Unit 3: Formulations of biopesticides - Practice Quiz

ENT203 — Biopesticides In Insect Pest Management 60 Questions
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1 What is the main purpose of formulating a microbial biopesticide?

Preparation of different formulations of microbial biopesticides Easy
A. To eliminate the active microorganism
B. To improve its storage and application
C. To increase the pest population
D. To replace all crop nutrients

2 Which component provides the pest-controlling activity in a microbial biopesticide?

Preparation of different formulations of microbial biopesticides Easy
A. Coloring agent
B. Packaging material
C. Active microorganism
D. Irrigation water

3 What is the main role of a carrier in a microbial biopesticide formulation?

Preparation of different formulations of microbial biopesticides Easy
A. To increase insect reproduction
B. To supply minerals to insects
C. To destroy the microbial cells
D. To support and deliver the microorganism

4 Which material is commonly used as a carrier in powder formulations of microbial biopesticides?

Preparation of different formulations of microbial biopesticides Easy
A. Copper wire
B. Talc
C. Rubber sheets
D. Glass beads

5 What does the abbreviation WP commonly mean in biopesticide formulations?

Preparation of different formulations of microbial biopesticides Easy
A. Wettable powder
B. Waterproof paste
C. Washed pellet
D. Wax preparation

6 How is a wettable powder formulation generally prepared for field application?

Preparation of different formulations of microbial biopesticides Easy
A. It is mixed with water
B. It is burned to form smoke
C. It is heated until boiling
D. It is mixed with dry sand only

7 Which formulation consists of larger solid particles that are usually applied directly to soil?

Preparation of different formulations of microbial biopesticides Easy
A. Aerosol formulation
B. Liquid suspension
C. Wettable powder
D. Granular formulation

8 In a liquid microbial formulation, the microorganism is commonly dispersed in which type of medium?

Preparation of different formulations of microbial biopesticides Easy
A. Molten metal
B. Solid glass
C. Dry cement
D. Water or oil

9 What is a suspension concentrate?

Preparation of different formulations of microbial biopesticides Easy
A. Dry granules packed without a carrier
B. Microbial cells dissolved in metal
C. Fine active particles suspended in liquid
D. A gas stored under pressure

10 Why is a carrier often sterilized before adding the microbial culture?

Preparation of different formulations of microbial biopesticides Easy
A. To increase carrier moisture
B. To attract more insects
C. To change the carrier color
D. To reduce unwanted contamination

11 Why should a heat-sterilized carrier be cooled before microbial inoculation?

Preparation of different formulations of microbial biopesticides Easy
A. To prevent heat damage to the microorganism
B. To increase the carrier particle size
C. To convert the carrier into oil
D. To remove the product label

12 What is commonly produced before a microbial culture is mixed with a carrier?

Preparation of different formulations of microbial biopesticides Easy
A. Metal coating
B. Plastic film
C. Broth culture
D. Mineral crystal

13 Why is gentle drying preferred when preparing many microbial biopesticide powders?

Preparation of different formulations of microbial biopesticides Easy
A. To increase contamination
B. To melt the carrier material
C. To maintain microbial viability
D. To destroy all microbial spores

14 Why is excess moisture undesirable in many dry microbial formulations?

Preparation of different formulations of microbial biopesticides Easy
A. It always improves powder flow
B. It can reduce storage stability
C. It converts powder into granules
D. It prevents microbial growth completely

15 What is the function of a surfactant in a sprayable microbial formulation?

Preparation of different formulations of microbial biopesticides Easy
A. To improve wetting and spreading
B. To increase package strength
C. To sterilize the crop soil
D. To supply nitrogen to pests

16 What is the purpose of adding a sticker to a microbial biopesticide formulation?

Preparation of different formulations of microbial biopesticides Easy
A. To increase evaporation from leaves
B. To separate water from the mixture
C. To remove spores from the formulation
D. To improve adhesion to the target surface

17 Why may a UV protectant be included in a microbial biopesticide formulation?

Preparation of different formulations of microbial biopesticides Easy
A. To increase the temperature of the spray
B. To protect microbes from sunlight damage
C. To remove the active microorganism
D. To make the formulation evaporate faster

18 Why is thorough mixing important during the preparation of a microbial formulation?

Preparation of different formulations of microbial biopesticides Easy
A. To increase unwanted contamination
B. To remove all carrier particles
C. To distribute the microorganism uniformly
D. To produce uneven microbial clumps

19 Which quality test estimates the number of living microorganisms in a formulation?

Preparation of different formulations of microbial biopesticides Easy
A. Color comparison
B. Package weight
C. Viable count
D. Label inspection

20 Which packaging is most suitable for protecting a dry microbial formulation from moisture?

Preparation of different formulations of microbial biopesticides Easy
A. An open paper tray
B. A sealed moisture-resistant package
C. A perforated cloth bag
D. An uncovered glass plate

21 A wettable powder formulation of Bacillus thuringiensis is prepared primarily to ensure that the product can be dispersed in water before spraying. Which component is most important for improving its ability to remain uniformly suspended?

Preparation of different formulations of microbial biopesticides Medium
A. A volatile sterilizing solvent
B. A suitable suspending agent
C. A concentrated insect growth regulator
D. A strong oxidizing agent

22 During preparation of a microbial wettable powder, the carrier is selected mainly because it can improve handling, dilution, and stability. Which carrier property is most desirable?

Preparation of different formulations of microbial biopesticides Medium
A. Rapid decomposition in storage
B. High moisture content
C. Strong antimicrobial activity
D. Fine particle size

23 A producer wants to prepare a microbial suspension concentrate containing viable fungal spores. Which processing condition should be avoided because it may reduce spore viability?

Preparation of different formulations of microbial biopesticides Medium
A. Gentle agitation
B. Controlled cooling
C. Prolonged high shear
D. Use of a compatible dispersant

24 An oil-based formulation is selected for an entomopathogenic fungus intended for use during a dry period. What is the main expected advantage of this formulation?

Preparation of different formulations of microbial biopesticides Medium
A. Permanent prevention of spore germination
B. Complete elimination of ultraviolet radiation
C. Improved adhesion and reduced wash-off
D. Guaranteed multiplication on every leaf

25 A microbial granule is designed to release its active ingredient gradually in soil. Which formulation feature most directly controls the release rate?

Preparation of different formulations of microbial biopesticides Medium
A. Colour of the granule
B. Particle fragrance
C. Label size
D. Porosity of the matrix

26 When preparing alginate beads containing entomopathogenic nematodes, calcium chloride is commonly used after mixing the nematodes with sodium alginate. What is its function?

Preparation of different formulations of microbial biopesticides Medium
A. It converts nematodes into bacterial spores
B. It prevents all water movement
C. It sterilizes the nematodes completely
D. It cross-links alginate to form beads

27 A formulation containing live bacteria develops a rapid decline in colony-forming units during storage. Which change is most likely to improve stability?

Preparation of different formulations of microbial biopesticides Medium
A. Add a compatible protectant
B. Increase storage temperature
C. Remove all moisture-control measures
D. Increase exposure to sunlight

28 Why is moisture content carefully controlled during preparation of a dry microbial formulation?

Preparation of different formulations of microbial biopesticides Medium
A. Moisture always increases microbial purity
B. Excess moisture may reduce shelf life
C. Drying prevents all contamination permanently
D. High moisture guarantees rapid field infection

29 A producer adds a wetting agent to a microbial spray formulation. What problem is this additive intended to reduce?

Preparation of different formulations of microbial biopesticides Medium
A. Formation of calcium ions in the culture medium
B. Loss of all active ingredients during filtration
C. Poor spreading on hydrophobic leaf surfaces
D. Excessive microbial multiplication in the fermenter

30 A microbial formulation forms hard lumps after storage and cannot be dispersed properly in water. Which preparation or storage issue is the most likely cause?

Preparation of different formulations of microbial biopesticides Medium
A. Reduced container volume
B. Insufficient label printing
C. Low pathogen concentration only
D. Excessive residual moisture

31 Which formulation is generally most appropriate when a microbial insecticide must be applied with ordinary farm spraying equipment after dilution in water?

Preparation of different formulations of microbial biopesticides Medium
A. Dry untreated biomass
B. Wettable powder
C. Pure concentrated spores without a carrier
D. Unprocessed culture broth

32 A formulation scientist is choosing between a water-based and an oil-based formulation for a fungus whose spores germinate poorly in free water. Which choice is more suitable?

Preparation of different formulations of microbial biopesticides Medium
A. A highly alkaline water formulation
B. A formulation containing a broad-spectrum fungicide
C. A formulation with no carrier
D. An oil-based formulation

33 A microbial product is intended for application against soil-dwelling insect larvae. Which formulation would usually provide better placement near the target zone?

Preparation of different formulations of microbial biopesticides Medium
A. A formulation designed only for seed colouration
B. Soil-applied granules
C. A leaf-polishing spray
D. A highly volatile aerosol

34 Why are pH and temperature monitored while preparing a liquid microbial formulation?

Preparation of different formulations of microbial biopesticides Medium
A. They determine the colour of the pesticide label
B. They guarantee equal pest susceptibility in the field
C. They eliminate the need for contamination testing
D. They influence microbial viability and formulation stability

35 A formulation containing a virus-based biopesticide is dried by a method that removes water at low temperature under reduced pressure. Why can this method be useful?

Preparation of different formulations of microbial biopesticides Medium
A. It converts viruses into chemical insecticides
B. It removes the need for a protective matrix
C. It makes ultraviolet light harmless after spraying
D. It can protect heat-sensitive viral particles

36 A sticker is included in a microbial formulation intended for foliage application. What field problem is it mainly intended to address?

Preparation of different formulations of microbial biopesticides Medium
A. Excessive heating during fermentation
B. Inability of microbes to reproduce in culture
C. Failure of the carrier to become sterile
D. Removal of deposits by rain or irrigation

37 During preparation of a microbial formulation, a preservative is considered for extending shelf life. What must be confirmed before its use?

Preparation of different formulations of microbial biopesticides Medium
A. It kills all microorganisms in the formulation
B. It increases the formulation's moisture content
C. It is compatible with the beneficial microorganism
D. It reacts strongly with the carrier

38 A suspension concentrate settles during storage but becomes uniform again after gentle shaking. Which quality characteristic does this observation primarily demonstrate?

Preparation of different formulations of microbial biopesticides Medium
A. Excessive chemical toxicity
B. Acceptable redispersibility
C. Permanent loss of microbial viability
D. Complete formulation instability

39 A producer wants to reduce ultraviolet damage to fungal conidia in a foliar formulation. Which formulation strategy is most appropriate?

Preparation of different formulations of microbial biopesticides Medium
A. Increase the spray droplet's evaporation rate
B. Remove all protective formulation ingredients
C. Use a transparent container in sunlight
D. Include a compatible UV protectant

40 Why should microbial biomass be mixed with the carrier under controlled conditions during dry formulation preparation?

Preparation of different formulations of microbial biopesticides Medium
A. To eliminate the need for dose calibration
B. To ensure that only large particles remain
C. To achieve uniform distribution of the active ingredient
D. To prevent the carrier from absorbing any moisture

41 A conidial concentrate contains viable conidia per gram. Processing causes a 20% loss of viability. How much concentrate is required to prepare 100 kg of wettable powder containing viable conidia per gram?

Preparation of different formulations of microbial biopesticides Hard
A. 7.50 kg
B. 8.00 kg
C. 5.00 kg
D. 6.25 kg

42 Which process sequence best minimizes viability loss while preparing a wettable powder from shear- and heat-sensitive fungal conidia?

Preparation of different formulations of microbial biopesticides Hard
A. Mill the decontaminated carrier, cool it, blend in conidia and protectants at low shear, then moisture-barrier package
B. Blend conidia with the carrier, hammer-mill the complete mixture, heat-condition it, then package in paper sacks
C. Wet-mill conidia with the carrier, evaporate the water at high temperature, then add the wetting agent
D. Steam-sterilize the completed conidial blend, cool it under humid air, then package without a liner

43 A fungal wettable powder wets completely within 20 seconds, but only 35% of its conidia remain suspended after the standard suspensibility test. Viability is unchanged. Which reformulation most directly addresses the failure?

Preparation of different formulations of microbial biopesticides Hard
A. Increase residual moisture so that the particles become heavier during dilution
B. Increase the wetting agent while retaining the existing particle-size distribution
C. Increase the carrier density while removing the formulation dispersant
D. Optimize the dispersant and reduce coarse agglomerates without damaging conidia

44 Hydrophobic fungal conidia lose viability rapidly in aqueous suspension but remain stable under dry conditions. Which formulation strategy is most appropriate for foliar spraying?

Preparation of different formulations of microbial biopesticides Hard
A. A low-water-activity oil dispersion containing a compatible emulsifier
B. A high-moisture suspension containing a fermentable sugar
C. An alkaline aqueous solution containing an ionic solubilizer
D. A water-soluble concentrate prepared by dissolving the conidia

45 A concentrated bacterial suspension develops a compact sediment that cannot be redispersed after storage, although viability and mean particle size remain acceptable. What is the best formulation adjustment?

Preparation of different formulations of microbial biopesticides Hard
A. Raise the storage temperature to increase Brownian movement
B. Lower continuous-phase viscosity and increase particle aggregation
C. Add a compatible yield-stress modifier and reoptimize the dispersant
D. Remove the dispersant and increase the density difference

46 A nucleopolyhedrovirus formulation must retain occlusion-body activity after field application on foliage. Which preparation approach best addresses its principal environmental and chemical vulnerabilities?

Preparation of different formulations of microbial biopesticides Hard
A. Use a near-neutral carrier with a UV protectant and avoid strongly alkaline ingredients
B. Use an acidic solvent system that dissolves the occlusion bodies before packaging
C. Use an alkaline carbonate carrier with a photosensitizer and no light barrier
D. Use a transparent carrier and expose the concentrate to UV light before filling

47 A microbial suspension concentrate is stable in deionized water but flocculates immediately when diluted in hard water rich in and . Which modification is most rational?

Preparation of different formulations of microbial biopesticides Hard
A. Increase particle size until sedimentation replaces visible flocculation
B. Remove all dispersants and rely only on vigorous tank agitation
C. Increase anionic surfactant concentration without conducting hardness tests
D. Use a hardness-tolerant steric dispersant with a compatible sequestrant

48 Under Stokes-type settling conditions, a reformulation halves the particle diameter and doubles the continuous-phase viscosity without changing density difference. What is the approximate new settling velocity relative to the original?

Preparation of different formulations of microbial biopesticides Hard
A. One-sixth
B. One-eighth
C. One-quarter
D. One-half

49 Which rheological profile is most desirable for a microbial suspension concentrate that must resist sedimentation during storage but remain easy to pour and spray?

Preparation of different formulations of microbial biopesticides Hard
A. Zero yield stress with purely Newtonian low-viscosity flow
B. Low viscosity at rest and increasing viscosity under shear
C. Constant high viscosity independent of applied shear
D. Finite yield stress with shear-thinning flow above the yield point

50 Which sequence correctly prepares calcium-alginate microbeads containing a microbial biopesticide?

Preparation of different formulations of microbial biopesticides Hard
A. Dissolve calcium alginate in water, add the microbe after curing, wash, and heat-sterilize
B. Mix the microbe with dry calcium carbonate, add ethanol, extrude, and dissolve the beads in alkali
C. Disperse the microbe in sodium alginate, form droplets in calcium chloride, cure briefly, wash, and dry gently
D. Disperse the microbe in calcium chloride, form droplets in sodium alginate, boil, and dry rapidly

51 During spray drying of a bacterial biopesticide, inlet temperature is high but viability correlates more strongly with outlet temperature and residence time. Which intervention should be evaluated first?

Preparation of different formulations of microbial biopesticides Hard
A. Lower product thermal exposure and add a validated protective matrix
B. Increase feed dilution and prolong residence time to maximize heating
C. Raise outlet temperature while removing all protective solids
D. Recycle dried powder repeatedly through the hottest dryer zone

52 Which lyophilization protocol is most likely to preserve vegetative bacterial cells that are sensitive to freezing and desiccation?

Preparation of different formulations of microbial biopesticides Hard
A. Add salt after drying, conduct primary drying above collapse temperature, and omit sealed packaging
B. Add a cryoprotectant before freezing, dry below collapse temperature, and seal against moisture
C. Freeze without protectant, melt during evacuation, and store the porous cake in humid air
D. Freeze slowly without formulation screening, then apply maximum shelf heat during primary drying

53 Water-sensitive conidia must be converted into water-dispersible granules, but preliminary wet extrusion causes major germination loss. Which alternative is most defensible?

Preparation of different formulations of microbial biopesticides Hard
A. Steam-condition the conidia before adding a water-retaining binder
B. Suspend the conidia in water for longer before wet granulation
C. Use low-pressure dry granulation with a rapidly disintegrating dry binder
D. Increase extrusion water and compensate by extending high-temperature drying

54 A microbial seed-coating formulation is compatible with the seed but loses viability when applied over a conventional fungicidal treatment. Which development strategy best addresses the interaction?

Preparation of different formulations of microbial biopesticides Hard
A. Increase coating water so that the fungicide diffuses into microbial cells
B. Premix the microorganism and fungicide several days before coating
C. Apply a separating polymer layer and verify viability and seed emergence
D. Increase fungicide concentration so that both agents bind more strongly

55 An entomopathogenic fungus is being formulated as a soil-applied granule. Which carrier profile best balances storage stability and release after application?

Preparation of different formulations of microbial biopesticides Hard
A. A permanently hydrophobic granule that never absorbs soil moisture
B. A dry, porous, nonalkaline granule that disintegrates after soil wetting
C. A highly alkaline granule containing abundant free water during storage
D. A dense, vitrified granule that prevents propagule release in wet soil

56 A 100 kg formulation must contain CFU/g and 20 kg of inert carrier. Active lot A contains CFU/g, while active lot B contains CFU/g. Assuming no processing loss, which blend meets the target?

Preparation of different formulations of microbial biopesticides Hard
A. 30 kg lot A, 50 kg lot B, and 20 kg carrier
B. 20 kg lot A, 60 kg lot B, and 20 kg carrier
C. 25 kg lot A, 55 kg lot B, and 20 kg carrier
D. 35 kg lot A, 45 kg lot B, and 20 kg carrier

57 Viable count in a microbial formulation follows first-order loss, . If CFU/g, the minimum specification is CFU/g, and week, when is the specification reached?

Preparation of different formulations of microbial biopesticides Hard
A. 17.3 weeks
B. 69.3 weeks
C. 50.0 weeks
D. 34.7 weeks

58 Two bacterial formulations have identical microscopic particle counts, but one gives substantially lower mortality in the target insect. Which release specification would best distinguish biologically useful product from inactive material?

Preparation of different formulations of microbial biopesticides Hard
A. Viable count combined with a standardized target-insect bioassay
B. Carrier particle size alone, because it determines pathogenicity
C. Total particle count alone, because every observed particle is viable
D. Package mass alone, because potency is proportional to fill weight

59 A preservative prevents bacterial contamination in a mixed formulation of bacterial spores and fungal conidia. The spores remain viable, but fungal germination falls below specification. What is the best pre-scale-up decision?

Preparation of different formulations of microbial biopesticides Hard
A. Ignore fungal germination because total conidial counts remain unchanged
B. Retain the preservative because bacterial spore viability alone confirms compatibility
C. Increase preservative concentration until fungal germination is no longer measurable
D. Screen alternative preservation or compartmentalization strategies against both agents

60 Calcium-alginate microcapsules retain excellent microbial viability, but target-insect mortality is delayed because release after application is too slow. Which modification most directly accelerates release?

Preparation of different formulations of microbial biopesticides Hard
A. Add another impermeable coating and reduce bead porosity
B. Increase cross-link density and enlarge the bead diameter
C. Increase alginate concentration and extend calcium curing
D. Reduce cross-link density and introduce controlled matrix porosity