Table of Content
2Cu(OH)2 | + | C3H7CHO | → | 2H2O | + | Cu2O | + | C3H7COOH | |
copper(ii) hydroxide | Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde | water | copper(i) oxide | Butyric acid; Butanoic acid; n-Butyric acid; normal Butyric acid; 3-Methylpropionic acid; 3-Methylpropanoic acid | |||||
(dung dịch) | (dd) | (lỏng) | (kt) | (lỏng) | |||||
(không màu) | (không màu) | (đỏ gạch) | (không màu) | ||||||
2 | 1 | 2 | 1 | 1 | Hệ số | ||||
Nguyên - Phân tử khối (g/mol) | |||||||||
Số mol | |||||||||
Khối lượng (g) |
No information found for this chemical equation
Explanation: The ideal environmental conditions for a reaction, such as temperature, pressure, catalysts, and solvent. Catalysts are substances that speed up the pace (velocity) of a chemical reaction without being consumed or becoming part of the end product. Catalysts have no effect on equilibrium situations.
In a full sentence, you can also say Cu(OH)2 (copper(ii) hydroxide) reacts with C3H7CHO (Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde) and produce H2O (water) and Cu2O (copper(i) oxide) and C3H7COOH (Butyric acid; Butanoic acid; n-Butyric acid; normal Butyric acid; 3-Methylpropionic acid; 3-Methylpropanoic acid)
This equation does not have any specific information about phenomenon.
In this case, you just need to observe to see if product substance C3H7COOH (Butyric acid; Butanoic acid; n-Butyric acid; normal Butyric acid; 3-Methylpropionic acid; 3-Methylpropanoic acid), appearing at the end of the reaction.
Or if any of the following reactant substances C3H7CHO (Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde), disappearing
We no further information about this chemical reactions.
copper(ii) hydroxide
2C6H12O6 + Cu(OH)2 → 2H2O + (C6H11O6)2Cu Cu(OH)2 + 2C12H22O11 → H2O + 2Cu2O + C6H12O7 2CH3COOH + Cu(OH)2 → 2H2O + (CH3COO)2Cu View all equations with Cu(OH)2 as reactantButanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde
2AgNO3 + H2O + 3NH3 + C3H7CHO → 2Ag + 2NH4NO3 + C3H7COONH4 2Cu(OH)2 + C3H7CHO → 2H2O + Cu2O + C3H7COOH View all equations with C3H7CHO as reactant
Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde
CO + H2 + CH3-CH=CH2 → C3H7CHO View all equations with C3H7CHO as product
Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde
CO + H2 + CH3-CH=CH2 → C3H7CHO View all equations with C3H7CHO as product
Butanal; 1-Butanal; Butyraldehyde; n-Butyraldehyde; Butyric aldehyde; NCI-C-56291; Butyral; Butal; Butaldehyde; Butane-1-one; 3-Methylpropanal; 1-Butanone; Butanaldehyde
CO + H2 + CH3-CH=CH2 → C3H7CHO View all equations with C3H7CHO as product
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