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Online Classes Hindi Proficient
English Proficient
Tamil Proficient
The American CollegSANGUe 1998
Bachelor of Science (B.Sc.)
Coimbatore Institute of Technology 2002
Master of Computer Applications (M.C.A.)
Wakad, Pimpri-Chinchwad, India - 411027
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Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ICSE, CBSE
Subjects taught
Science, Physics, Mathematics, Computer Application, Computer Practices
Taught in School or College
No
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ISC/ICSE, CBSE
Subjects taught
Mathematics, Computer Science, Physics
Taught in School or College
No
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ISC/ICSE, CBSE
Subjects taught
Physics, Mathematics, Computer Science
Taught in School or College
No
Answered on 10/01/2019 Learn CBSE - Class 11/Physics
Ask a Question
For a given value of resistance (ohmic conductor), the current flowing through the conductor is directly proportional to the potential difference that exists between the ends of the conductor. V=IR holds true only for ohmic conductors viz., Conductors whose resistance is independent of the voltage applied and is a constant.
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Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ICSE, CBSE
Subjects taught
Science, Physics, Mathematics, Computer Application, Computer Practices
Taught in School or College
No
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ISC/ICSE, CBSE
Subjects taught
Mathematics, Computer Science, Physics
Taught in School or College
No
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Board
ISC/ICSE, CBSE
Subjects taught
Physics, Mathematics, Computer Science
Taught in School or College
No
Answered on 10/01/2019 Learn CBSE - Class 11/Physics
Ask a Question
For a given value of resistance (ohmic conductor), the current flowing through the conductor is directly proportional to the potential difference that exists between the ends of the conductor. V=IR holds true only for ohmic conductors viz., Conductors whose resistance is independent of the voltage applied and is a constant.
Ask a Question
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