Kota, Kota, India - 324005.
Details verified of Prachi G.✕
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Hindi Mother Tongue (Native)
English Proficient
RTU, Kota Pursuing
Bachelor of Technology (B.Tech.)
Kota, Kota, India - 324005
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Class Location
Online (video chat via skype, google hangout etc)
Student's Home
Tutor's Home
Board
CBSE, State, ISC/ICSE
ISC/ICSE Subjects taught
Computer Science, Hindi, German, Physics, English, Political Science, Chemistry, English Literature, Biology, Geography, Mathematics, Physical Education, History
CBSE Subjects taught
Physics, Geography, History, Physical Education, Computer Science, Political Science, Biology, English, Mathematics, Economics, Chemistry, Hindi
Taught in School or College
No
State Syllabus Subjects taught
Geography, Computer Science, Biology, Chemistry, History, Mathematics, English, Electronics, Physics, Hindi
Class Location
Online (video chat via skype, google hangout etc)
Student's Home
Tutor's Home
Board
CBSE, State, ISC/ICSE
ISC/ICSE Subjects taught
Computer Science, Hindi, German, Physics, English, Political Science, Chemistry, English Literature, Biology, Geography, Mathematics, Physical Education, History
CBSE Subjects taught
Physics, Geography, History, Physical Education, Computer Science, Political Science, Biology, English, Mathematics, Economics, Chemistry, Hindi
Taught in School or College
No
State Syllabus Subjects taught
Geography, Computer Science, Biology, Chemistry, History, Mathematics, English, Electronics, Physics, Hindi
1. Which school boards of Class 12 do you teach for?
CBSE, State, ISC/ICSE
2. Have you ever taught in any School or College?
No
3. Which classes do you teach?
I teach Class 11 Tuition and Class 12 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 less than a year.
Answered on 29/09/2018 Learn CBSE/Class 11/Science/Physics
Mass of the hollow cylinder, m = 3 kg
Radius of the hollow cylinder, r = 40 cm = 0.4 m
Applied force, F = 30 N
The moment of inertia of the hollow cylinder about its geometric axis:
I = mr2
= 3 × (0.4)2 = 0.48 kg m2
Torque, τ = F × r = 30 × 0.4 = 12 Nm
For angular acceleration α, torque is also given by the relation:
τ = Iα
α = τ / I = 12 / 0.48 = 25 rad s-2
Linear acceleration = τα = 0.4 × 25 = 10 m s–2
Class Location
Online (video chat via skype, google hangout etc)
Student's Home
Tutor's Home
Board
CBSE, State, ISC/ICSE
ISC/ICSE Subjects taught
Computer Science, Hindi, German, Physics, English, Political Science, Chemistry, English Literature, Biology, Geography, Mathematics, Physical Education, History
CBSE Subjects taught
Physics, Geography, History, Physical Education, Computer Science, Political Science, Biology, English, Mathematics, Economics, Chemistry, Hindi
Taught in School or College
No
State Syllabus Subjects taught
Geography, Computer Science, Biology, Chemistry, History, Mathematics, English, Electronics, Physics, Hindi
Class Location
Online (video chat via skype, google hangout etc)
Student's Home
Tutor's Home
Board
CBSE, State, ISC/ICSE
ISC/ICSE Subjects taught
Computer Science, Hindi, German, Physics, English, Political Science, Chemistry, English Literature, Biology, Geography, Mathematics, Physical Education, History
CBSE Subjects taught
Physics, Geography, History, Physical Education, Computer Science, Political Science, Biology, English, Mathematics, Economics, Chemistry, Hindi
Taught in School or College
No
State Syllabus Subjects taught
Geography, Computer Science, Biology, Chemistry, History, Mathematics, English, Electronics, Physics, Hindi
Answered on 29/09/2018 Learn CBSE/Class 11/Science/Physics
Mass of the hollow cylinder, m = 3 kg
Radius of the hollow cylinder, r = 40 cm = 0.4 m
Applied force, F = 30 N
The moment of inertia of the hollow cylinder about its geometric axis:
I = mr2
= 3 × (0.4)2 = 0.48 kg m2
Torque, τ = F × r = 30 × 0.4 = 12 Nm
For angular acceleration α, torque is also given by the relation:
τ = Iα
α = τ / I = 12 / 0.48 = 25 rad s-2
Linear acceleration = τα = 0.4 × 25 = 10 m s–2
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