Details verified of Preeti C.✕
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Bengali Mother Tongue (Native)
English Proficient
Hindi Proficient
Sister nivedita university (techno india), newtown Pursuing
Bachelor of Technology (B.Tech.)
Brookefield, Bangalore, India - 560037
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Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 10 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Social Science, Science, Computer Practices, Chemistry, Biology, Computer Application, Bengali, English, Physics, Mathematics, EVS
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class I-V Tuition
3
Fees
₹ 500.0 per hour
Board
ICSE, CBSE
Subjects taught
Mathematics, Social studies, Science, Computer Science, Bengali, EVS, Computers
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 6 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Chemistry, EVS, Biology, Science, Mathematics, Computers, English, Computer Science, Bengali, Physics
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 7 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Science, Chemistry, Computer Science, EVS, Physics, Computers, Bengali, Biology, English, Social science, Mathematics
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 8 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Computers, Social science, Biology, Bengali, Mathematics, Science, Physics, Computer Science, English, Chemistry, EVS
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 9 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Physics, English, Mathematics, Biology, Chemistry, EVS, Computer Practices, Science, Social Science, Bengali, Computer Application
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 11 Tuition
1
Board
State
Subjects taught
Computer Science, Mathematics, English, Bengali
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 12 Tuition
1
Board
State
Subjects taught
Bengali, Mathematics, English, Computer Science
Taught in School or College
No
Answered on 16/10/2019 Learn CBSE - Class 12/Physics/Unit 1-Electrostatics/ELECTROSTATIC POTENTIAL AND CAPACITANCE/NCERT Solutions/Exercise 2
Ask a Question
If the capacitors are connected in parallel, then the equivalent capacitance of capacitors is given by Ceq = C₁ + C₂ + C₃ + .......
Here , C₁ = 2pF, C₂ = 3pF and C₃ = 4pF
so, Ceq = C₁ + C₂ + C₃
Ceq = 2pF + 3pF + 4pF
= 9pF
(b) since the capacitors are in parallel, so the potential difference across each of them is same. e.g., V₁ = V₂ = V₃ = V = 100V
So, charge stored on capacitors are
Q₁ = C₁V = 2pF × 100V = 200pC
Q₂ = C₂V = 3pF × 100V = 300pC
Q₃ = C₃V = 4pF × 100 = 400pC
If the capacitors are connected in parallel then equivalent capacitance of capacitors is given by Ceq = C₁ + C₂ + C₃ + .......
Here , C₁ = 2pF, C₂ = 3pF and C₃ = 4pF
so, Ceq = C₁ + C₂ + C₃
Ceq = 2pF + 3pF + 4pF
= 9pF
(b) since the capacitors are in parallel, so the potential difference across each of them is same. e.g., V₁ = V₂ = V₃ = V = 100V
So, charge stored on capacitors are
Q₁ = C₁V = 2pF × 100V = 200pC
Q₂ = C₂V = 3pF × 100V = 300pC
Q₃ = C₃V = 4pF × 100 = 400pC
Ask a Question
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Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 10 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Social Science, Science, Computer Practices, Chemistry, Biology, Computer Application, Bengali, English, Physics, Mathematics, EVS
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class I-V Tuition
3
Fees
₹ 500.0 per hour
Board
ICSE, CBSE
Subjects taught
Mathematics, Social studies, Science, Computer Science, Bengali, EVS, Computers
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 6 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Chemistry, EVS, Biology, Science, Mathematics, Computers, English, Computer Science, Bengali, Physics
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 7 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Science, Chemistry, Computer Science, EVS, Physics, Computers, Bengali, Biology, English, Social science, Mathematics
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 8 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Computers, Social science, Biology, Bengali, Mathematics, Science, Physics, Computer Science, English, Chemistry, EVS
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 9 Tuition
1
Board
ICSE, State, CBSE
Subjects taught
Physics, English, Mathematics, Biology, Chemistry, EVS, Computer Practices, Science, Social Science, Bengali, Computer Application
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 11 Tuition
1
Board
State
Subjects taught
Computer Science, Mathematics, English, Bengali
Taught in School or College
No
Class Location
Online class via Zoom
Student's Home
Tutor's Home
Years of Experience in Class 12 Tuition
1
Board
State
Subjects taught
Bengali, Mathematics, English, Computer Science
Taught in School or College
No
Answered on 16/10/2019 Learn CBSE - Class 12/Physics/Unit 1-Electrostatics/ELECTROSTATIC POTENTIAL AND CAPACITANCE/NCERT Solutions/Exercise 2
Ask a Question
If the capacitors are connected in parallel, then the equivalent capacitance of capacitors is given by Ceq = C₁ + C₂ + C₃ + .......
Here , C₁ = 2pF, C₂ = 3pF and C₃ = 4pF
so, Ceq = C₁ + C₂ + C₃
Ceq = 2pF + 3pF + 4pF
= 9pF
(b) since the capacitors are in parallel, so the potential difference across each of them is same. e.g., V₁ = V₂ = V₃ = V = 100V
So, charge stored on capacitors are
Q₁ = C₁V = 2pF × 100V = 200pC
Q₂ = C₂V = 3pF × 100V = 300pC
Q₃ = C₃V = 4pF × 100 = 400pC
If the capacitors are connected in parallel then equivalent capacitance of capacitors is given by Ceq = C₁ + C₂ + C₃ + .......
Here , C₁ = 2pF, C₂ = 3pF and C₃ = 4pF
so, Ceq = C₁ + C₂ + C₃
Ceq = 2pF + 3pF + 4pF
= 9pF
(b) since the capacitors are in parallel, so the potential difference across each of them is same. e.g., V₁ = V₂ = V₃ = V = 100V
So, charge stored on capacitors are
Q₁ = C₁V = 2pF × 100V = 200pC
Q₂ = C₂V = 3pF × 100V = 300pC
Q₃ = C₃V = 4pF × 100 = 400pC
Ask a Question
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