Label each type of flagellar arrangement.
a. __________ <IMAGE> b. __________ <IMAGE>
c. __________ <IMAGE> d. __________ <IMAGE>
Verified step by step guidance
Label each type of flagellar arrangement.
a. __________ <IMAGE> b. __________ <IMAGE>
c. __________ <IMAGE> d. __________ <IMAGE>
Match the terms with their descriptions following. Only one description is intended for each term.
____ Ribosome
____ Cytoskeleton
____ Centriole
____ Nucleus
____ Mitochondrion
____ Chloroplast
____ ER
____ Golgi body
____ Peroxisome
A. Site of protein synthesis
B. Contains enzymes to neutralize hydrogen peroxide
C. Functions as the transport system within a eukaryotic cell
D. Allows contraction of the cell
E. Site of most DNA in eukaryotes
F. Contains microtubules in "9 + 0" arrangement
G. Light-harvesting organelle
H. Packages large molecules for export from a cell
I. Its internal membranes are sites for ATP production
Sketch, name, and describe three flagellar arrangements in bacteria.
A "9 + 2" arrangement of microtubules is seen in __________ .
a. archaeal flagella
b. bacterial flagella
c. eukaryotic flagella
d. all prokaryotic flagella
Define cytosol.
A scientist who is studying passive movement of chemicals across the cytoplasmic membrane of Salmonella enterica serotype Typhi measures the rate at which two chemicals diffuse into a cell as a function of external concentration. The results are shown in the following figure. Chemical A diffuses into the cell more rapidly than does B at lower external concentrations, but the rate levels off as the external concentration increases. The rate of diffusion of chemical B continues to increase as the external concentration increases.
a. How can you explain the differences in the diffusion rates of chemicals A and B?
b. Why does the diffusion rate of chemical A taper off?
c. How could the cell increase the diffusion rate of chemical A?
d. How could the cell increase the diffusion rate of chemical B?