Unit 4: Extractions of biorationals - Practice Quiz

ENT203 — Biopesticides In Insect Pest Management 60 Questions
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1 Why is plant material commonly dried before preparing a botanical extract?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To increase soil fertility
B. To reduce moisture and spoilage
C. To change leaf color
D. To attract more insects

2 What is the main purpose of grinding dried plant material before extraction?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To increase moisture content
B. To increase surface area
C. To reduce solvent purity
D. To remove active compounds

3 What is the primary role of a solvent in botanical extraction?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To count surviving insects
B. To dissolve extractable compounds
C. To dry the plant material
D. To measure insect weight

4 Which process separates solid plant residue from a liquid botanical extract?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. Grinding
B. Incubation
C. Weighing
D. Filtration

5 Why is part of the solvent removed after botanical extraction?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To dilute active compounds
B. To increase plant moisture
C. To multiply test insects
D. To concentrate the extract

6 Which information is most important on the label of a stored botanical extract?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. Room number and wall color
B. Plant source and extraction date
C. Insect color and cage size
D. Soil type and pot shape

7 What is the purpose of an untreated control in an insect bioassay?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To grind the plant material
B. To improve solvent evaporation
C. To increase extract concentration
D. To provide a comparison group

8 Which observation most directly indicates the insecticidal efficacy of a botanical extract?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. Weight of the filter paper
B. Volume of the insect cage
C. Color of the container
D. Percentage insect mortality

9 Why are several concentrations of a botanical extract tested against an insect pest?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. To measure the solvent's boiling point
B. To determine the dose-response relationship
C. To identify the plant's flower color
D. To increase the insect population

10 Which result suggests that a botanical extract has repellent activity?

Preparation of botanical extracts and study of their efficacy against insect pests Easy
A. Plants absorb more water
B. Insects avoid the treated area
C. Insects enter the treated area
D. Leaves become more flexible

11 What is the active ingredient in a biorational biopesticide formulation?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. The label attached to the container
B. The component that affects the pest
C. The material used for packaging
D. The water used to clean equipment

12 What is the usual role of a carrier in a biopesticide formulation?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. To support delivery of the active ingredient
B. To identify the insect's scientific name
C. To determine the color of the product
D. To measure the temperature of storage

13 What is the main function of a surfactant in a spray formulation?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. To improve spreading and wetting
B. To remove formulation labels
C. To raise storage temperature
D. To increase insect reproduction

14 Which formulation is designed to form an emulsion when mixed with water?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. Emulsifiable concentrate
B. Dust formulation
C. Granular formulation
D. Wettable powder

15 Which formulation is a powder intended to be suspended in water before spraying?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. Emulsifiable concentrate
B. Oil solution
C. Granular bait
D. Wettable powder

16 Why are formulation ingredients mixed thoroughly during preparation?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. To change the insect species
B. To reduce label information
C. To increase container weight
D. To obtain a uniform product

17 What is a bioassay used for when evaluating a biopesticide formulation?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. To identify the laboratory's floor material
B. To measure its effect on living insects
C. To calculate the weight of empty cages
D. To determine the container's manufacturing cost

18 What does represent in an insecticidal activity test?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. The temperature used for product storage
B. The concentration killing 50% of insects
C. The concentration repelling all insects
D. The time required to mix a formulation

19 What does the shelf life of a biopesticide formulation describe?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. The time required for spraying
B. The duration of plant extraction
C. The age of the target insect
D. The period it remains usable

20 Why should a biopesticide formulation be tested at the recommended application rate?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Easy
A. To assess its expected field performance
B. To increase the volume of packaging
C. To determine the plant's taxonomic family
D. To change the formulation's trade name

21 A researcher wants to extract both nonpolar terpenoids and polar phenolics from dried leaves by sequential extraction. Which solvent sequence is most appropriate?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. Methanol followed by hexane
B. Water followed by hexane
C. Methanol followed by water
D. Hexane followed by methanol

22 How much dry botanical extract is required to prepare of a 5% test solution?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A.
B.
C.
D.

23 Leaves containing heat-sensitive insecticidal compounds must be dried before extraction. Which method is most suitable?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. Store wet leaves in sealed plastic bags
B. Shade-dry with ventilation at low temperature
C. Oven-dry at until the leaves become brittle and strongly discolored
D. Sun-dry rapidly on a metal surface

24 An extract causes 60% mortality, while mortality in the solvent control is 20%. Using Abbott's correction, what is the corrected mortality?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. 75%
B. 40%
C. 60%
D. 50%

25 A plant extract is dissolved in acetone before being applied to insects. Which control is essential for determining whether acetone contributes to mortality?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. An acetone-only treatment
B. A treatment containing acetone, extract, and a second known insecticide at the field rate
C. A water-only treatment
D. An untreated plant treatment

26 Which bioassay is most appropriate for evaluating the activity of a botanical extract after larvae feed on treated foliage?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. Olfactometer choice bioassay
B. Leaf-dip feeding bioassay
C. Topical application bioassay
D. Fumigation chamber bioassay

27 Extract X has an of , while extract Y has an of against the same insect stage. What is the best interpretation?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. Extract Y is more toxic
B. Their toxicity cannot be compared
C. Both extracts are equally toxic
D. Extract X is more toxic

28 In a two-choice test for repellency, insects are released between treated and untreated leaf discs. Which result provides the strongest evidence of repellency?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. More insects settle on the untreated disc
B. Equal numbers settle on both discs
C. Most insects die after consuming the treated disc for several days under otherwise uncontrolled conditions
D. More insects settle on the treated disc

29 Extraction of of dried leaf powder produces of dry crude extract. What is the extraction yield?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. 15%
B. 12%
C. 18%
D. 24%

30 A light-sensitive botanical extract must be stored for later bioassays. Which storage condition is most appropriate?

Preparation of botanical extracts and study of their efficacy against insect pests Medium
A. An open clear beaker at room temperature
B. A loosely capped flask near a heat source
C. A transparent bottle under direct sunlight
D. An airtight amber vial at low temperature

31 A neem oil concentrate separates immediately when diluted with water. Which formulation change would most directly improve dispersion?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Add a compatible emulsifier
B. Add a large quantity of abrasive mineral powder to force the oil into suspension
C. Increase the oil concentration
D. Remove all formulation water

32 A wettable powder settles rapidly and forms a hard cake in the spray tank. Which adjustment is most likely to improve its performance?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Reduce particle size and add a suspending agent
B. Add more active ingredient without changing additives
C. Increase particle size and remove the dispersant
D. Replace the carrier with coarse sand and minimize tank agitation throughout spraying

33 What is the main advantage of microencapsulating a UV-sensitive botanical insecticide?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Permanent elimination of application losses
B. Conversion of the active ingredient into a synthetic broad-spectrum insecticide
C. Protection with more gradual release
D. Immediate evaporation from leaf surfaces

34 What volume of a 20% liquid concentrate is needed to prepare of a 2% spray mixture, assuming additive volumes?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A.
B.
C.
D.

35 A biorational formulation causes 90% pest mortality but also severe leaf scorching at the recommended dose. What is the most appropriate conclusion?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Reduce the dose or reformulate before use
B. Increase the dose to confirm insecticidal activity
C. Ignore the injury during field testing
D. Recommend it because mortality is high

36 A botanical spray performs well under laboratory conditions but washes off leaves during light rain. Which additive would most directly improve rainfastness?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. A volatile solvent
B. A highly abrasive carrier
C. A sticker adjuvant
D. A coloring agent

37 Two formulations contain the same botanical active ingredient. To compare formulation performance fairly, how should they be applied?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. At unrelated manufacturer-selected doses
B. At equal formulation volumes only
C. At different active-ingredient doses while also changing the insect stage and exposure period
D. At equal active-ingredient doses

38 Pest density varies along a moisture gradient in a field. Which experimental design best controls this source of variation when evaluating four formulations?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Single-plot observational design
B. Laboratory design using one insect per formulation without field replication
C. Completely unreplicated strip design
D. Randomized complete block design

39 Which evidence best demonstrates that a stored biorational formulation has retained acceptable shelf life?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Easy pouring despite complete loss of insecticidal activity
B. Increased sediment with unchanged packaging
C. A darker color and stronger odor
D. Stable physical properties and retained bioactivity

40 A formulation produces rapid knockdown, but many insects recover within 24 hours. Which evaluation method would prevent overestimating its insecticidal activity?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Medium
A. Record mortality at several post-treatment intervals
B. Record knockdown immediately after application
C. Classify every temporarily immobilized insect as permanently dead without later observations
D. Count only insects lying motionless at 10 minutes

41 Sequential extraction of the same plant powder gives a nonpolar extract with 2% yield and an ethanolic extract with 14% yield. At equal crude-extract concentrations, the nonpolar extract causes greater mortality. Which comparison best determines whether its apparent superiority reflects greater intrinsic potency of the active constituents?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Compare treatments at equal concentrations of a quantified bioactive marker
B. Increase the ethanolic concentration until its mortality equals that of the nonpolar extract, then attribute the difference entirely to solvent polarity
C. Compare treatments at equal masses of their original plant material
D. Compare extraction yields after complete evaporation of both solvents

42 A dry plant sample produces a crude extract containing 2.5% of an insecticidal marker. How much crude extract is required to prepare 2 L of spray containing 0.015% marker on a mass-per-volume basis?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. 24 g
B. 12 g
C. 18 g
D. 6 g

43 Extract A has mg/L and probit slope , whereas extract B has mg/L and . Using , which conclusion is correct?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Extract A has lower values at both and
B. Extract A has the lower , but extract B has the lower
C. Extract B has the lower , but extract A has the lower
D. Extract B has lower values at both and

44 In a botanical-extract bioassay, observed mortality is 68% in the treatment and 20% in the solvent control. What is the Abbott-corrected mortality?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. 68%
B. 48%
C. 85%
D. 60%

45 Increasing extract doses require different volumes of acetone, and acetone itself slightly affects larvae. Which design most effectively prevents solvent concentration from being confounded with extract dose?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Correct treatment mortality using an untreated control without acetone
B. Evaporate acetone only from the highest-dose treatment before exposure
C. Keep the final acetone concentration identical in every treatment and control
D. Use water as the control while varying acetone with extract dose

46 The target botanical compound is both thermolabile and readily oxidized. Which extraction procedure is most appropriate when maximizing chemical integrity is more important than extraction speed?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. High-temperature Soxhlet extraction with repeated aeration during solvent recycling
B. Steam distillation at atmospheric pressure with alkaline hydrolysis
C. Cold maceration in an amber vessel under an inert atmosphere
D. Open-vessel decoction followed by prolonged exposure to air

47 Extracts X and Y individually cause 60% and 50% mortality. Under Bliss independent action, what combined mortality is expected, and how should a statistically significant observed mortality of 90% be interpreted?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Expected 30%; the result supports independent interaction
B. Expected 80%; the result supports synergistic interaction
C. Expected 55%; the result supports additive interaction
D. Expected 110%; the result supports antagonistic interaction

48 A treated leaf-disc assay shows severe feeding reduction and 70% apparent mortality at 24 h. Most immobile insects recover after transfer to untreated leaves, paired-choice tests show strong avoidance, and topical application causes no mortality. What is the best interpretation?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. The extract acts mainly as a reversible antifeedant or behavioral toxicant
B. The extract acts mainly as an irreversible contact neurotoxicant
C. The extract acts mainly as a fumigant with delayed lethal activity
D. The extract acts by sterilizing larvae before adult emergence

49 To estimate the residual activity of a botanical deposit aged outdoors for 0, 1, 3, and 7 days, which protocol minimizes survivor-selection and insect-aging bias?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Expose surviving insects repeatedly after replacing only the untreated controls
B. Expose fresh, age-matched insect cohorts to separate deposits at each aging interval
C. Expose the same insects continuously and record cumulative mortality at each interval
D. Expose mixed-age insects once and infer persistence from final cumulative mortality

50 A plant contains insecticidal compounds that are weak organic bases. Which acid-base partitioning sequence most selectively transfers them from an aqueous plant extract into an organic solvent?

Preparation of botanical extracts and study of their efficacy against insect pests Hard
A. Basify to protonate the bases, then acidify and extract with organic solvent
B. Acidify to protonate the bases, then basify and extract with organic solvent
C. Maintain neutral pH and repeatedly wash with concentrated mineral acid
D. Acidify to neutralize the bases, then extract immediately with water

51 An emulsifiable concentrate requires a surfactant blend with HLB 10.0. Available surfactants have HLB values of 4.3 and 15.0. What percentage of the surfactant blend should be the high-HLB surfactant, assuming linear blending?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. 46.7%
B. 53.3%
C. 66.7%
D. 57.0%

52 A microcapsule preparation contains 10 mg of active ingredient in total. After separation of intact capsules, 2 mg is measured in the external phase. Assuming complete recovery and no analytical loss, what is the encapsulation efficiency?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. 50%
B. 80%
C. 125%
D. 20%

53 Two microcapsule formulations show nearly identical slow release in a dialysis-bag experiment, despite major differences in capsule-wall composition. Which follow-up test best determines whether the dialysis membrane, rather than the capsules, controls the measured release rate?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Repeat the assay using twice as much encapsulated active ingredient
B. Measure diffusion of unencapsulated active ingredient through the same membrane
C. Replace the receptor medium only after equilibrium has been reached
D. Measure capsule color before and after the release experiment

54 A nanoemulsion and an emulsifiable concentrate are applied at the same nominal tank concentration, but chemical analysis shows different active-ingredient deposition on leaves. Which comparison most validly tests whether formulation type changes biological efficacy?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Compare responses at equal analytically confirmed deposited doses
B. Compare mortality without including blank formulation controls
C. Compare the nanoemulsion after aging with a freshly prepared emulsifiable concentrate
D. Compare responses only at equal nominal tank concentrations

55 Which treatment structure most directly tests whether a formulation additive protects a botanical active ingredient from ultraviolet degradation without independently killing insects?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Active with and without additive under UV and dark conditions, plus matched blank formulations
B. Active with additive at several doses, using no dark treatment or formulation blank because mortality correction can remove both sources of bias
C. Active with additive under UV compared only with untreated insects maintained in darkness
D. Active without additive under UV compared with additive alone under field conditions

56 In a randomized complete block field trial, each formulation is assigned to one plot per block, and 20 leaves are sampled from each plot. What is the correct experimental unit for testing formulation effects?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Each leaf, with plots treated as subsamples
B. The plot, with leaves treated as subsamples
C. The entire field, with blocks and plots ignored to maximize the residual degrees of freedom
D. Each insect counted on every sampled leaf

57 Formulation A has an estimated of 18 mg/L and formulation B has an estimated of 27 mg/L. Which analysis provides the strongest formal evidence that their potencies differ?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Fit a joint dose-response model and test whether the relative-potency confidence interval excludes 1
B. Conclude that the formulations differ whenever their individual confidence intervals overlap
C. Declare A superior because its point estimate is numerically smaller than that of B
D. Compare mortality at one arbitrarily selected concentration using separate confidence intervals

58 According to Stokes-type settling behavior, which formulation change should most effectively reduce sedimentation velocity in a suspension concentrate while preserving active-ingredient concentration?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Decrease viscosity and increase the density difference between phases
B. Increase particle size while adding more active ingredient until the suspension becomes visibly opaque and therefore appears physically stable
C. Decrease particle radius and increase continuous-phase viscosity
D. Increase particle radius and decrease continuous-phase viscosity

59 An accelerated shelf-life study follows first-order active loss at 30, 40, and 50°C. At 50°C, however, the formulation undergoes irreversible phase separation that does not occur at lower temperatures. What is the most defensible use of the 50°C data in an Arrhenius shelf-life prediction?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. Exclude or model it separately because a different degradation regime may operate
B. Include it automatically because higher temperatures always improve Arrhenius accuracy
C. Use only the 50°C result because it represents the longest equivalent storage time
D. Average its rate constant with the lower-temperature constants before fitting the model

60 A slow-acting biorational formulation and a fast-acting standard eventually produce similar mortality, but their times to death differ substantially and some insects remain alive at study termination. Which analysis uses the available information most appropriately?

Preparation of biorational biopesticide formulations and evaluation of their insecticidal activity Hard
A. A separate Abbott correction at every observation time followed by averaging
B. A one-way ANOVA of final percentage mortality only
C. A linear regression of cumulative mortality that treats repeated observations as independent
D. Kaplan-Meier survival curves with a censored-time comparison