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A. pasteurization
B. bioremediation
C. fermentation
D. biolistics
Answer: B
A. Oxidation ponds
B. Trickling filters
C. Contact aerators
D. All of these
Answer: D
A. zoological film
B. geological film
C. zooglocal film
D. none of these
Answer: C
A. water rich in organic carbon wastes but poor in phosphate
B. water that are anoxic
C. water rich in phosphate wastes but poor in organic carbon
D. none of the above
Answer: C
A. lesser than 25°C
B. 25-40°C
C. 45-60°C
D. all of these
Answer: D
A. remove coarse solids
B. remove settleable solids
C. reduce BOD
D. remove additional objectionable substances
Answer: D
A. coagulation, filtration, chlorination
B. chlorination, filtration, coagulation
C. filtration, coagulation, chlorination
D. coagulation, chlorination, filtration
Answer: A
A. New diet drink
B. Microbe that eats hazardous waste
C. Method to convert agricultural waste into a biogas
D. All of the above
Answer: C
A. bioinformatics
B. biolistics
C. biotechnology
D. bioremediation
Answer: D
A. bacteria
B. yeasts and molds
C. protozoa
D. all of these
Answer: D
A. slime
B. undesirable odors and tastes
C. both (a) and (b)
D. extreme acidity
Answer: C
A. provides the U.S. with about 50% of its energy
B. consists largely of wood, animal, and human waste
C. is unlikely to be a major source of energy globally
D. offers the consumer high quality energy with low environmental impact
Answer: B
A. Ants
B. Bugs
C. Snakes
D. Worms
Answer: D
A. Incineration of solid waste
B. Composting to produce methane
C. Ethanol and methanol production for auto fuel
D. Photovoltaic production of hydrogen
Answer: D
A. The use of 25-40°C temperatures allows the biogas production to be more stable
B. The use of 25-40°C temperatures does not destroy potentially harmful bacteria
C. The use of 25-40°C temperatures destroys potentially harmful bacteria
D. None of the above
Answer: C
MICROBIOLOGY of WASTE WATER Questions and Answers ::
A. 2 to 40 feet
B. 4 to 6 feet
C. 1 to 3 feet
D. 5 to 8 feet
Answer: A
A. Sanitary sewers
B. Storm sewers
C. Combined sewers
D. Solid sewers
Answer: D
A. bacterial count
B. amount of organic material
C. amount of inorganic material
D. all of the above
Answer: B
A. coagulation
B. a biodisc
C. a biofilm
D. the membrane filter technique
Answer: C
A. a temperature-dependent process
B. a temperature independent process
C. an oxygen dependent process
D. none of the above
Answer: A
A. 20% of methane produced in a biogas reactor
B. 50% of methane produced in a biogas reactor
C. 70% of methane produced in a biogas reactor
D. 85% of methane produced in a biogas reactor
Answer: C
A. Iron bacteria
B. Sulfur bacteria
C. Slime forming bacteria
D. All of these
Answer: B
A. acid-fast bacteria
B. bacteroids
C. coliforms
D. dinoflagellates
Answer: C
A. the overpopulation of algae
B. the overabundance of toxic proteins
C. the depletion of oxygen
D. the buildup of sediment on the river bottom
Answer: C