Unit 1: Biosafety - Practice Quiz

BTY196 — Biosafety And Bioethics 60 Questions
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1 What does the term biosafety primarily refer to?

Introduction Easy
A. Techniques to increase the yield of laboratory cultures
B. Containment principles and practices to prevent exposure to biological agents
C. Methods for genetically modifying microorganisms
D. Rules for patenting biological discoveries

2 Biosafety measures are mainly designed to protect which of the following?

Introduction Easy
A. Only laboratory equipment
B. Only the funding agencies
C. Only the experimental results
D. Laboratory workers, the community, and the environment

3 Which organization publishes the widely used Laboratory Biosafety Manual?

Historical Background Easy
A. International Monetary Fund (IMF)
B. World Trade Organization (WTO)
C. World Health Organization (WHO)
D. United Nations Children's Fund (UNICEF)

4 The 1975 conference that laid down early guidelines for recombinant DNA safety was held at which location?

Historical Background Easy
A. Atlanta
B. Asilomar
C. Bethesda
D. Geneva

5 What is the main function of a Biological Safety Cabinet (BSC)?

Biological Safety Cabinets Easy
A. To store chemical reagents at low temperatures
B. To provide a contained workspace that protects the worker, product, and environment
C. To sterilize glassware using high pressure
D. To incubate bacterial cultures at fixed temperatures

6 Which type of filter is used in Biological Safety Cabinets to trap airborne particles?

Biological Safety Cabinets Easy
A. HEPA filter
B. Sand filter
C. Carbon paper filter
D. Cotton wool filter

7 Which class of Biological Safety Cabinet provides protection to the worker but not to the product or sample?

Biological Safety Cabinets Easy
A. Class II
B. Class I
C. Class III
D. Class IV

8 Which Biological Safety Cabinet class is a completely enclosed, gas-tight unit used for the most dangerous agents?

Biological Safety Cabinets Easy
A. Class II Type B2
B. Class I
C. Class II Type A1
D. Class III

9 In biosafety, what does the term containment describe?

Containment for Biohazards Easy
A. Safe methods for managing biological agents to reduce exposure
B. A method of cooling laboratory samples
C. The classification of chemicals by toxicity
D. The rapid growth of microbial populations

10 Gloves, gowns, and safety cabinets are examples of which type of containment?

Containment for Biohazards Easy
A. Primary containment
B. External containment
C. Tertiary containment
D. Secondary containment

11 Facility design features such as special ventilation and airlocks are examples of which type of containment?

Containment for Biohazards Easy
A. Chemical containment
B. Personal containment
C. Secondary containment
D. Primary containment

12 How many biosafety levels (BSL) are commonly recognized?

Biosafety Levels Easy
A. Three
B. Six
C. Four
D. Two

13 Which biosafety level is suitable for well-characterized agents that do not usually cause disease in healthy adults?

Biosafety Levels Easy
A. BSL-1
B. BSL-3
C. BSL-2
D. BSL-4

14 Which biosafety level is the highest and used for dangerous agents with a high risk of aerosol transmission and no available treatment?

Biosafety Levels Easy
A. BSL-2
B. BSL-1
C. BSL-3
D. BSL-4

15 At which biosafety level are workers typically required to use a full-body, air-supplied positive pressure suit?

Biosafety Levels Easy
A. BSL-1
B. BSL-2
C. BSL-3
D. BSL-4

16 Which biosafety level requires practices such as limited access, biohazard warning signs, and work with agents that cause moderate disease via ingestion or exposure?

Biosafety Levels Easy
A. BSL-4
B. BSL-1
C. BSL-3
D. BSL-2

17 Non-pathogenic strains of Escherichia coli (such as K-12) are typically handled at which biosafety level?

Biosafety Levels of Specific Microorganisms Easy
A. BSL-4
B. BSL-2
C. BSL-1
D. BSL-3

18 Mycobacterium tuberculosis, which spreads through infectious aerosols, is generally handled at which biosafety level?

Biosafety Levels of Specific Microorganisms Easy
A. BSL-2
B. BSL-3
C. BSL-1
D. BSL-4

19 The Ebola virus is classified for handling at which biosafety level?

Biosafety Levels of Specific Microorganisms Easy
A. BSL-2
B. BSL-4
C. BSL-3
D. BSL-1

20 The containment level used when working with infected animals is commonly abbreviated as:

Recommended Biosafety Levels for Infectious Agents and Infected Animals Easy
A. CBSL
B. ABSL
C. HBSL
D. PBSL

21 A researcher needs to work with a volatile radioactive chemical that is also biologically hazardous. Which class of Biological Safety Cabinet (BSC) should be selected?

Biological Safety Cabinets Medium
A. Class I
B. A standard clean bench with laminar downflow that recirculates HEPA-filtered air back into the room to protect the sample
C. Class II Type A1
D. Class II Type B2

22 Why does a Class I Biological Safety Cabinet fail to protect the sample from contamination, unlike a Class II cabinet?

Biological Safety Cabinets Medium
A. It has no HEPA filter on the exhaust
B. Air flowing inward across the work surface is unfiltered room air
C. It uses positive pressure inside the chamber
D. It recirculates all air within the chamber

23 An agent is transmissible by the aerosol route and can cause serious or lethal disease, but effective treatment and preventive vaccines are available. Which biosafety level is most appropriate?

Biosafety Levels Medium
A. BSL-1
B. BSL-3
C. BSL-4
D. BSL-2

24 Which combination of engineering controls is a defining requirement of a BSL-3 laboratory but NOT of a BSL-2 laboratory?

Biosafety Levels Medium
A. Autoclave availability and biohazard signage
B. Handwashing sink and closable door
C. Directional inward airflow with non-recirculated exhaust
D. Eyewash station and lockable door

25 In biocontainment terminology, what does the concept of "secondary barriers" primarily refer to?

Containment for Biohazards Medium
A. Personal protective equipment worn by staff
B. Standard microbiological practices followed daily
C. The biological safety cabinet used at the bench
D. The facility design and engineering features surrounding the lab

26 Which three elements together constitute the primary means of containment described in biosafety guidelines?

Containment for Biohazards Medium
A. Laboratory practices, safety equipment, and facility design
B. Signage, PPE, and disinfection protocols
C. Vaccination, medical surveillance, and record keeping
D. Air filtration, waste disposal, and staff training

27 Bacillus anthracis handled in a standard diagnostic laboratory (non-aerosol-producing procedures) is typically assigned to which biosafety level?

Biosafety Levels of Specific Microorganisms Medium
A. BSL-4
B. BSL-1
C. BSL-2
D. BSL-3

28 Ebola virus and Marburg virus must be handled under which biosafety level due to the lack of available vaccines or effective therapy and their high mortality?

Biosafety Levels of Specific Microorganisms Medium
A. BSL-3
B. BSL-2
C. BSL-3 with animal enhancements
D. BSL-4

29 The first classification of microorganisms into risk groups and the foundations of modern biosafety practice were significantly shaped by which organization's guidelines?

Historical Background Medium
A. The Centers for Disease Control and Prevention (CDC)
B. The International Monetary Fund (IMF)
C. The World Trade Organization (WTO)
D. The Food and Agriculture Organization (FAO)

30 The 1975 Asilomar Conference was a landmark event in biosafety history primarily because it addressed the safety concerns arising from which emerging technology?

Historical Background Medium
A. Polymerase chain reaction
B. Monoclonal antibody production
C. Recombinant DNA technology
D. CRISPR gene editing

31 Which statement best distinguishes biosafety from biosecurity?

Introduction Medium
A. Biosafety concerns chemicals; biosecurity concerns microorganisms
B. Biosafety applies to plants; biosecurity applies to animals
C. Biosafety prevents accidental exposure; biosecurity prevents intentional misuse or theft
D. Biosafety is voluntary; biosecurity is legally mandated everywhere

32 When assigning a biosafety level to work with a particular agent, which factor is generally considered the MOST important?

Introduction Medium
A. The cost of laboratory equipment involved
B. The route of transmission and infectious dose of the agent
C. The geographic location of the laboratory
D. The academic seniority of the principal investigator

33 A Class II Type A2 cabinet exhausts air through a thimble (canopy) connection to a Type A2 cabinet that is connected to the building exhaust. Approximately what proportion of the air is typically recirculated within the cabinet?

Biological Safety Cabinets Medium
A. 70%
B. 30%
C. 0%
D. 100%

34 A worker keeps a Bunsen burner flame lit inside a Class II BSC. Why is this practice discouraged?

Biological Safety Cabinets Medium
A. It increases product protection excessively
B. It disrupts the laminar airflow pattern and can damage the HEPA filter
C. It has no effect and is fully acceptable
D. It sterilizes the incoming air too aggressively

35 When working with animals infected with a BSL-3 agent, which containment designation is applied to the animal facility?

Recommended Biosafety Levels for Infectious Agents and Infected Animals Medium
A. ABSL-1
B. ABSL-4
C. ABSL-2
D. ABSL-3

36 Why may animal biosafety levels require additional precautions beyond those of the equivalent laboratory biosafety level?

Recommended Biosafety Levels for Infectious Agents and Infected Animals Medium
A. Animal work is exempt from HEPA filtration rules
B. Animals may generate aerosols, bites, scratches, and shed agents unpredictably
C. Animals cost more to purchase and maintain
D. Animals are always infected with BSL-4 agents

37 A BSL-4 suit laboratory differs fundamentally from a BSL-4 cabinet laboratory in that personnel in the suit lab are protected primarily by which means?

Biosafety Levels Medium
A. A positive-pressure protective full-body suit with a dedicated air supply
B. Working entirely inside a Class II Type B2 cabinet
C. A Class III biological safety cabinet enclosing all work
D. Standard N95 respirators and lab coats

38 Escherichia coli K-12 laboratory strains, which are non-pathogenic and well-characterized, are generally handled at which biosafety level?

Biosafety Levels of Specific Microorganisms Medium
A. BSL-4
B. BSL-2
C. BSL-1
D. BSL-3

39 A Class III biological safety cabinet is considered a maximum-containment primary barrier chiefly because it:

Containment for Biohazards Medium
A. Recirculates 70% of its air after filtration
B. Is completely gas-tight and operated through attached gloves under negative pressure
C. Requires no HEPA filtration on exhaust
D. Uses a front opening for direct hand access

40 A laboratory plans large-volume, high-concentration cultures of an agent normally handled at BSL-2. What is the recommended approach regarding containment?

Recommended Biosafety Levels for Infectious Agents and Infected Animals Medium
A. Consider elevating practices and containment toward BSL-3 due to increased aerosol risk
B. No change is needed since the agent's base level is BSL-2
C. Move all work to a BSL-4 suit laboratory
D. Downgrade to BSL-1 to reduce operational cost

41 A researcher must work with a volatile radionuclide-labeled compound that is also an infectious aerosol hazard. Which biological safety cabinet is appropriate, and why?

Biological Safety Cabinets Hard
A. Class I
B. Class II Type A1
C. Class II Type B2
D. Class II Type A2 with unducted exhaust, because it recirculates HEPA-filtered air and protects the sample from contamination while conserving laboratory space and energy costs

42 In a Class II Type A2 cabinet, approximately what fraction of air is recirculated back into the work zone versus exhausted?

Biological Safety Cabinets Hard
A. 70% recirculated, 30% exhausted
B. 30% recirculated, 70% exhausted
C. 50% recirculated, 50% exhausted
D. 100% exhausted, 0% recirculated

43 Why does a Class I biological safety cabinet protect the operator and environment but NOT the product?

Biological Safety Cabinets Hard
A. Room air is drawn in across the work opening and passes unfiltered over the sample before exhaust HEPA filtration
B. The sash creates positive pressure that pushes contaminated air onto the work surface
C. It uses laminar downflow that pushes contaminants directly onto the sample
D. The HEPA filter is located on the supply side only, filtering incoming air

44 The concept of "primary containment" in a biosafety facility specifically refers to:

Containment for Biohazards Hard
A. Protection of personnel and the immediate laboratory environment through good technique and safety equipment
B. The outermost physical barrier such as sealed windows and airlocks
C. Protection of the community outside the facility through facility design
D. Immunization and medical surveillance of laboratory workers

45 A laboratory handles an agent that causes serious disease, may transmit via aerosol, but for which effective treatment and preventive measures exist. Sealed windows, directional inward airflow, and an anteroom for entry are required. Which biosafety level is indicated?

Biosafety Levels Hard
A. BSL-4
B. BSL-1
C. BSL-2
D. BSL-3

46 Which combination of features distinguishes BSL-4 from BSL-3 practice?

Biosafety Levels Hard
A. Positive-pressure suit or Class III cabinet with a dedicated life-support system and clothing change plus shower on exit
B. Autoclaving of all waste before disposal
C. Use of a Class II BSC and inward directional airflow
D. Restricted access and biohazard signage on doors

47 A Class III biological safety cabinet differs fundamentally from Class II because it:

Biological Safety Cabinets Hard
A. Recirculates 100% of HEPA-filtered air into the room
B. Is a gas-tight enclosure operated under negative pressure with attached glove ports, isolating the operator completely from the agent
C. Requires no HEPA filtration of exhaust air
D. Provides laminar downflow to protect the product only

48 The 1975 Asilomar Conference on Recombinant DNA is historically significant to biosafety because it:

Historical Background Hard
A. Banned all recombinant DNA experiments worldwide
B. Established voluntary guidelines and containment principles for recombinant DNA research that shaped later NIH regulations
C. Created the first Class III biological safety cabinet
D. Defined the four biosafety levels used today

49 Diagnostic and clinical work with Mycobacterium tuberculosis cultures is assigned which biosafety level, and why?

Biosafety Levels of Specific Microorganisms Hard
A. BSL-4, because no treatment exists
B. BSL-1, because it is a well-characterized agent of minimal hazard
C. BSL-3, because it transmits via infectious aerosols with a low infectious dose
D. BSL-2, because it is not aerosol transmissible

50 Which grouping correctly lists agents that require BSL-4 containment?

Biosafety Levels of Specific Microorganisms Hard
A. Influenza virus, measles virus, and M. tuberculosis
B. Bacillus anthracis, Yersinia pestis, and SARS-CoV-1
C. Hepatitis B virus, HIV, and Salmonella
D. Ebola virus, Marburg virus, and Lassa virus

51 The Animal Biosafety Level (ABSL) designation ABSL-3 adds which key consideration beyond the corresponding BSL-3 laboratory requirements?

Recommended Biosafety Levels for Infectious Agents and Infected Animals Hard
A. Control of aerosols and dust generated by animal activities such as bedding changes and cage handling
B. Use of BSL-1 practices for waste disposal
C. Removal of the requirement for personal protective equipment
D. Elimination of the need for HEPA-filtered exhaust

52 The typical minimum inflow (face) velocity maintained at the sash opening of a Class II BSC to ensure operator protection is approximately:

Biological Safety Cabinets Hard
A. (500 ft/min)
B. (100 ft/min)
C. (1000 ft/min)
D. (20 ft/min)

53 Why must a HEPA filter be certified to remove particles of specifically, rather than only larger particles?

Containment for Biohazards Hard
A. Only particles exactly carry infectious agents
B. Particles smaller than cannot exist in bioaerosols
C. is the most penetrating particle size, so removing it guarantees higher efficiency for both smaller and larger particles
D. particles are the largest that HEPA filters can capture

54 At BSL-2, when must work be conducted inside a biological safety cabinet rather than on the open bench?

Biosafety Levels Hard
A. Only when handling animals
B. Never, since open-bench work is always permitted at BSL-2
C. When procedures with a high potential for creating infectious aerosols or splashes are performed
D. For all manipulations without exception

55 The core principle of "risk assessment" in biosafety involves matching containment to which combination of factors?

Introduction Hard
A. Only the taxonomic classification of the organism
B. The cost of laboratory equipment available
C. Agent hazard characteristics and the procedures/activities being performed
D. The number of personnel employed in the facility

56 A clinical lab receives an unidentified specimen from a patient with a suspected but unconfirmed exotic hemorrhagic fever. Pending identification, at minimum which practice is most appropriate?

Recommended Biosafety Levels for Infectious Agents and Infected Animals Hard
A. Handle at the highest feasible containment (BSL-3 practices with BSL-4 referral) until the agent is characterized
B. Handle at BSL-2 open bench because most clinical specimens are low risk
C. Process at BSL-1 since the agent is unknown
D. Discard the specimen without testing

57 Placing a Bunsen burner inside a Class II BSC is discouraged primarily because:

Biological Safety Cabinets Hard
A. It causes the exhaust HEPA filter to over-pressurize
B. It increases the risk of chemical contamination of the sample
C. It raises the cabinet's internal humidity beyond safe limits
D. The flame's heat disrupts the laminar airflow patterns and can damage the HEPA filter

58 Arnold Wedum is recognized in biosafety history primarily for:

Historical Background Hard
A. Discovering the first laboratory-acquired anthrax case
B. Chairing the Asilomar Conference
C. Inventing the HEPA filter
D. Pioneering laboratory-acquired infection studies and containment practices at Fort Detrick

59 HIV research is generally conducted at BSL-2 with BSL-3 practices, but scaled-up or concentrated virus production shifts to BSL-3. What underlying principle explains this change?

Biosafety Levels of Specific Microorganisms Hard
A. Increasing the concentration and volume of agent raises the probability and severity of exposure, requiring greater containment
B. The taxonomic reclassification of HIV mandates BSL-3
C. HIV becomes airborne only in concentrated form
D. BSL-2 cabinets cannot physically hold large volumes

60 In a BSL-3 facility, directional airflow must ensure that air moves:

Containment for Biohazards Hard
A. Only vertically upward toward ceiling exhaust with no horizontal gradient
B. Equally in both directions to balance pressure
C. From the laboratory outward toward the corridors to flush contaminants away
D. From areas of lower hazard (corridors) toward areas of higher hazard (lab), with no recirculation to other areas