NH2NH2 + H2O = NH2NH2*H2O - Chemical Equation Balancer
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Balanced Chemical Equation
NH2NH2 + H2O → NH2NH2·H2O Reaction Info Balance Another Equation Step-by-Step Solution Practice BalancingReaction Information Disclaimer
Word Equation
Hydrazine + Water = Hydrazine Hydrate
NH2NH2 + H2O = NH2NH2*H2O is a Synthesis reaction where one mole of Hydrazine [NH2NH2] and one mole of Water [H2O] combine to form one mole of Hydrazine Hydrate [NH2NH2·H2O]
Reaction Type
Synthesis
Reactants
Hydrazine - NH2NH2
Hydrazin Nitrogen Hydride N2H4 H2Nnh2 Diamine Tetrahydridodinitrogen Diazane NH2NH2 Molar Mass NH2NH2 Oxidation NumberWater - H2O
Hydroxic Acid H₂O [Oh2] Aqua Pure Water Hydrogen Oxide Oxidane Dihydrogen Oxide H2O Molar Mass H2O Oxidation Number
Products
Hydrazine Hydrate - NH2NH2·H2O
Hydrazine Hydroxide Hydrazine Monohydrate Hydrazinium Hydroxide NH2NH2*H2O Molar Mass NH2NH2*H2O Oxidation Number
Reaction Expressions
Equilibrium Constant & Reaction Quotient Kc or Q = ( [NH2NH2·H2O] ) / ( [NH2NH2] [H2O] )(assuming all reactants and products are aqueous. substitutue 1 for any solids/liquids, and Psubstance for gases.) Rate of Reaction rate = -(Δ[NH2NH2] / Δt) = -(Δ[H2O] / Δt) = (Δ[NH2NH2·H2O] / Δt)(assuming constant volume in a closed system and no accumulation of intermediates or side products) Calculate Reaction Stoichiometry Calculate Limiting Reagent Chemical Equation Balancer 🛠️ Balance Equation ➜Instructions
To balance a chemical equation, enter an equation of a chemical reaction and press the Balance button. The balanced equation will appear above.
- Use uppercase for the first character in the element and lowercase for the second character. Examples: Fe, Au, Co, Br, C, O, N, F.
- Ionic charges are not yet supported and will be ignored.
- Replace immutable groups in compounds to avoid ambiguity. For example, C6H5C2H5 + O2 = C6H5OH + CO2 + H2O will not be balanced, but XC2H5 + O2 = XOH + CO2 + H2O will.
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- You can use parenthesis () or brackets [].
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Balance any equation or reaction using this chemical equation balancer! Find out what type of reaction occured.
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Examples
- Hydrazine + Water = Hydrazine Hydrate
- NH2NH2 + H2O = NH2NH3 + OH
- NH2NH2 + H2O = NH3NH2 + HO
- NH2NH2 + H2O = NH3NH2 + OH
- NH2NH2 + H2O = NHNH2 + H3O
- NH2NH2 + H2O = OH + NH2NH3
- HNO3 + CrO = Cr(NO3)3 + NO + H2O
- Fe + Br2 = Br2 + FeBr3
- LiOH + F = LiF + H2O + O2
- C17H35COONa + Pb(CH3COO)2 = (C17H35COO)2Pb + NaCH3COO
- Mn2O7 + H2O = MnOH + O2
- NaIO3 + H2S = NaI + S + H2O
- Mn + O2 = Mn2O8
- Recently Balanced Equations
Balance NH2NH2 + H2O = NH2NH2*H2O Using the Algebraic Method
To balance the equation NH2NH2 + H2O = NH2NH2*H2O using the algebraic method step-by-step, you must have experience solving systems of linear equations. The most common methods are substitution/elimination and linear algebra, but any similar method will work.
Step 1: Label Each Compound With a Variable
Label each compound (reactant or product) in the equation with a variable to represent the unknown coefficients.
a NH2NH2 + b H2O = c NH2NH2·H2O
Step 2: Create a System of Equations
Create an equation for each element (N, H, O) where each term represents the number of atoms of the element in each reactant or product.
N: 2a + 0b = 2c H: 4a + 2b = 6c O: 0a + 1b = 1cStep 3: Solve For All Variables
Use substitution, Gaussian elimination, or a calculator to solve for each variable.
Using Substitution or Elimination- 2a - 2c = 0
- 4a + 2b - 6c = 0
- 1b - 1c = 0
Use your graphing calculator's rref() function (or an online rref calculator) to convert the following matrix into reduced row-echelon-form:
[ 2 0 -2 0] [ 4 2 -6 0] [ 0 1 -1 0] The resulting matrix can be used to determine the coefficients. In the case of a single solution, the last column of the matrix will contain the coefficients. Convert to RREF and Solve Step-by-StepSimplify the result to get the lowest, whole integer values.
- a = 1 (NH2NH2)
- b = 1 (H2O)
- c = 1 (NH2NH2*H2O)
Step 4: Substitute Coefficients and Verify Result
Count the number of atoms of each element on each side of the equation and verify that all elements and electrons (if there are charges/ions) are balanced.
NH2NH2 + H2O = NH2NH2·H2OReactants | Products | ||
---|---|---|---|
N | 2 | 2 | ✔️ |
H | 6 | 6 | ✔️ |
O | 1 | 1 | ✔️ |
Balance NH2NH2 + H2O = NH2NH2*H2O Using Inspection
The law of conservation of mass states that matter cannot be created or destroyed, which means there must be the same number atoms at the end of a chemical reaction as at the beginning. To be balanced, every element in NH2NH2 + H2O = NH2NH2*H2O must have the same number of atoms on each side of the equation. When using the inspection method (also known as the trial-and-error method), this principle is used to balance one element at a time until both sides are equal and the chemical equation is balanced.
Step 1: Count the number of each element on the left and right hand sides
Reactants (Left Hand Side) | Products (Right Hand Side) | |||||
---|---|---|---|---|---|---|
Reactants | Products | |||||
NH2NH2 | H2O | Total | NH2NH2·H2O | Total | ||
N | 2 | 2 | 2 | 2 | ✔️ | |
H | 4 | 2 | 6 | 6 | 6 | ✔️ |
O | 1 | 1 | 1 | 1 | ✔️ |
The number of atoms of each element on both sides of NH2NH2 + H2O = NH2NH2*H2O is equal which means that the equation is already balanced and no additional work is needed.
Practice Balancing
NH2NH2 - + + H2O - + = NH2NH2·H2O - +Reactants | Products | ||
---|---|---|---|
N | 2 | 2 | ✔️ |
H | 6 | 6 | ✔️ |
O | 1 | 1 | ✔️ |
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