Living Things & Bacteria
cells & Population Growth
Cell Transport & Structure
Homeostasis & Body Systems
Immune Response & Feedback
100

What is bacteria and how are they treated?

A single-celled organism prokaryote, that can be found anywhere

100


which type of cell has a nucleus? 


eukaryotic

100


What is the cell membrane?



The cell structure that controls what enters and leaves the cell.


100


What is a symptom?



A sign or feeling that indicates a person may be sick, such as coughing, pain, or fatigue.


100


What is the immune response?



A body defense that identifies and helps destroy pathogens such as bacteria and viruses.


200

what are two structures eukaryotic cells and prokaryotic cells have in common?


cell membrane, genetic material

200


How are viruses and bacteria different?



Unlike bacteria, viruses must enter a host cell to make more copies of themselves.


200


What is passive transport?



The movement of particles from an area of higher concentration to an area of lower concentration without using cellular energy.


200


What is homeostasis?



The process of maintaining stable internal conditions within acceptable ranges


200


What is negative feedback?



A feedback process that reduces a change and helps return a body condition to its normal range.


300


True or False: the ability to move is a characteristic of living thing


false

300


What is exponential growth?



This type of population growth begins slowly, increases rapidly, and forms a J-shaped curve when resources are abundant.


300


What is active transport?



A cell uses energy to move particles from an area of lower concentration to an area of higher concentration.


300


Which body system releases hormones to the blood stream to allow the circulatory system to carry the hormone to the target location?

endocrine system

300


What is positive feedback?



A feedback process that increases or amplifies a change, such as amplifying the immune response during an infection


400


How can bacteria cause health problems?



A bacterial infection can cause problems when these organisms multiply rapidly or produce substances that damage tissues.


400


Food, water, space, disease, and competition can slow population growth because they are examples of these.



What are limiting factors?


400


What is a eukaryotic cell, and how is it different from a prokaryotic cell?



A cell has a nucleus, mitochondria, and other membrane-bound organelles. Identify the type of cell and contrast it with a prokaryote.


400


what are the levels of organization found in a multicellular organism?


cells, tissues, organ, organ system

400


How can antibiotic use contribute to antibiotic resistance through natural selection, and why is this not an example of negative feedback?



An antibiotic kills most bacteria, but a few resistant bacteria survive and reproduce. Explain how this example connects antibiotics, natural selection, and feedback in a biological system.


500


How does natural selection lead to antibiotic resistance in bacteria?



A population of bacteria contains a few individuals with inherited traits that help them survive a particular antibiotic. After treatment, those bacteria reproduce and become more common.


500

what structure do all cells contain?

genetic material

500


How do cells communicate through receptors and signal pathways?



A cell receives a chemical signal from another cell, changes its internal activity, and produces a response. Explain how the cell membrane and specialized proteins help make this communication possible.


500


Why do we get fevers, and how can a fever affect homeostasis?



During an infection, the body raises its temperature. Explain how this response may help fight infection and why an extremely high temperature can become dangerous.


500


How does a negative-feedback loop maintain homeostasis through internal signaling?



A graph shows a body condition moving away from its normal range, triggering a response that brings it back toward the range. Analyze the graph and identify the sensor, control center, effector, and type of feedback involved.


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