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Arpit Mishra Class 12 Tuition trainer in Noida

Arpit Mishra

Sector 137, Noida, India - 201301.

Referral Discount: Get ₹ 500 off when you make a payment to start classes. Get started by Booking a Demo.

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Overview

I have a capability to work harder and i know how to manage a student, how to deal with them and i have a good teaching skills and knowledge. I have a capability of to be a good teacher.

Languages Spoken

Hindi Mother Tongue (Native)

English Basic

Education

GALGOTIAS COLLEGE OF ENGINEERING AND TECHNOLOGY Pursuing

Bachelor of Technology (B.Tech.)

Address

Sector 137, Noida, India - 201301

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Teaches

Class 12 Tuition

Class Location

Online (video chat via skype, google hangout etc)

Student's Home

Tutor's Home

Years of Experience in Class 12 Tuition

1

Board

CBSE

CBSE Subjects taught

Chemistry, Mathematics, Physics, Physical Education, English

Taught in School or College

No

Reviews

No Reviews yet!

FAQs

1. Which school boards of Class 12 do you teach for?

CBSE

2. Have you ever taught in any School or College?

No

3. Which classes do you teach?

I teach Class 12 Tuition Class.

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 1 year.

Answers by Arpit Mishra (4)

Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

Carbon monoxide is poisonous for humans because it can quickly form a complex with human haemoglobin. The complex built between CO and Hb (CO-Hb) is very stable, even more than the oxyhemoglobin complex (O2-Hb) by almost 300 times. Thus, in this state, haemoglobin does not further bind to oxygen. ...more

Carbon monoxide is poisonous for humans because it can quickly form a complex with human haemoglobin. The complex built between CO and Hb (CO-Hb) is very stable, even more than the oxyhemoglobin complex (O2-Hb) by almost 300 times. Thus, in this state, haemoglobin does not further bind to oxygen.

Answers 6 Comments
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Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

(b) Graphite is thermodynamically the most stable form among all the allotropes of carban
Answers 6 Comments
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Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

When boric acid is heated, it converts to metabolic acid, which on further heating gives boron trioxide. Answer: On strong heating, first the Boric acid (H3BO3) breaks up into Metaboric acid (HBO2) and Water (H2O). On further heating, the Metaboric acid breaks up into Boric oxide (B2O3) and Water. ...more

When boric acid is heated, it converts to metabolic acid, which on further heating gives boron trioxide. Answer: On strong heating, first the Boric acid (H3BO3) breaks up into Metaboric acid (HBO2) and Water (H2O). On further heating, the Metaboric acid breaks up into Boric oxide (B2O3) and Water.

Answers 6 Comments
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Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

Boron has three valence electrons so it is supposed to make three bonds in a molecule with hybridisation sp2 as only s and two p orbitals are used in hybridisation because last p orbital is vacant.But the case of diborane is different. In diborane bonding of B atom with H and other B is different. Is... ...more

Boron has three valence electrons so it is supposed to make three bonds in a molecule with hybridisation sp2 as only s and two p orbitals are used in hybridisation because last p orbital is vacant.
But the case of diborane is different. In diborane bonding of B atom with H and other B is different. Is has two three-centre 2-electron bonds, each one consisting of the two boron atoms and a hydrogen atom sharing two electrons.

The molecule has a total of 12 valence electrons, three from each boron atom and one from each hydrogen atom. In this molecule, each of the two boron atoms will be bonded to two hydrogen atoms via covalent bonds. These bonds will use up 8 of the 12 valence electrons.
The other four valence electrons will be shared by the remaining two hydrogen atoms and by the boron atoms, each particle contributing one orbital to the formation of the 3-centre 2-electron bond. Such a relationship is called the banana bond.

Answers 2 Comments
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Teaches

Class 12 Tuition

Class Location

Online (video chat via skype, google hangout etc)

Student's Home

Tutor's Home

Years of Experience in Class 12 Tuition

1

Board

CBSE

CBSE Subjects taught

Chemistry, Mathematics, Physics, Physical Education, English

Taught in School or College

No

No Reviews yet!

Answers by Arpit Mishra (4)

Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

Carbon monoxide is poisonous for humans because it can quickly form a complex with human haemoglobin. The complex built between CO and Hb (CO-Hb) is very stable, even more than the oxyhemoglobin complex (O2-Hb) by almost 300 times. Thus, in this state, haemoglobin does not further bind to oxygen. ...more

Carbon monoxide is poisonous for humans because it can quickly form a complex with human haemoglobin. The complex built between CO and Hb (CO-Hb) is very stable, even more than the oxyhemoglobin complex (O2-Hb) by almost 300 times. Thus, in this state, haemoglobin does not further bind to oxygen.

Answers 6 Comments
Dislike Bookmark

Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

(b) Graphite is thermodynamically the most stable form among all the allotropes of carban
Answers 6 Comments
Dislike Bookmark

Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

When boric acid is heated, it converts to metabolic acid, which on further heating gives boron trioxide. Answer: On strong heating, first the Boric acid (H3BO3) breaks up into Metaboric acid (HBO2) and Water (H2O). On further heating, the Metaboric acid breaks up into Boric oxide (B2O3) and Water. ...more

When boric acid is heated, it converts to metabolic acid, which on further heating gives boron trioxide. Answer: On strong heating, first the Boric acid (H3BO3) breaks up into Metaboric acid (HBO2) and Water (H2O). On further heating, the Metaboric acid breaks up into Boric oxide (B2O3) and Water.

Answers 6 Comments
Dislike Bookmark

Answered on 11/10/2019 Learn CBSE/Class 11/Science/Chemistry/The p-Block Elements/NCERT Solutions/Exercise 11

Boron has three valence electrons so it is supposed to make three bonds in a molecule with hybridisation sp2 as only s and two p orbitals are used in hybridisation because last p orbital is vacant.But the case of diborane is different. In diborane bonding of B atom with H and other B is different. Is... ...more

Boron has three valence electrons so it is supposed to make three bonds in a molecule with hybridisation sp2 as only s and two p orbitals are used in hybridisation because last p orbital is vacant.
But the case of diborane is different. In diborane bonding of B atom with H and other B is different. Is has two three-centre 2-electron bonds, each one consisting of the two boron atoms and a hydrogen atom sharing two electrons.

The molecule has a total of 12 valence electrons, three from each boron atom and one from each hydrogen atom. In this molecule, each of the two boron atoms will be bonded to two hydrogen atoms via covalent bonds. These bonds will use up 8 of the 12 valence electrons.
The other four valence electrons will be shared by the remaining two hydrogen atoms and by the boron atoms, each particle contributing one orbital to the formation of the 3-centre 2-electron bond. Such a relationship is called the banana bond.

Answers 2 Comments
Dislike Bookmark

Arpit Mishra conducts classes in Class 12 Tuition. Arpit is located in Sector 137, Noida. Arpit takes at students Home and Regular Classes- at his Home. He has 1 years of teaching experience . Arpit is pursuing Bachelor of Technology (B.Tech.) from GALGOTIAS COLLEGE OF ENGINEERING AND TECHNOLOGY. HeĀ is well versed in Hindi and English.

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