<--- Back to Details
First PageDocument Content
Alkali metals / Chemical elements / Dietary minerals / Nitro compound / Nitrophenol / Nitrobenzene / Barium hydroxide / Resorcinol / Potassium hydroxide / Chemistry / Hydroxides / Bases
Date: 2009-01-09 16:58:39
Alkali metals
Chemical elements
Dietary minerals
Nitro compound
Nitrophenol
Nitrobenzene
Barium hydroxide
Resorcinol
Potassium hydroxide
Chemistry
Hydroxides
Bases

The Hydroxylation of Aromatic Nitro Compounds by Alkalies

Add to Reading List

Source URL: digital.library.okstate.edu

Download Document from Source Website

File Size: 375,23 KB

Share Document on Facebook

Similar Documents

Picric Acid CHARACTERISTICS October 2001 Revised: September 2007

Picric Acid CHARACTERISTICS October 2001 Revised: September 2007

DocID: 1rqZF - View Document

Development of Novel Methods for Polyfunctionalized Compound Preparation Using Nitro Systems Project Leader NISHIWAKI Nagatoshi, Dr.Eng Professor, Environmental Systems Engineering Course Objective

Development of Novel Methods for Polyfunctionalized Compound Preparation Using Nitro Systems Project Leader NISHIWAKI Nagatoshi, Dr.Eng Professor, Environmental Systems Engineering Course Objective

DocID: 1e5Vo - View Document

NOVEMBER 27 – 30, 2000 IM/EM Technology Implementation in the 21st Century BDNPA/BDNPF SHOWS LONG-TERM AGING STABILITY

NOVEMBER 27 – 30, 2000 IM/EM Technology Implementation in the 21st Century BDNPA/BDNPF SHOWS LONG-TERM AGING STABILITY

DocID: ZdFH - View Document

1. Introduction 1.1- Mannich Reaction The Mannich reaction is three component condensation in which a compound containing an active hydrogen atom is allowed to react with formaldehyde and an NH-amine derivative . Seconda

1. Introduction 1.1- Mannich Reaction The Mannich reaction is three component condensation in which a compound containing an active hydrogen atom is allowed to react with formaldehyde and an NH-amine derivative . Seconda

DocID: VScX - View Document

Chemguide – questions ELECTROPHILIC SUBSTITUTION 1. The diagrams show simplified orbital models of ethene and benzene: a) Both molecules are attacked by electrophiles. What is an electrophile, and why are both of these

Chemguide – questions ELECTROPHILIC SUBSTITUTION 1. The diagrams show simplified orbital models of ethene and benzene: a) Both molecules are attacked by electrophiles. What is an electrophile, and why are both of these

DocID: FJUZ - View Document