C R Park, Delhi, India - 110019.
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Details verified of Karavy Ghosh✕
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Hindi Proficient
English Proficient
University of Delhi 2014
Bachelor of Science (B.Sc.)
University of Delhi 2016
Master of Science (M.Sc.)
University of Delhi 2018
Bachelor of Education (B.Ed.)
CBSE 2018
CTET
British Council 2018
IELTS
C R Park, Delhi, India - 110019
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Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 10 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 9 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching at tuition for 2 years
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 8 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 7 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 6 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
1. Which school boards of Class 10 do you teach for?
CBSE
2. Do you have any prior teaching experience?
Yes
3. Which classes do you teach?
I teach Class 10 Tuition, Class 6 Tuition, Class 7 Tuition, Class 8 Tuition and Class 9 Tuition Classes.
4. Do you provide a demo class?
Yes, I provide a free demo class.
5. How many years of experience do you have?
I have been teaching for 2 years.
Answered on 26/07/2021 Learn CBSE/Class 10/Science
A covalent bond involves sharing electrons, unlike in iconic bonds when one atom donates or gains electrons. This is useful for carbon as it can form compounds quickly. Carbon has atomic number =6; hence, filling atomic orbits according to Bohr's model, 2,4 atoms are present. Hence 4 electrons are present in the outermost orbit. A maximum number of electrons can be 8, so carbon can either gain or lose these 4 electrons, but this requires a lot of energy. So to avoid this, the best possible solution is to 'share' electrons with other atoms.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 10 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 9 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching at tuition for 2 years
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 8 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 7 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Class 6 Tuition
2
Board
CBSE
CBSE Subjects taught
Science
Experience in School or College
B.ed internship and teaching tuition
Taught in School or College
Yes
Answered on 26/07/2021 Learn CBSE/Class 10/Science
A covalent bond involves sharing electrons, unlike in iconic bonds when one atom donates or gains electrons. This is useful for carbon as it can form compounds quickly. Carbon has atomic number =6; hence, filling atomic orbits according to Bohr's model, 2,4 atoms are present. Hence 4 electrons are present in the outermost orbit. A maximum number of electrons can be 8, so carbon can either gain or lose these 4 electrons, but this requires a lot of energy. So to avoid this, the best possible solution is to 'share' electrons with other atoms.
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