WorksheetsCell Transport & Homeostasis Review (Unit 5)
Total questions: 33
Worksheet time: 43mins
If the environment gets cold, we will often shiver in order to
Keep our body temperature the same as the external temperature
increase body temperature
decrease body temperature
regulate blood pressure
Homeostasis in the human body is often maintained by
negative feedback
neutral feedback
solar feedback
neural feedback
The maintenance of an organisms internal environment is called
balancing
compensation
homeostasis
routine
Movement of particles through the cell membrane go from
low to high
high to low
never move
hot to cold
High concentration of solute (salt or sugar) Water diffuses out causing the cell to shrivel
hypertonic
hypotonic
isotonic
– Low concentration of solute with more water Cell swells and bursts
hypertonic
hypotonic
isotonic
The process by which water passes into or out of the cell is called ...
solubility
osmosis
selective transport
endocytosis
Diffusion takes place ...
only through a lipid bilayer membrane
from an area of low concentration to an area of high concentration
only in liquids
from an area of high concentration to an area of low concentration
A living thing that is made up of organ systems.
cell
tissue
organ
organ system
organism
2 or more different kinds of tissues that work together.
cell
tissue
organ
organ system
organism
The smallest unit of a living thing
cell
tissue
organ
organ system
organism
2 or more organs that work together.
cell
tissue
organ
organ system
organism
Groups of similar cells that work together.
cell
tissue
organ
organ system
organism
Which is the correct order for levels of organization from simple to complex?
cell, organ , tissue, organ system, organism
organism, organ system, tissue, cell, organ
cell, tissue, organ, organ system, organism
organ, tissue, cell, organism, organ system
What is the point of a feedback loop?
To provide the body with more energy
To provide the body with more food
To make sure the conditions in the body are always changing
To make sure the conditions in the body remain stable
The solution surrounding the cell in Diagram B, would be defined as:
hypertonic
hypotonic
isotonic
The solution surrounding the cell in Diagram C, would be defined as
hypertonic
isotonic
hypotonic
