Class 8 Science Ch 3: Health, Our Treasure | Boundless Maths
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Chapter 3: Health —
The Ultimate Treasure

Class 8 Science Curiosity NCERT Solutions Chapter 3 — every Probe and Ponder prompt, all 7 Activities, all 11 "Keep the Curiosity Alive" exercise questions, and all 7 "Discover, Design, and Debate" project prompts, solved and explained on one page.

This chapter widens the definition of health beyond "not being sick" to physical, mental, and social well-being, then covers how communicable and non-communicable diseases are caused and spread, and how the body defends itself through immunity, vaccines, and antibiotics.

7
Activities Solved
11
Exercise Questions
7
Project Prompts
₹0
Cost — Always Free
Overview

What Chapter 3 Is Really About

Chapter 3 opens by widening what "health" even means — using the WHO's definition of complete physical, mental, and social well-being — before moving into lifestyle habits, environmental cleanliness, and finally the two big categories of disease: communicable (caused by pathogens, spread person to person) and non-communicable (linked to lifestyle, diet, or environment). It closes with how the body defends itself, through natural immunity, vaccines, and antibiotics, and why misusing antibiotics is a growing global problem. Every Activity and exercise is solved here exactly as the textbook presents it.

🧠

Health Is More Than "Not Sick"

The WHO definition covers physical, mental, and social well-being — habits, relationships, and surroundings all matter.

🦠

Communicable vs Non-Communicable

Pathogen-caused diseases that spread between people, versus lifestyle-linked conditions like diabetes and asthma that don't.

💉

Immunity, Vaccines & Antibiotics

How the body fights disease naturally, how vaccines train it in advance, and why antibiotic misuse causes resistance.

Quick Revision

Key Concepts & Quick Facts at a Glance

WHO definition of health

A state of complete physical, mental, and social well-being — not merely the absence of disease.

Symptom vs sign

TermMeaningExample
SymptomWhat the patient feels (subjective)Pain, tiredness, dizziness
SignWhat can be seen or measured (objective)Fever, rash, high blood pressure, swelling

Communicable vs non-communicable diseases

CommunicableNon-communicable
CausePathogens — bacteria, viruses, fungi, worms, protozoaLifestyle, diet, environment, hormonal factors
Spreads person to person?YesNo
ExamplesTyphoid, dengue, flu, chickenpox, TB, choleraCancer, diabetes, asthma, high blood pressure

How diseases spread

RouteExample diseases
Air (droplets from coughing/sneezing)Common cold, chickenpox, measles, TB
Contaminated water/foodHepatitis A, cholera, typhoid, ascariasis (roundworms)
Insect vectors (mosquitoes, houseflies)Malaria (protozoa), dengue (virus)
Direct/indirect contactSharing personal items, shaking hands, rabid animal bites

Body's defence: immunity, vaccines, antibiotics

TermWhat it means
ImmunityThe body's natural ability to fight disease, via the immune system
Acquired immunityProtection developed after exposure to a pathogen or a vaccine
VaccineTrains the immune system using a weakened, dead, or harmless part of a pathogen — preventive, not curative
AntibioticMedicine that kills bacteria by targeting bacterial-cell structures; doesn't work on viruses or protozoa
Antibiotic resistanceBacteria surviving and multiplying despite treatment with an antibiotic that once killed them
Reflection Prompt

Probe and Ponder

Open Reflection
ReflectHow does your body respond to infection? Why are diabetes and heart problems now more common than smallpox or polio? Could climate change bring new diseases? How do stress and worry make us sick, and why are some groups affected more during outbreaks?

Sample answer: when my body detects an infection like a cold, my immune system responds with symptoms such as a mild fever, tiredness, and a runny nose — these are signs of the body actively fighting the pathogen, not just discomfort for no reason.

Diseases like smallpox and polio have become rare mainly because of successful vaccination programmes, while diabetes and heart problems have become more common because of changes in how people live today — more processed food, less physical activity, and longer lifespans. Climate change could plausibly increase certain diseases, since warmer temperatures and changed rainfall patterns can expand the regions where disease-carrying mosquitoes can survive, potentially increasing cases of diseases like malaria and dengue. Stress affects the body by triggering hormonal changes that can weaken immunity over time and disturb sleep, digestion, and mood, all of which affect overall health. Some groups may be more affected during outbreaks due to factors like crowded living conditions, limited access to healthcare, weaker immunity (in young children or the elderly), or pre-existing health conditions.

Note for students

This is an open reflection prompt — there's no single fixed answer expected. A strong response connects each question to a specific reason (immune response, vaccination history, lifestyle change, mosquito-borne disease spread, hormonal stress response, or vulnerability factors) rather than a vague guess.

Activities

Activities 3.1 – 3.7

7 Activities
A3.1Let Us Read: A Grade 8 student, lonely in a new school, spends more time on his phone, feels worse, and develops headaches, weight loss, and poor sleep. Think and Reflect: what was the cause of his health problems, and how did his habits and surroundings affect his well-being?

Answer: the root cause of the boy's health problems was social isolation — moving to a new city with no friends and busy parents left him lonely. To cope, he increased his screen time and social media use, but this became a negative cycle: more screen time made him feel worse, not better, and led to physical symptoms like headaches, weight loss, and poor sleep.

How habits and surroundings affected his well-being: his surroundings (a new, unfamiliar environment with no social support) created loneliness, and his habit of using screens to cope, rather than actively making friends, worsened rather than solved the problem. This shows that health depends on physical, mental, and social factors together — his physical symptoms were really a downstream effect of his social and emotional state, exactly matching the WHO definition of health as more than just the absence of physical disease.

A3.2Let Us List: List good habits your elders encourage, and habits that are not good for health. Which are already part of your routine?

Good habits to add to the list:

  • Drinking enough water through the day.
  • Washing hands before eating and after using the washroom.
  • Spending time outdoors and getting some sunlight and fresh air.
  • Sleeping and waking up at consistent times.

Habits that are not good for health, to add to the list:

  • Eating excess sugar or caffeine regularly.
  • Not washing hands regularly before meals.
  • Staying up late scrolling on a phone instead of sleeping.
  • Sitting for long hours without any physical movement.

Answer: comparing both lists to my own routine helps identify which healthy habits I already follow and which unhealthy habits I should try to reduce — this is exactly the point of the activity: our health depends on our own everyday lifestyle choices, which are within our control to improve.

A3.3Let Us Compare: Which playground (Fig. 3.3a, clean, or Fig. 3.3b, polluted) would you like to play in, and why?
Comparison of a clean, well-maintained playground with children playing happily versus a polluted playground littered with garbage and surrounded by smoke-emitting factories
Fig. 3.3: (a) Clean playground vs (b) Polluted playground

Answer: most people would prefer the playground in Fig. 3.3a, since it is clean, well-maintained, and pleasant to look at. The playground in Fig. 3.3b is polluted, dirty, and full of flies and mosquitoes, and people living in or visiting such an area are likely to fall sick more often.

Why this matters for health: a dirty, poorly maintained environment can breed disease vectors like flies and mosquitoes and expose people to pathogens more easily, increasing the risk of both digestive infections (from unhygienic surroundings) and vector-borne diseases (from mosquito breeding). This shows that keeping our surroundings clean, not just our own bodies, is an important part of staying healthy — clean air and water reduce cases of respiratory problems and water-/vector-borne diseases.

A3.4Let Us Find Out: Verify and complete Table 3.1 listing common communicable diseases, their causal agent, site of infection, symptoms, and preventive measures.

Table 3.1 — Common communicable diseases affecting humans:

Diseases spread through the air

DiseaseCausal agentSite of infectionSymptomsPreventive measures
Common cold & influenzaVirusRespiratory tractNasal congestion, sore throat, fever, cough, body acheFrequent handwashing, not sharing personal items, covering mouth/nose
ChickenpoxVirusRespiratory tract, skinMild fever, itchy skin, rashes, blistersIsolation of patient, covering mouth/nose, vaccination
MeaslesVirusSkin, respiratory tractFever, sore throat, reddish rashesIsolation, covering mouth/nose, hygiene, vaccination
Tuberculosis (TB)BacteriaLungsCough, fever, fatigue, loss of appetite, night sweatsAvoiding close contact with TB patients, covering mouth/nose, hygiene, vaccination

Diseases spread through contaminated water and food

DiseaseCausal agentSite of infectionSymptomsPreventive measures
Hepatitis AVirusLiverFatigue, fever, nausea, vomiting, jaundiceDrinking boiled water, vaccination
CholeraBacteriaIntestineDiarrhoea, dehydrationHygiene, boiled water, properly cooked food, vaccination
TyphoidBacteriaIntestineHeadache, abdominal discomfort, fever, diarrhoeaHygiene, boiled water, properly cooked food, vaccination
Ascariasis (roundworms)WormsIntestineWorms in stool, poor appetite, poor growth, anaemiaHygiene, boiled water, properly cooked food

Diseases transmitted by insects

DiseaseCausal agentSite of infectionSymptomsPreventive measures
MalariaProtozoaSkin, bloodHigh fever, sweating, periodic chillsMosquito nets/repellents, long sleeves, controlling mosquito breeding
Dengue feverVirusSkin, bloodFever, headache, joint/muscle pain, nauseaMosquito nets/repellents, avoiding stagnant water

Key precautions overall: keeping ourselves and our surroundings clean, washing hands with soap, covering the mouth and nose while coughing/sneezing, wearing a mask in crowded places, avoiding sharing personal items, keeping food and water clean, and staying home to rest when unwell.

A3.5Let Us Survey: Find the three most common lifestyle-related diseases in your neighbourhood and complete Table 3.2 with signs, symptoms, and suggested lifestyle changes.

Model completed Table 3.2 — Non-communicable diseases:

DiseaseSigns and symptomsSuggested lifestyle change(s)
ObesityExcess body weight for one's height, fatigue, joint pain, breathlessness on exertionEating a balanced diet and exercising regularly
DiabetesFrequent urination, excessive thirst, weight loss, tiredness, slow healingBalanced low-sugar diet, regular physical activity, weight management, monitoring blood sugar
High blood pressureOften no obvious symptoms; sometimes headache, dizziness, or blurred visionReduce salt intake, exercise regularly, manage stress, avoid smoking and alcohol
Heart diseaseChest discomfort, breathlessness, fatigueDiet low in saturated fat, regular exercise, avoiding smoking, managing stress

Answer: the exact three most common diseases will vary by neighbourhood and should ideally be confirmed by talking to a doctor, health worker, or family member as the activity suggests — but obesity, diabetes, and high blood pressure are commonly among the most reported lifestyle-related conditions across most Indian communities today.

A3.6Let Us Read: A community sanitation campaign in Bhadrak district, Odisha, increased toilet use and reduced open defecation, lowering child diarrhoea and infection cases. What do you infer from this case study?

Answer: this case study shows that simple public-health measures — in this case, improved sanitation through building and using toilets — can significantly reduce the spread of communicable diseases at a community level, especially diarrhoea and other infections in children.

This connects directly to how diseases spread through contaminated water and food: open defecation contaminates local water and soil, which then spreads pathogens to the wider community. Reducing open defecation cuts off this route of transmission. This shows that preventing disease isn't only about individual habits (like an individual washing their hands) — organised community-level action, like sanitation campaigns, can have an even larger impact on public health.

A3.7Let Us Infer: Study the infographic on antibiotic resistance. How do you think antibiotic resistance develops in bacteria, and what precautions can reduce it?

How antibiotic resistance develops: a few bacteria naturally carry random mutations that make them resistant to a particular antibiotic. When that antibiotic is used — especially unnecessarily, in the wrong dose, or for the wrong duration — it kills off the non-resistant bacteria, including helpful ones, but the resistant bacteria survive and multiply, eventually taking over the population. These resistant bacteria can also transfer their resistance to other bacteria, and can spread from animals (through food products) or hospitals (through surfaces and healthcare workers) into the wider community.

Precautions to reduce antibiotic resistance:

  • Take antibiotics only when prescribed by a doctor.
  • Complete the full prescribed dose and duration, even if symptoms improve early.
  • Avoid using antibiotics for viral infections, where they have no effect.
  • Avoid unnecessary antibiotic use in livestock and poultry.
  • Practise good hygiene to reduce the need for antibiotics in the first place.
Think Like a Scientist

Two Landmark Discoveries in the Chapter

2 Case Studies

🐄 Edward Jenner and the Smallpox Vaccine

Observation
Jenner noticed that milkmaids who had caught cowpox (a milder disease found in cows) never seemed to catch smallpox.
Hypothesis
Something in the pus of cowpox blisters protected people from smallpox, likely because the two viruses are closely related.
Experiment
He tested this by deliberately exposing a boy to material from a cowpox blister, then later exposing him to smallpox to see if he fell ill.
Result
The boy showed no illness when exposed to smallpox afterward — he had become resistant to it.
Application
This became the basis of the first vaccine, and mass vaccination eventually led to smallpox being fully eradicated worldwide by 1979.

🧫 Alexander Fleming and the Discovery of Penicillin

In 1928, Fleming, a bacteriologist, was studying harmful bacteria when he noticed that a mould growing on a discarded petri dish had stopped bacteria from growing near it. He worked out that the mould was releasing a substance that killed the bacteria — a chance discovery that led to penicillin, the first antibiotic used to treat bacterial infections, saving millions of lives since.

Extra Context

Beyond the Textbook: The Chapter's Interest Boxes

5 Facts

🌿 Ayurveda and balanced health

Ayurveda teaches that true health is a balance of body, mind, and surroundings. Following dinacharya (daily routine) and ritucharya (seasonal routine), eating food suited to one's prakriti (body constitution), and practising yoga and mindfulness are traditional ways to support this balance.

🧑‍🔬 Dr. Kamal Ranadive (1917–2001)

A pioneering Indian biomedical researcher who studied the links between hormones, certain viruses, and cancer — work that improved cancer treatment and prevention, and also showed how tobacco, diet, and pollution can raise cancer risk.

📜 India's traditional variolation practice

Long before modern vaccines, India used a traditional method called variolation to protect against smallpox — scratching the skin with material from a smallpox sore to trigger a mild, controlled infection and build immunity. Practitioners of this method were known as teekedaars.

💉 India's role in vaccine production

India is one of the world's largest vaccine producers, manufacturing at massive scale and supplying vaccines to many countries. Indian vaccine companies played a key role during the COVID-19 pandemic and continue supporting global health efforts.

🧑‍🔬 Dr. Maharaj Kishan Bhan

A well-known Indian doctor and scientist who, as Secretary of the Department of Biotechnology, helped develop the Rotavirus vaccine, which protects children from diarrhoea, and championed research-driven, affordable healthcare for India.

Chapter Exercises

Keep the Curiosity Alive

11 Questions
Q1Group the diseases shown — Cold and flu, Typhoid, Diabetes, Asthma, Chickenpox — as communicable or non-communicable.

Communicable: Cold and flu, Typhoid, Chickenpox — all caused by pathogens (viruses or bacteria) and capable of spreading from person to person.

Non-communicable: Diabetes, Asthma — both are linked to lifestyle, hormonal, or environmental factors rather than a spreadable pathogen.

Q2From (i) Typhoid, (ii) Asthma, (iii) Diabetes, (iv) Measles, identify the non-communicable diseases: (a) i and ii, (b) ii and iii, (c) i and iv, (d) ii and iv.

Answer: (b) ii and iii — Asthma and Diabetes. Both are non-communicable diseases linked to lifestyle and physiological factors, not pathogens. Typhoid (bacterial) and Measles (viral) are both communicable diseases, so options (a), (c), and (d) are incorrect.

Q3There is a flu outbreak in your school. (i) What immediate actions should the school take? (ii) How can you respond considerately to a sick bench-mate? (iii) How can you protect yourself and others?

(i) School actions: encourage visibly unwell students to go home and rest, ensure classrooms are well-ventilated, promote frequent handwashing and covering the mouth/nose while coughing or sneezing, consider masks in crowded areas, inform parents, and get common surfaces cleaned regularly.

(ii) Responding considerately to a sick classmate: gently suggest they visit the school nurse or rest at home, without shaming or excluding them; offer to share class notes so they don't feel left out, and be kind rather than making them feel guilty for being unwell.

(iii) Protecting yourself and others: wash hands frequently with soap, avoid touching your face, maintain some distance where possible, use a handkerchief or mask if needed, and avoid sharing water bottles, food, or personal items during the outbreak.

Q4Your family is travelling to a city where malaria is prevalent. (i) What precautions should you take before, during, and after the trip? (ii) How would you explain mosquito nets/repellents to a sibling? (iii) What could happen if travellers ignore health advisories?

(i) Precautions: before the trip, pack mosquito repellents and nets, and consult a doctor about any recommended preventive medication. During the trip, use repellents/nets, wear long-sleeved clothing, and avoid being outdoors at dawn and dusk when mosquitoes are most active. After returning, watch for symptoms like fever or chills for a couple of weeks and consult a doctor promptly if any appear.

(ii) Explaining to a sibling: mosquito nets and repellents work by creating a physical or chemical barrier that stops mosquitoes from biting us. Since malaria only spreads through the bite of an infected mosquito (a vector), avoiding bites entirely is the single most effective way to avoid catching it.

(iii) Ignoring health advisories: travellers risk contracting malaria themselves, delayed diagnosis and treatment leading to a more severe illness, and the possibility of unknowingly spreading the infection further if they become infected.

Q5Your uncle has started smoking to fit in with friends. (i) What would you say to make him stop, without being rude? (ii) What would you do if offered a cigarette at a party? (iii) How can schools help prevent such habits?

(i) I would express genuine concern rather than criticism — mentioning how smoking harms the lungs and heart and raises cancer risk over time, and pointing out that real friendship shouldn't require adopting a harmful habit to feel accepted.

(ii) I would politely but firmly decline the cigarette, say no clearly, and if the pressure continued, remove myself from that situation rather than give in.

(iii) Schools can run awareness programmes on the health effects of smoking, offer counselling support, maintain strict tobacco-free campus policies, and encourage positive peer groups and role models that don't normalise smoking or other harmful substances.

Q6Saniya tells Vinita, "Antibiotics can cure any infection, so we don't need to worry about diseases." What question(s) can Vinita ask to help Saniya see this is incorrect?

Vinita could ask:

  • "Do antibiotics work against viruses, like the ones that cause a cold or the flu?" (They don't — antibiotics only target bacteria.)
  • "If everyone takes antibiotics unnecessarily, could bacteria become resistant to them over time?" (Yes — this is exactly how antibiotic resistance develops.)
  • "Isn't it better to prevent infections through hygiene and vaccines, rather than relying on treating them afterward?" (Prevention avoids illness altogether, while antibiotics only treat certain infections after they occur.)

Conclusion: these questions should help Saniya realise that antibiotics only work on bacterial infections, don't cure viral or protozoal diseases, and overusing them creates a serious long-term problem — so they are not a substitute for disease prevention.

Q7Given monthly dengue case data for a year, make a bar graph and answer: (i) highest three months, (ii) lowest month(s), (iii) environmental factors during peak months, (iv) preventive steps before peak season.

Table — number of dengue cases reported in a hospital over one year:

S. No.123456
MonthJanuaryFebruaryMarchAprilMayJune
No. of dengue cases101215182240
S. No.789101112
MonthJulyAugustSeptemberOctoberNovemberDecember
No. of dengue cases656565303020

Bar graph — number of dengue cases by month:

Number of Dengue Cases →
706050403020100
10
12
15
18
22
40
65
65
65
30
30
20
JanFebMarAprMayJunJulAugSepOctNovDec
Month →

Scale — X-axis: 1 division = 1 month; Y-axis: 1 division = 10 dengue cases

(i) Highest three months: July, August, and September, each with 65 cases.

(ii) Lowest month: January, with 10 cases.

(iii) Environmental factors during peak months: July–September falls during and just after the monsoon, when stagnant water collects in puddles, containers, and drains — ideal breeding conditions for the Aedes mosquitoes that spread dengue. Warm, humid weather during this period further speeds up mosquito breeding and the dengue virus's development inside them.

(iv) Preventive steps before peak season: clearing stagnant water sources ahead of the monsoon, community fogging and mosquito-control drives, public awareness campaigns about covering water-storage containers, ensuring proper drainage in residential areas, and distributing mosquito nets/repellents before the risk period begins.

Q8Imagine you are in charge of a school health campaign. What key messages would you use to reduce communicable and non-communicable diseases?
  • Wash your hands regularly with soap, especially before eating.
  • Eat a balanced diet and limit junk food, oil, and sugar.
  • Stay physically active every day, and limit screen time.
  • Get vaccinated on schedule to prevent serious infections.
  • Say no to tobacco, alcohol, and other harmful substances.
  • Get enough sleep and manage stress through activities like yoga.
  • Cover your mouth and nose when coughing or sneezing, and stay home when unwell.
  • Keep your surroundings clean and avoid letting water stagnate.
  • See a doctor promptly if unwell, rather than self-medicating with antibiotics.
Q9It is recommended that we should not take an antibiotic for a viral infection like a cold, cough, or flu. What is the possible reason for this?

Answer: antibiotics work by targeting specific structures or processes found in bacterial cells — for example, components of the bacterial cell wall — which are completely absent in viruses, since viruses aren't even made of cells. This means antibiotics have nothing to act on in a viral infection and cannot kill or stop the virus.

Taking antibiotics unnecessarily for a viral infection like a cold, cough, or flu provides no benefit, but it does contribute to antibiotic resistance over time, and can also kill off helpful bacteria naturally present in the body — which is why doctors recommend against using antibiotics for viral illnesses.

Q10Which disease(s) among Hepatitis A, Tuberculosis, Poliomyelitis, Cholera, and Chickenpox may spread if drinking water gets contaminated by an infected person's excreta?

Answer: Hepatitis A, Poliomyelitis, and Cholera. These are all diseases that spread through the faecal-oral route, meaning the pathogen leaves an infected person's body in their excreta and can contaminate drinking water, later infecting someone who consumes that water.

Tuberculosis and Chickenpox, on the other hand, are not spread through water — TB spreads mainly through the air (via coughing), and Chickenpox spreads through the air and direct contact, not through contaminated water.

Q11The immune response is low on first exposure to a pathogen, but much stronger on a second exposure to the same pathogen. Why is this so?

Answer: on first exposure, the immune system has never encountered that particular pathogen before, so it takes time to recognise it and build up a response (called the primary response). During this process, however, the body produces memory cells that "remember" the specific pathogen and remain in the body long after the infection has cleared.

On a second exposure to the same pathogen, these memory cells recognise it immediately and trigger a much faster and stronger response (the secondary response) — often clearing the pathogen before any symptoms even appear. This is the biological basis of how both natural immunity and vaccines provide lasting protection against a disease.

Interdisciplinary Project

Discover, Design, and Debate

7 Prompts

These seven prompts are open-ended research, design, and debate projects rather than fixed-answer questions. Here's guidance on how to approach each one.

1Maintain a health diary for at least a month, tracking food, hygiene, exercise, sleep, screen time, and emotional state.

Guidance: create a simple daily table with columns for each factor — meals eaten, hours of sleep, minutes of exercise, hygiene habits followed, screen time, and a brief note on mood. Reviewing the diary after a month often reveals patterns — for example, days with less sleep may correlate with lower mood or more screen time. This mirrors the chapter's point that health depends on lifestyle habits that are within our own control to track and improve.

2Read about Indian scientists Suniti Solomon, Asima Chatterjee, Dr. Yellapragada Subbarao, and Dr. Mary Poonen Lukose for their contributions to health and disease.

Guidance: use trusted sources like your library, science textbooks, or educational websites for each scientist's contributions, and note down a couple of key facts about each — for example, their area of medical or scientific research, and one discovery or achievement they are known for. Presenting this as a short profile of each scientist, along with why their work mattered for public health in India, would make a strong response to this prompt.

3Research how smallpox was eradicated through vaccination and why it worked. Debate whether everyone should be required to get vaccinated to protect others.

Guidance on the research: smallpox was eradicated through a sustained global vaccination campaign that reduced cases dramatically between the 1960s and 1979 (as also shown in the chapter's graph), by building widespread immunity in the population and reducing the pathogen's ability to spread from person to person.

Guidance on the debate (both sides worth exploring): arguments in favour of mandatory vaccination often point to "herd immunity" — protecting people who cannot be vaccinated (like infants or those with certain medical conditions) by reducing overall disease spread, and citing smallpox eradication as proof mandatory-style campaigns can work. Arguments against mandatory requirements often raise concerns about personal choice and bodily autonomy, and the importance of building public trust through education rather than requirement. A balanced debate should consider both perspectives rather than assuming one is simply correct.

4Learn the correct sequence of steps for performing CPR on an adult, ideally through a demonstration by a doctor or professional.

Guidance: CPR (cardiopulmonary resuscitation) generally follows a sequence of checking responsiveness and calling for emergency help, followed by chest compressions and, where trained, rescue breaths — but the exact technique, hand placement, compression depth, and timing require hands-on supervised practice to perform safely and correctly. This is exactly why the activity recommends inviting a doctor or certified professional for a mock drill rather than learning it only from a written description — proper CPR training (for example, through a Red Cross or St. John Ambulance certified course) ensures the technique is learned correctly under guidance.

5Invite a doctor to school and interact with them about malnutrition, under-nutrition, and over-nutrition.

Guidance: prepare a few thoughtful questions in advance, such as: What are common early signs of under-nutrition or over-nutrition in children? How does malnutrition affect growth and immunity? What role does a balanced diet play in preventing both under- and over-nutrition? How common are these conditions in our region, and what can families do to prevent them? Taking notes during the session and summarising the doctor's key advice afterward would make for a strong write-up of this activity.

6If given the opportunity to create a health card, what would you include in it? Create your own health card.

Guidance — useful fields for a personal health card:

  • Name, age, blood group, and emergency contact details.
  • Known allergies or chronic conditions (if any).
  • Vaccination record/history.
  • Height and weight, tracked periodically.
  • A short section on daily habits — diet, exercise, and sleep routine.

A health card like this is useful both for personal tracking and in emergencies, when quick access to key health information can matter.

7Have a debate on: "Are there ill-effects of fast food on companion animals?"

Guidance on the debate (both sides worth exploring): one side could argue that fast food and other human food is typically high in salt, sugar, and fat, and can cause health problems in pets over time — such as obesity, digestive upset, pancreatitis, or kidney strain — since animals' bodies process food differently from humans. The other side could argue that occasional small treats, in moderation and under guidance, are unlikely to cause serious harm, and that the real risk depends on quantity, frequency, and the specific food involved (some human foods are genuinely toxic to pets, like chocolate or onions, while others are just less ideal nutritionally). A well-rounded debate would research veterinary guidance on this topic rather than relying only on assumptions.

Common Questions

Frequently Asked Questions

The World Health Organization defines health as a state of complete physical, mental, and social well-being, and not merely the absence of disease. This means a healthy person takes care of their body, maintains a positive mindset, and enjoys good relationships — not just avoiding illness.
Communicable diseases are caused by pathogens (bacteria, viruses, fungi, worms, or protozoa) and can spread from one person to another — examples include typhoid, dengue, flu, and chickenpox. Non-communicable diseases, like cancer, diabetes, and asthma, are not caused by pathogens and do not spread between people; they are usually linked to lifestyle, diet, or environment.
A symptom is what a person feels, like pain, tiredness, or dizziness — it can't be directly measured by someone else. A sign is something that can be seen or measured, like a fever, rash, high blood pressure, or swelling. Doctors use both symptoms (as reported by the patient) and signs (as observed or measured) to diagnose illness.
Antibiotics work by targeting specific structures or processes found in bacterial cells, such as the bacterial cell wall, which viruses simply don't have — viruses aren't even made of cells. Since there is nothing for an antibiotic to act on in a virus, taking antibiotics for a viral infection like a cold or flu has no benefit, and unnecessary use can contribute to antibiotic resistance.
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Keep Going

Continue to Chapter 4: Electricity

Now that health and disease are covered, move on to the magnetic and heating effects of electric current, revisit Chapter 2, or book a free demo class for personalised coaching.

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