pH Calculator
Calculate pH using either the concentration, weight, or volume method.
1. Concentration Method
2. Weight Method (Solid Chemicals)
3. Volume Method (Liquid Chemicals)
Shop our HH SCIENCE pH sensors
Use this pH Calculator to estimate solution acidity from concentration, weight, or volume when dealing with dilute, monoprotic weak acids/bases (inputs use pKₐ, convert to Kₐ = 10⁻ᵖᴷᵃ, and apply the weak-acid/base approximation, e.g., [H⁺] ≈ √(Kₐ·C) → pH = −log₁₀[H⁺]), keeping in mind that temperature, ionic strength/activities, and dilution can shift results. For the most accurate pH, solve the full equilibrium with charge/mass balance (or use Henderson–Hasselbalch for buffers near pH ≈ pKₐ, strong-acid/base limits pH ≈ −log C or pH ≈ 14 + log C, and polyprotic systems with stepwise pKₐ’s), and use this quick calculator primarily for screening and recipe prep before detailed validation.
How does HH SCIENCE pH calculator work?
1) Concentration mode (you already know molarity, M)
- Choose the chemical from the dropdown (this loads its formula, molar mass, and pKₐ).
- Enter the solution concentration (mol/L) in “Concentration of solution (mol/L)”.
- Click CALCULATE to compute pH using the weak acid/base approximation (internally: Kₐ=10⁻ᵖᴷᵃ, [H⁺]≈√(Kₐ·C) for acids; a similar relation is used for bases).
- Read the result under “pH” and verify the context: very dilute or very concentrated solutions, polyprotic acids, or strong acids/bases can deviate—treat this as a quick estimate.
Tip: For buffers near pH ≈ pKₐ, Henderson–Hasselbalch often gives a better estimate if you know the [base]/[acid] ratio.
2) Weight mode (you weighed a solid and know final volume)
- Choose the chemical (loads formula, molar mass, pKₐ).
Enter the solid weight (grams) you dissolved.
Enter the total solution volume (liters) after dilution. - Click CALCULATE; the tool converts to molarity = mass / (MW × volume), then estimates pH from pKₐ as above.
- Check plausibility: If you used a strong acid/base (e.g., HCl, NaOH), the simple weak-equilibrium formula may over/underestimate; rule-of-thumb baselines are pH ≈ −log₁₀ C for strong acids and pOH ≈ −log₁₀ C → pH = 14 − pOH for strong bases.
Tip: For polyprotic acids (citric, phosphoric), the first dissociation dominates at low pH, but full accuracy needs stepwise equilibria; use this as a first pass.
3) Volume mode (you dispensed a liquid reagent from a stock)
- Choose the chemical (loads formula, molar mass, pKₐ).
- Enter the stock concentration (mol/L) of the liquid reagent.
**Enter the volume added (liters) of that reagent to your mix.
**Enter the total final volume (liters) after mixing/dilution. - Click CALCULATE; the tool computes final molarity = (C_stock × V_added) / V_total, then estimates pH using pKₐ.
Interpretation: If you are mixing acid with base (or vice versa), this simple mode does not do stoichiometric neutralization—use it when a single acid/base defines the solution. For acid–base mixtures or buffers, switch to buffer math (Henderson–Hasselbalch, charge balance) for accuracy.
General tips for all modes
- Keep units consistent (L, mol/L, g).
- Results assume 25 °C and modest ionic strength; temperature or high ionic strength can shift pKₐ and activities.
- For buffers near pH ≈ pKₐ, knowing the [A⁻]/[HA] ratio yields better predictions; for capacity questions use β ≈ 2.303·C·(Kₐ[H⁺])/(Kₐ+[H⁺])².
- Treat outputs as screening estimates; for critical work, solve the full equilibrium (mass/charge balance) or validate with a calibrated pH meter.
HH SCIENCE pH Sensors
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- Designed for 20–300 μS/cm conductivity range
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SKU: HH2500HFHH2500HF Water Online Process pH Electrode for Hydrofluoric Acid Applications Electrode | HF-Resistant Glass Membrane |Reinforced Cylindrical pH Glass Membrane
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Key Features:
- HF-resistant membrane handles up to 5000 ppm HF
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SKU: HH2800HH2800 Water Online Process pH Electrode| High-Temperature Process Electrode | HT High-Temperature pH Membrane
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Key Features:
- Withstands temperatures up to 150°C
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SKU: HH2800CHH2800C Water Online Process pH Electrode | Complex High-Temperature Process Electrode | HT High-Temperature pH Membrane
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- Withstands extreme high-temperature and chemical stress
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SKU: HH2800LHH2800L Water Online Process pH Electrode | Low Temperature Medium Solution Electrode | LT Low-Temperature pH Membrane
US$400.00Original price was: US$400.00.US$300.00Current price is: US$300.00.Select optionsA configurable pH electrode for cold aqueous process liquids operating down to −25 °C. The HH2800L combines a low-temperature PCG reference electrolyte, HA glass membrane, double-junction reference, and PG13.5 connection for refrigerated brines, compatible antifreeze solutions, cold surface water, and chemical processes.
Key Features:
- Reliable performance in temperatures as low as -25°C
- Dual-junction design resists contamination
- IP68-rated for immersion use
- Chemically resistant to strong acids, alkalis, and solvents
- Minimal temperature and signal drift over long-term operation
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SKU: HH2800PHH2800P Pure Water Online Process pH Electrode for High-Temperature & High-Pressure| Glass Body Electrodes | PTFE Double Junction
US$400.00Original price was: US$400.00.US$300.00Current price is: US$300.00.Select optionsAn ultra-low-impedance pH electrode for high-purity water with conductivity from 0.5 to 100 μS/cm and temperatures up to 130 °C. The HH2800P combines an HSL glass membrane, annular PTFE junction, low-viscosity SRG electrolyte, and double-junction reference for controlled high-temperature water systems.
Key Features:
- Designed for low-conductivity water (0.5–100 μS/cm)
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- IP68-rated waterproof for submersion
- Reinforced membrane for impact durability and fast response
