| Complete Questions with Verified Correct Answers & Explanations |
California Water Environment Association Lab Analyst Grade III Exam
Prep Study Guide
1. Under The TNI (The NELAC Institute) Standards and California ELAP regulations,
how frequently must a laboratory perform an initial demonstration of capability
(IDOC) for each analyst and method combination?
o A) Monthly
o B) Prior to using any method, and repeated annually as an ongoing
demonstration of capability (ODOC) ✔
o C) Every 3 years
o D) Only when a new instrument is purchased
2. A laboratory analyzes a matrix spike (MS) and matrix spike duplicate (MSD). The MS
recovery is 65% and the MSD recovery is 85%. What is the Relative Percent
Difference (RPD) between the two recoveries?
o A) 13.3%
o B) 26.7% $\left(\frac{\vert{}65 - 85\vert{}}{\frac{65 + 85}{2}} \times 100 =
\frac{20}{75} \times 100 = 26.67\%\right)$ ✔
o C) 20.0%
o D) 30.7%
3. What statistical test is used to compare the precision (variances) of two sets of
analytical data to determine if their standard deviations are significantly different?
o A) Student’s t-test
, o B) F-test ✔
o C) Chi-square test
o D) Mann-Whitney U test
4. A Student’s t-test is primarily used in laboratory data quality evaluations to:
o A) Compare the mean values of two datasets to determine if there is a
statistically significant difference between them ✔
o B) Calculate the slope of a multi-point linear calibration curve
o C) Determine the half-life of a radioactive tracer
o D) Measure the signal-to-noise ratio of a gas chromatograph
5. According to EPA 40 CFR Part 136 Appendix B, how many replicate spiked samples
(at 1 to 5 times the estimated detection limit) must be processed to calculate a
Method Detection Limit (MDL)?
o A) Minimum of 3
o B) Minimum of 5
o C) Minimum of 7 prepared and analyzed over at least two separate batch
runs ✔
o D) Exactly 20
6. What is the mathematical formula for calculating the Method Detection Limit (MDL)
from replicate spike analyses?
o A) $\text{MDL} = \text{Mean} + 3.0 \times \text{Standard Deviation}$
o B) $\text{MDL} = t_{(n-1, 1-\alpha=0.99)} \times \text{Standard
Deviation}$ ✔
o C) $\text{MDL} = \frac{\text{Standard Deviation}}{\text{Mean}} \times 100$
o D) $\text{MDL} = 2.576 \times \text{Variance}$
7. For 7 replicate sample preparations ($n = 7$), the Student’s $t$-value at the 99%
confidence level ($n-1 = 6$ degrees of freedom) used in MDL calculations is:
, o A) 1.943
o B) 2.447
o C) 3.143 ✔
o D) 4.032
8. In gas chromatography-mass spectrometry (GC/MS) volatile organic analysis (EPA
Method 624.1), what chemical compound is commonly used for instrument
performance tuning prior to calibration?
o A) Decafluorotriphenylphosphine (DFTPP)
o B) Bromofluorobenzene (BFB) ✔
o C) Toluene-d8
o D) Sodium thiosulfate
9. In GC/MS semivolatile organic analysis (EPA Method 625.1), which compound is
mandated for mass spectrometer tuning calibration?
o A) Decafluorotriphenylphosphine (DFTPP) ✔
o B) Bromofluorobenzene (BFB)
o C) Fluorobenzene
o D) Methylene chloride
10. What is the primary operational difference between Inductively Coupled Plasma
Optical Emission Spectrometry (ICP-OES) and Inductively Coupled Plasma Mass
Spectrometry (ICP-MS)?
o A) ICP-OES uses an argon plasma while ICP-MS uses an oxygen flame
o B) ICP-OES measures emitted light intensity at element-specific
wavelengths, while ICP-MS separates and measures ions based on their
mass-to-charge ratio ($m/z$) ✔
o C) ICP-MS can only detect non-metallic elements
o D) ICP-OES requires isotopic internal standards for all metals
, 11. An analyst dilutes 15.0 mL of a 1,000 mg/L stock nitrate standard to a final volume of
500 mL. What is the final concentration of the diluted solution?
o A) 15 mg/L
o B) 30 mg/L ($C_1V_1 = C_2V_2 \rightarrow 1,000 \times 15 = C_2 \times
500 \rightarrow C_2 = 30\text{ mg/L}$) ✔
o C) 45 mg/L
o D) 3.0 mg/L
12. How many grams of Sodium Hydroxide ($\text{NaOH}$, MW $= 40.0\text{ g/mol}$)
are needed to prepare 2.5 Liters of a $0.50\text{ M}$ $\text{NaOH}$ solution?
o A) 20.0 g
o B) 50.0 g ($\text{Mass} = \text{Molarity} \times \text{Volume} \times
\text{MW} = 0.50 \times 2.5 \times 40.0 = 50.0\text{ g}$) ✔
o C) 80.0 g
o D) 100.0 g
13. What mass of Potassium Hydrogen Phthalate ($\text{KHP}$,
$\text{KC}_8\text{H}_5\text{O}_4$, MW $= 204.2\text{ g/mol}$) is required to
neutralize 35.50 mL of $0.1000\text{ M}$ $\text{NaOH}$ solution during a primary
standard titration?
o A) 0.3625 g
o B) 0.7249 g ($\text{Moles} = 0.03550\text{ L} \times 0.1000\text{ M} =
0.003550\text{ mol}$; $\text{Mass} = 0.003550 \times 204.2 = 0.7249\text{
g}$) ✔
o C) 1.4498 g
o D) 0.1812 g
14. The Chemical Oxygen Demand (COD) of a wastewater sample is being determined.
A 50.0 mL sample requires 12.4 mL of $0.100\text{ N}$ Ferrous Ammonium Sulfate