WorksheetsCell Environment Review Game
Total questions: 47
Worksheet time: 16mins
The constant movement of all particles is known as:
active transport
passive transport
brownian movement
facilitated diffusion
Brownian Movement was first described by:
Robert Brown
Robert Hooke
Antonio Brown
Joe Black
Movement that is "downhill"
brownian movement
active transport
passive transport
ion pumps
Movement that doesn't require energy
passive transport
active transport
ion pumps
exocytosis
Examples include diffusion, osmosis and facilitated diffusion
passive transport
active transport
endocytosis
exocytosis
Movement that is "uphill"
brownian movement
active transport
passive transport
facilitated diffusion
Movement that requires energy
passive transport
active transport
osmosis
facilitated diffusion
Examples include ion pumps, endocytosis and exocytosis
passive transport
active transport
brownian movement
diffusion
Movement of molecules from an area of high concentration to low concentration
diffusion
osmosis
ion pumps
endocytosis
Which of the following do NOT affect diffusion?
concentration
temperature
pressure
enzymes
If you want to increase the rate of diffusion then:
decrease the pressure
decrease the temperature
decrease the concentration
decrease the enzymes
Difference or range in concentration from highest to lowest in a given area
concentration gradient
hill
passive transport
active transport
If one area has 100% water and another area has 95% water, what is the concentration gradient?
100%
95%
5%
195%
By increase the concentration gradient, you:
increase the rate of diffusion
decrease the rate of diffusion
increase the active transport
decrease the active transport
By increase the temperature, you:
increase the rate of diffusion
decrease the rate of diffusion
increase the active transport
decrease the active transport
Why can I smell O'Neill's Coffee every morning in the summer but not every day in the winter?
warmer temperatures make the smell diffusion better in the summer
I'm not outside in the winter
O'Neill's brews more in the summer
the pressure is less in the winter
What you put into a solution
solvent
solute
salute
statute
What is the solvent in sweet tea?
water
tea
sugar
lemon
Being picky about what goes into or out of the cell
selectively permeable
impermeable
permeable
What is shown by this picture?
diffusion
ion pumps
endocytosis
exocytosis
The diffusion of water through a membrane
osmosis
facilitated diffusion
ion pump
pinocytosis
Having equal concentration of water on both sides of the cell membrane is:
impossible
equilibrium
diffusion
phagocytosis
At equilibrium, what direction does water flow?
into the cell
out of the cell
both into and out of the cell
neither into nor out of the cell
What type of solution shows equilibrium?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is preferred by animal cells?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is preferred by plant cells?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is makes cells swell?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is might cause cytolysis?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is might cause cells to shrivel?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is might cause cells plasmolysis?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is might cause cells to LOSE water?
hypertonic
hypotonic
isotonic
metatonic
Energy drinks cause dehydration. When compared with your cells, what type of solution is an energy drink?
hypertonic
hypotonic
isotonic
metatonic
How do plants deal with hypotonic solutions?
they die
their cell wall handles it
their kidneys remove extra water
they increase photosynthesis
How do animals effectively deal with hypotonic solutions?
they die
their cell wall handles it
their kidneys remove extra water
they increase photosynthesis
What type of solution is shown in this picture?
hypertonic
hypotonic
isotonic
metatonic
What type of solution is shown in this picture?
hypertonic
hypotonic
isotonic
metatonic
Used to help larger molecules to move across the cell membrane WITHOUT using energy.
facilitated diffusion
osmosis
endocytosis
exocytosis
Type of transport shown by this picture.
facilitated diffusion
osmosis
endocytosis
exocytosis
Makes use of a transport protein.
facilitated diffusion
osmosis
endocytosis
exocytosis
Type of transport shown by this picture.
diffusion
osmosis
active transport
passive transport
Examples include the sodium-potassium pump and salt glands in sea gulls.
ion pumps
endocytosis
facilitated diffusion
pinocytosis
Movement of large substances into the cell, using energy.
facilitated diffusion
osmosis
endocytosis
exocytosis
Movement of large substances out of the cell, using energy.
facilitated diffusion
osmosis
endocytosis
exocytosis
Seen when white blood cells consume viruses
phagocytosis
pinocytosis
ion pumps
exocytosis
Cell drinking
phagocytosis
pinocytosis
ion pumps
exocytosis
Used to ship proteins from one cell to another
phagocytosis
pinocytosis
ion pumps
exocytosis
Removal of waste as seen here:
phagocytosis
pinocytosis
ion pumps
exocytosis
