CWEA Laboratory Analyst Grade 3 Certification
Exam QUESTIONS AND DETAILED SOLUTIONS JUST
RELEASED
CWEA Laboratory Analyst Grade 3 Certification Exam
10 Most Tested Coverage Areas
1. Wet Chemistry Methods - BOD₅ (2.0-7.0 mg/L DO depletion required), COD (dichromate
digestion), alkalinity (buffering capacity), chloride titration (argentometric), and solids analysis
(TSS by filtration/gravimetric)
2. Laboratory Instrumentation - ICP-OES (internal standards for matrix correction),
spectrophotometry (absorbance at max wavelength), chromatography (resolution factors), pH
meters (calibration and storage), and turbidity (nephelometry at 90 degrees)
3. Microbiological Analysis - Total coliform holding time (≤6°C, 8 hours max), serial dilution and
plating, fecal coliform incubation at 44.5°C, membrane filtration, and heterotrophic plate counts
4. Quality Assurance & Quality Control - Method blanks, matrix spikes, control charts, LCS
recovery (80-120%), RPD limits (COD ≤20%), standard curve R² (≥0.995), and MDL determination
5. Sample Collection & Preservation - Chain of custody documentation, holding times (BOD 48
hours, metals HNO₃ pH<2, coliform at 4°C with sodium thiosulfate), and composite vs. grab
sampling
6. Regulatory Compliance - NPDES requirements, EPA methods, Title 22, discharge permits, and
reporting standards
7. Data Analysis & Calculations - Significant figures, reporting limits, method detection limits
(MDL), normality calculations, and cost per test analysis
8. Laboratory Safety - Acid addition protocol (add acid slowly to water), fume hood use, PPE
requirements, chemical handling, and waste disposal
9. Supervision & Management - Staff rotation for cross-training, budget preparation and
monitoring, workflow optimization, and report writing
10. Process Control & Treatment Plant Operations - Dechlorination calculations (SO₂ dosing),
sludge production calculations, chlorine residual monitoring, and nitrification indicators
1. A laboratory analyst performing a BOD₅ test observes dissolved oxygen depletion of only 0.8 mg/L
after the 5-day incubation period. What is the most appropriate corrective action to take for this
analysis?
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A. Report the result as zero since no significant depletion occurred
B. Increase the incubation temperature to speed up microbial activity
C. Decrease the dilution factor to reduce the sample concentration
D. Increase the sample volume in the dilution to achieve proper DO depletion
Correct Answer: D
Rationale: Acceptable BOD depletion for accurate measurement is 2.0–7.0 mg/L. Insufficient depletion
of 0.8 mg/L requires increasing the sample concentration to obtain measurable oxygen demand .
2. In ICP-OES analysis, what is the primary purpose of using internal standards during the analytical
procedure?
A. To increase the plasma temperature for better atomization
B. To improve the color intensity of the emitted light signal
C. To correct for matrix effects and instrumental drift over time
D. To replace the need for calibration standards entirely
Correct Answer: C
Rationale: Internal standards compensate for physical and matrix interferences and signal drift during
analysis, improving accuracy .
3. According to regulatory standards, what is the maximum holding time for total coliform samples
when stored at ≤6°C?
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A. 2 hours from the time of sample collection
B. 8 hours (preferably ≤6 hours) from collection
C. 24 hours with proper preservation methods
D. 48 hours for microbiological samples
Correct Answer: B
Rationale: Regulatory standards require microbiological samples to be analyzed within 8 hours,
preferably within 6 hours, when stored at ≤6°C .
4. A laboratory analyst obtains a standard curve with an R² value of 0.89 for a quantitative
environmental analysis. What is the most appropriate action?
A. Proceed with sample analysis using the existing curve
B. Adjust the reporting limit to accommodate the poor correlation
C. Recalibrate and prepare new standards to achieve better correlation
D. Dilute all samples to bring them within the curve range
Correct Answer: C
Rationale: R² must typically be ≥0.995 for quantitative environmental analysis. A value of 0.89 indicates
unacceptable correlation requiring recalibration .
5. Which method is most appropriate for preparing a wastewater sample for accurate microbiological
analysis?
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A. Centrifugation followed by filtration of the supernatant
B. Direct plating of the sample without any dilution
C. Serial dilution of the sample followed by plating
D. Evaporation of water to concentrate the sample
Correct Answer: C
Rationale: Serial dilution and plating ensures that bacterial colonies are countable and prevents
overgrowth which can obscure results .
6. What is the primary purpose of using a blank sample in chemical analysis procedures?
A. To calibrate the analytical instruments before sample runs
B. To provide a control for detecting contamination and background interference
C. To standardize the reagents used in the analytical method
D. To increase the concentration of analytes for better detection
Correct Answer: B
Rationale: A blank sample contains all reagents except the analyte of interest and is used to detect any
contamination or background interference .
7. The DPD (N,N-diethyl-p-phenylenediamine) colorimetric method is most accurately used to
measure which parameter in wastewater?