant design: Terminology,
Methods of Analysis, Equivalent lateral force method of Analysis

Standard Code of Practice, Introduction to Response
Ductiledetailing,

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

 


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