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BACTE LEC PRELIM week 1& 2

Total questions: 71

Worksheet time: 36mins

Name
Class
Date
1.

It is the study of microscopic organism. It is also the study of viruses.

(a)  

2.

They are unicellular, microscopic organisms that are not considered as animal or plant or fungus

(a)  

3.

It deals with bacteria

(a)  

4.

Deals with fungi

a)

mycology

b)

virology

c)

protozoology

d)

algology

e)

parasitology

5.

deals with virus

a)

bacteriology

b)

mycology

c)

virology

d)

protozoology

6.

it deals with protozoa

a)

protozoology

b)

microbiology

c)

mycology

d)

nematology

7.

it deals with algae

a)

bacteriology

b)

phycology

c)

algology

d)

nematology

8.

It deals with parasite

a)

parasitology

b)

nematology

c)

protozoology

d)

bacteriology

9.

it deals with nematodes

a)

nematology

b)

parasitology

c)

virology

d)

bacteriology

10.

It deals with pathogenic microbes

a)

medical microbiology

b)

agricultural microbiology

c)

food and dry microbiology

d)

aquatic microbiology

11.

It studies the roles of microbes in agriculture form the point of view of both harm and usefulness

a)

Agricultural microbiology

b)

medical microbiology

c)

food and dry microbiology

d)

aero microbiology

12.

The study of food born microbial diseases and their control

a)

medical microbiology

b)

agricultural microbiology

c)

food and dairy microbiology

d)

aquatic microbiology

13.

it is the study of microorganisms found in water

a)

medical microbiology

b)

agricultural microiology

c)

food and dairy microbiology

d)

aquatic microbiology

14.

It is the study of airborne microorganisms

a)

Aquatic microbiology

b)

Aero microbiology

c)

geochemical microbiology

d)

environmental microbiology

15.

it is the study of the role of microbes in maintaining the quality of environment

(a)  

16.

it deals with the role of microbes in coal, gas and mineral formation

(a)  

17.

It studies of manipulation of microbes at the genetic and molecular level to generate useful products (example. insulin)

(a)  

18.

It deals with the study of immune responses to organisms

(a)  

19.

inhabit the human body as _______, as opportunistic pathogens or as ____________

(a)  

20.

He is the father of protozoology and bacteriology

(a)  

21.

He is that father of medicine, observed that ill health resulted due to changes in air, winds, water, climate, food, nature of soil and habits of people

a)

hippocrates

b)

varro

c)

fracastorius

d)

roger bacon

22.

The disease was caused by animated particles invisible to naked eyes but which were carried in the air through the mouth and nose into the body

a)

hippocrates

b)

varro

c)

fracastorius

d)

roger bacon

e)

kircher

23.

The agents of communicable disease were living germs, that could be transmitted by direct contact with humans and animals, and indirectly by objects; but no proof because of lacking experimental evidence

a)

Hippocrates

b)

varro

c)

Fracastorius

d)

Roger bacon

24.

Finding minute worms in the blood of plague victims, but with the equipment available to him, it is more likely that hat he observed were only blood cells.

a)

Hippocrates

b)

Fracastroius

c)

roger bacon

d)

kircher

25.

In 1877 he proved and was able to explain satisfactorily the need for prolonged heating to eliminate microbial lide from infusions.

(a)  

26.

Intermittent heating is now called (a)   which killed both heat stable form and a heat sensitive form of bacteria

27.

he first tried to stet an experimentation to disprove spontaneous generation/ life comes from pre existing life

(a)  

28.

A theory that living things originated form non living things

(a)  

29.

He disapproved the theory of abiogenesis and designed a large curved flask and placed a sterile growth broth medium.

(a)  

30.

The theory that depended on the work of a German scientist, Rober Koch

a)

theory of abiogenesis

b)

The germ theory of disease

31.

Emil A von behring

a)

1901 - Developed a diptheria antitoxin

b)

1902 - Discovered how malaria is transmitted

c)

1905 - tuberculosis discovery of causative agent

d)

1907 - Discovery of malaria parasite in an unstained preparation of fresh blood

32.

Ronald Ross

a)

1901 - Developed a diptheria antitoxin

b)

1902 - Discovered how malaria is transmitted

c)

1905 - tuberculosis discovery of causative agent

d)

1907 - Discovery of malaria parasite in an unstained preparation of fresh blood

33.

Robert koch

a)

1901 - developed a diptheria antitoxin

b)

1902 - discovered how malaria is transmitted

c)

1905 - TB - discovery of causative agent

d)

1907- Discovery of malaria parasite in an unstained preparation of fresh blood

34.

CLA laveron

a)

1901 - Developed a diptheria antitoxin

b)

1902 - discovered how malaria is transmitte

c)

1905 - TB- discovery of causative agent

d)

1907 - discovery of malaria parasite in an unstained preparation of fresh blood

35.

Paul Ehrlich and Elle Metchnikoff

a)

1908- Developed theories on immunity & Described phagocytosis, the intake of solid materials by cells

b)

1913 - anaphylaxis

c)

1919- discovered role of complement and antobody in cytolysis, developed complement function test

d)

1928 - typhus exanthematicus

36.

Charles Richet

a)

1908 - Developed theories on immunity and described phagocytosis the intake of solid materials by cells

b)

1913 - anaphylaxis

c)

1919 - discovered roles of complement and antibody cytolysis, developed complement function test

d)

1928 - typhus exnthematicus

37.

Jules Bordet

a)

1908 - developed theories on immunity and discovered phagocytosis, the intake of solid materials by cells

b)

1913 - Anaphylaxis

c)

1919 - Discovered roles of complement and antibody in cytolysis, developed complement function test

d)

1928 - typhus exanthematicus

38.

Charles Nicolle

a)

1908 - developed theories on immunity and discovered phagocytosis, the intake of solid materials by cells

b)

1913 - Anaphylaxis

c)

1919 - Discovered roles of complement and antibody in cytolysis, and developed complement function test

d)

1928 - typhus exanthematicus

39.

karl Landsteiner

a)

1930 - he described ABO blood group and solidified chemical basis for antigen antibody reaction

b)

1939- antobacterial effect of protosil

c)

1945- discovered penicillin

d)

1951- yellow fever vaccine

40.

Gerhardt Doagk

a)

1930- described ABO blood group and solidified chemicals basis for antigen - antibody reaction

b)

1939- antibacterial effect of protosil

c)

1945- discovered penicillin

d)

1951- yellow fever vaccine

41.

Alexander Fleming, Ernst chain and Howard Florey

a)

1930- described ABO blood group and solidified chemicals basis for antigen - antibody reaction

b)

1939 - Antibacterial effect of protosil

c)

1945 - discovered penicillin

d)

1951 - yellow fever vaccine

42.

Max Theller

a)

1930- described ABO blood group and solidified chemicals basis for antigen - antibody reaction

b)

1939- Antibacterial effect of protosil

c)

1945 - Discovered penicillin

d)

1951 - Yellow fever vaccine

43.

Selman A. Waksman

a)

1952- Developement of streptomycin. He coined the term "antibiotic"

b)

1954 - Cultured poliovirus in cell culture

c)

1960 - Immunology tolerance, clonal selection theory

d)

1962 - double helix structure of DNA

44.

John F. Ender

Thomas H. Weller

Frederick C. Robbins

a)

1952- Development of streptomycin. He coined the term "antibiotic"

b)

1954- cultured poliovirus in cell cultures

c)

1960-immunology tolerance, clonal selection theory

d)

1962 - double helix of DNA

45.

Sir Macfarlane Burnet

Sir Peter Brian Medawar

a)

1952- Developement of streptomycin. He coined the term "antibiotic"

b)

1954- cultured poliovirus in cell cultures

c)

1960-Immunology tolerance, clonal selection theor

d)

1962 double helix structure of DNA

46.

James D. Watson

Frances HC crick

Maurice AF Wilkins

a)

1952- Developement of streptomycin. He coined the term "antibiotic"

b)

1954 - Cultured poliovirus in cell cultures

c)

1960 - Immunology tolerance, clonal selection theory

d)

1962 - Double helix structure of DNA

47.

Peyton Ross

a)

1966 - Viral oncogens (avian sarcoma)

b)

1968- Genetic code

48.

Robert Holley

Har Gobind

a)

1966 - viral oncogen

b)

1968 - genetic code

49.

Mechanism of virus infections in the living cell

a)

1969 - Mac Delbruck, AD Hershey and Salvador Luria

b)

1972 - herald M. Edelman & rodney R. Porter

c)

1975 - David Baltimore, Renato Dulbecco & Howard M. Temin

d)

1977 - Rosalyn Yalow

50.

based on similarities and differences genetic make up

a)

genotype

b)

phenotype

51.

He is often called the father of biological classification. he classified the animals into animals with blood and animals without blood, animals that live in water and animals that live on land or in air.

a)

Aristotle

b)

Carolus Linnaeus

c)

Ernst Haeckel

d)

Robert Whittaker

52.

He divided living thigs into two kingdoms. He is often called "father of taxonomy". He further arranged classification categories as "kingdom class, order, family, genus and species and invented binomial nomenclature"

a)

Aristotle

b)

carolus Linnaeus

c)

ernst Haeckel

d)

robert whittaker

53.

He proposed a three kindom classificatoin in 1897

a)

Aristotle

b)

Carolus Linnaeus

c)

Ernst Haeckel

d)

Robert Whittaker

54.

In 1990, he modified the classification and classified all the organisms into three domains of life.

a)

carolus Linnaeus

b)

ernst aheckel

c)

robert whittaker

d)

carl woese

55.

Similar to a human "clan"

a)

family

b)

Genus

c)

species

d)

strain

56.

It is equivalent to a human last name

a)

family

b)

genus

c)

species

d)

stain

57.

Equivalent to human first name

a)

familt

b)

genus

c)

specie

d)

strain

58.

Means of assigning an organism to a specific taxonomic category typically involves the use of specific criteria that may posed as questions

a)

Dichotomous key

b)

nomenclature

59.

___ is a bacterium

a)

Escherichia coli.

b)

Entamoeba coli

60.

It is an intestinal parasite

a)

escherichia coli

b)

entamoeba coli

61.

It is based on phenotypi difference

a)

subspecies

b)

serovarities

c)

biovarities

d)

phage typing

62.

it is based on serologic differences

a)

Subspecies

b)

serovarities

c)

biovarities

d)

phage typing

63.

It is based on biochemical or physiological test result differences

a)

subspecies

b)

serovarities

c)

biovarieties

d)

phage typing

64.

It is based on susceptibility to specific bacterial phages

a)

subspecies

b)

serovarities

c)

Biovarities

d)

phage typing

65.

It domains archaea and bacteria

a)

prokaryotes

b)

eukaryotes

66.

Fungi, algae, protozoa, animals and plants

a)

prokaryotes

b)

eukaryotes

c)

archaea

67.

More closely related to eukaryotic cells or found in microorganisms that grow under extreme environmental conditions or lack of peptidoglycan

a)

prokaryotes

b)

eukaryotes

c)

archaea

68.

Lovers of the extreme conditions

a)

Extremophiles

b)

Halophile

c)

thermophiles

69.

Salt loving cells in utah's great salt lake

a)

Extremophiles

b)

halophiles

c)

thermophiles

70.

Heat loving cells in hot springs and deep ocean vents

a)

extremophiles

b)

halophiles

c)

thermophiles

71.

It gives off swamp gas and inhabit the intestinal tracts of animals

a)

Extremophiles

b)

halophile

c)

thermophiles

d)

Anaerobic methanogens