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Amitav Sharma

Atta Market, Noida, India - 201301

Amitav Sharma Class 9 Tuition trainer in Noida

Amitav Sharma

Imparting knowledge is my passion

Atta Market, Noida, India - 201301.

2.8

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Education

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Overview

Let me give the opportunity to introduce myself. My name is Amitav and I have been working as a Manager with a reputed MNC firm for last 08 years. I have been imparting knowledge to the students for last 05 years as a part time trainer. I have been teaching Science, Maths and English for class 8, 9 and 10.

Languages Spoken

Hindi

English

Education

XLRI JAMSHEDPUR (CORRESPONDENCE) 2005

Master of Business Administration (M.B.A.)

Address

Atta Market, Noida, India - 201301

Verified Info

Phone Verified

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Class 9 Tuition

Class Location

Student's Home

Tutor's Home

Online (video chat via skype, google hangout etc)

Years of Experience in Class 9 Tuition

5

Board

CBSE, State, International Baccalaureate, ICSE

IB Subjects taught

Chemistry, Biology, Physics

ICSE Subjects taught

Biology, Physics, Chemistry

Taught in School or College

Yes

Teaching Experience in detail in Class 9 Tuition

NA

Reviews

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FAQs

1. Which school boards of Class 10 do you teach for?

CBSE, State, International Baccalaureate and others

2. Do you have any prior teaching experience?

Yes

3. Which classes do you teach?

I teach Class 10 Tuition and Class 9 Tuition Classes.

4. Do you provide a demo class?

No, I don't provide a demo class.

5. How many years of experience do you have?

I have been teaching for 5 years.

Answers by Amitav Sharma (7)

Answered on 16/02/2016 Tuition/Class IX-X Tuition

Hi I am going to start a batch of Science (Online Class) for class 9 and Class 10. First two classes are trial classes. Please let me know if you are interested. Fees is 1500/Month/Subject.
Answers 4 Comments
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Answered on 03/02/2015 Tuition/Class IX-X Tuition

The Centripetal force formula is given by F =MV^2/R
Answers 11 Comments
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Answered on 03/02/2015 Tuition/Class IX-X Tuition

Centripetal Force Consider a stone of mass m tied to thread if we whirl it we could see it moving in a circular path with a velocity assumed as v. So what keeps the stone move towards the centre? This is what we call Centripetal force. The Centripetal force is the force which keeps the body move... ...more
Centripetal Force Consider a stone of mass m tied to thread if we whirl it we could see it moving in a circular path with a velocity assumed as v. So what keeps the stone move towards the centre? This is what we call Centripetal force. The Centripetal force is the force which keeps the body move along the axis of rotation and this force is acting always towards the center. The Centripetal force formula is given by Where m = mass of the moving body, V = Velocity with which it is moving, r = radius of circular path. The Centripetal force is due to the Centripetal acceleration and is given by Where ac is the Centripetal acceleration and is given by v 2 r . The Centripetal force is expressed in Kgm/s2 or N. Centrifugal Force/Accelaration The acceleration is the rate of change in the velocity of a moving body with respect to the given time. The acceleration can be classified according to the type of velocity and speed. If the body is in constant velocity then it is in the condition of constant acceleration because there is no change in velocity in the given time period. If a body is moved on circular path then it has a rotational acceleration due to rotational acceleration. Similarly, some other types of accelerations are centripetal and centrifugal acceleration. Here we are discussing about the centrifugal acceleration. The centrifugal acceleration is the acceleration that is on the curved path. When a car takes a U turn on the curved way then it does not fall towards the centre. This is due to the centrifugal acceleration which makes the motion of the car.
Answers 11 Comments
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Answered on 03/02/2015 Tuition/Class IX-X Tuition

A wave can be described as a disturbance that travels through a medium from one location to another location. Consider a slinky wave as an example of a wave. Wave motion transfers energy from one point to another, often with no permanent displacement of the particles of the medium that is, with little... ...more
A wave can be described as a disturbance that travels through a medium from one location to another location. Consider a slinky wave as an example of a wave. Wave motion transfers energy from one point to another, often with no permanent displacement of the particles of the medium—that is, with little or no associated mass transport.
Answers 14 Comments
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Answered on 03/02/2015 Tuition/Class IX-X Tuition

Following is the mirror equation: 1/V+1/U=1/F Where V= Image distance U=Object Distance F=Focal Length
Answers 25 Comments
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Class 9 Tuition 2.8

Class Location

Student's Home

Tutor's Home

Online (video chat via skype, google hangout etc)

Years of Experience in Class 9 Tuition

5

Board

CBSE, State, International Baccalaureate, ICSE

IB Subjects taught

Chemistry, Biology, Physics

ICSE Subjects taught

Biology, Physics, Chemistry

Taught in School or College

Yes

Teaching Experience in detail in Class 9 Tuition

NA

Class 10 Tuition 2.8

Class Location

Student's Home

Tutor's Home

Online (video chat via skype, google hangout etc)

Years of Experience in Class 10 Tuition

5

Board

CBSE, State, International Baccalaureate, ICSE

IB Subjects taught

Chemistry, Biology, Physics

ICSE Subjects taught

Biology, Physics, Chemistry

Taught in School or College

Yes

Teaching Experience in detail in Class 10 Tuition

NA

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Answers by Amitav Sharma (7)

Answered on 16/02/2016 Tuition/Class IX-X Tuition

Hi I am going to start a batch of Science (Online Class) for class 9 and Class 10. First two classes are trial classes. Please let me know if you are interested. Fees is 1500/Month/Subject.
Answers 4 Comments
Dislike Bookmark

Answered on 03/02/2015 Tuition/Class IX-X Tuition

The Centripetal force formula is given by F =MV^2/R
Answers 11 Comments
Dislike Bookmark

Answered on 03/02/2015 Tuition/Class IX-X Tuition

Centripetal Force Consider a stone of mass m tied to thread if we whirl it we could see it moving in a circular path with a velocity assumed as v. So what keeps the stone move towards the centre? This is what we call Centripetal force. The Centripetal force is the force which keeps the body move... ...more
Centripetal Force Consider a stone of mass m tied to thread if we whirl it we could see it moving in a circular path with a velocity assumed as v. So what keeps the stone move towards the centre? This is what we call Centripetal force. The Centripetal force is the force which keeps the body move along the axis of rotation and this force is acting always towards the center. The Centripetal force formula is given by Where m = mass of the moving body, V = Velocity with which it is moving, r = radius of circular path. The Centripetal force is due to the Centripetal acceleration and is given by Where ac is the Centripetal acceleration and is given by v 2 r . The Centripetal force is expressed in Kgm/s2 or N. Centrifugal Force/Accelaration The acceleration is the rate of change in the velocity of a moving body with respect to the given time. The acceleration can be classified according to the type of velocity and speed. If the body is in constant velocity then it is in the condition of constant acceleration because there is no change in velocity in the given time period. If a body is moved on circular path then it has a rotational acceleration due to rotational acceleration. Similarly, some other types of accelerations are centripetal and centrifugal acceleration. Here we are discussing about the centrifugal acceleration. The centrifugal acceleration is the acceleration that is on the curved path. When a car takes a U turn on the curved way then it does not fall towards the centre. This is due to the centrifugal acceleration which makes the motion of the car.
Answers 11 Comments
Dislike Bookmark

Answered on 03/02/2015 Tuition/Class IX-X Tuition

A wave can be described as a disturbance that travels through a medium from one location to another location. Consider a slinky wave as an example of a wave. Wave motion transfers energy from one point to another, often with no permanent displacement of the particles of the medium that is, with little... ...more
A wave can be described as a disturbance that travels through a medium from one location to another location. Consider a slinky wave as an example of a wave. Wave motion transfers energy from one point to another, often with no permanent displacement of the particles of the medium—that is, with little or no associated mass transport.
Answers 14 Comments
Dislike Bookmark

Answered on 03/02/2015 Tuition/Class IX-X Tuition

Following is the mirror equation: 1/V+1/U=1/F Where V= Image distance U=Object Distance F=Focal Length
Answers 25 Comments
Dislike Bookmark

Contact

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Amitav Sharma describes himself as Imparting knowledge is my passion. He conducts classes in Class 10 Tuition and Class 9 Tuition. Amitav is located in Atta Market, Noida. Amitav takes Online Classes- via online medium. He has 5 years of teaching experience . Amitav has completed Master of Business Administration (M.B.A.) from XLRI JAMSHEDPUR (CORRESPONDENCE) in 2005. He is well versed in Hindi and English.

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