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CBSE Questions

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Answered on 02 Feb Learn CBSE/Class 8/Science/Combustion and Flame

Pooja R. Jain

Solid fuels are materials that exist in a solid state and can be used as a source of energy. Here are two examples of solid fuels: Coal: Coal is one of the most widely used solid fuels. It is a combustible black or brownish-black sedimentary rock primarily composed of carbon, along with various... read more

Solid fuels are materials that exist in a solid state and can be used as a source of energy. Here are two examples of solid fuels:

  1. Coal: Coal is one of the most widely used solid fuels. It is a combustible black or brownish-black sedimentary rock primarily composed of carbon, along with various other elements. Coal has been a significant source of energy for centuries and is used for electricity generation, heating, and industrial processes.

  2. Wood: Wood is a traditional and renewable solid fuel. It has been used for heating and cooking for thousands of years. Different types of wood, such as hardwood and softwood, are burned to produce heat. Wood pellets and logs are commonly used in residential stoves and fireplaces for space heating. Wood is considered a renewable resource because new trees can be planted to replace those that are harvested for fuel.

 
 
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Answered on 02 Feb Learn CBSE/Class 8/Science/Combustion and Flame

Pooja R. Jain

Fuels can be classified based on their states of matter into three main categories: solid fuels, liquid fuels, and gaseous fuels. Here's a classification of fuels based on states: Solid Fuels: Examples: Coal, wood, charcoal, peat, biomass (solid organic matter), and coke. Solid fuels are typically... read more

Fuels can be classified based on their states of matter into three main categories: solid fuels, liquid fuels, and gaseous fuels. Here's a classification of fuels based on states:

  1. Solid Fuels:

    • Examples: Coal, wood, charcoal, peat, biomass (solid organic matter), and coke.
    • Solid fuels are typically in a solid state at room temperature and are burned to release energy.
  2. Liquid Fuels:

    • Examples: Gasoline, diesel, kerosene, biodiesel, ethanol, and fuel oils.
    • Liquid fuels are in a liquid state at room temperature and are commonly used in transportation, heating, and various industrial processes.
  3. Gaseous Fuels:

    • Examples: Natural gas, propane, butane, methane, hydrogen, and syngas (a mixture of carbon monoxide and hydrogen).
    • Gaseous fuels are in a gaseous state at room temperature and are often used for heating, cooking, and as fuels for engines and turbines.

Each category of fuels has its own set of advantages and disadvantages, and their applications can vary based on factors such as energy density, ease of transportation, and environmental considerations. The choice of fuel depends on the specific requirements of a given application.

 
 
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Answered on 02 Feb Learn CBSE/Class 8/Science/Combustion and Flame

Pooja R. Jain

The principle of fire extinguishing involves removing one or more elements of the fire triangle, which consists of three essential components necessary for a fire to occur: fuel, oxygen, and heat. By eliminating or interrupting one or more of these elements, the fire can be extinguished. There are... read more

The principle of fire extinguishing involves removing one or more elements of the fire triangle, which consists of three essential components necessary for a fire to occur: fuel, oxygen, and heat. By eliminating or interrupting one or more of these elements, the fire can be extinguished. There are several methods and types of fire extinguishers designed to achieve this goal:

  1. Cooling:

    • Fire requires heat to sustain combustion. Cooling involves reducing the temperature of the burning material below its ignition point. Water and certain types of fire extinguishing agents, like foam, work by absorbing heat and cooling the fuel, thus interrupting the combustion process.
  2. Smothering or Oxygen Deprivation:

    • Removing or reducing the oxygen supply prevents combustion. Fire extinguishers often use agents such as carbon dioxide, dry chemical powders, or foam to displace or dilute the concentration of oxygen around the fire. This interrupts the chemical reaction necessary for combustion.
  3. Fuel Removal:

    • Removing the fuel source prevents the fire from continuing. This can involve physically removing combustible materials or using fire retardants that create a barrier to prevent the fuel from reaching the ignition source.
  4. Chemical Inhibition:

    • Some fire extinguishing agents work by inhibiting the chemical reactions that sustain combustion. Halon, though now largely phased out due to environmental concerns, was an example of a chemical compound that interfered with the combustion process.
  5. Chain Reaction Disruption:

    • Certain fire suppression methods aim to disrupt the chain reaction of the fire triangle. For instance, some foam extinguishers work by forming a blanket that separates the fuel from the oxygen, preventing further combustion.

Understanding the specific type of fire and the nature of the materials involved is crucial in choosing the appropriate fire extinguishing method. Different fire extinguishers are designed for different classes of fires (e.g., Class A for ordinary combustibles, Class B for flammable liquids, Class C for electrical fires, etc.), and using the wrong type can be ineffective or even dangerous. Training in fire safety and the proper use of fire extinguishers is essential for effective fire prevention and response.

 
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Answered on 02 Feb Learn CBSE/Class 8/Science/Combustion and Flame

Pooja R. Jain

A forest fire, also known as a wildfire or a bushfire, is an uncontrolled fire that spreads rapidly through vegetation, trees, and other combustible materials in a forested or wooded area. Forest fires can vary in size and intensity, ranging from small ground fires to large and destructive conflagrations. Here... read more

A forest fire, also known as a wildfire or a bushfire, is an uncontrolled fire that spreads rapidly through vegetation, trees, and other combustible materials in a forested or wooded area. Forest fires can vary in size and intensity, ranging from small ground fires to large and destructive conflagrations.

Here are key features of forest fires:

  1. Ignition:

    • Forest fires can be ignited by various sources, including lightning, human activities (such as campfires, discarded cigarettes, or intentional arson), and, less commonly, volcanic activity.
  2. Spread:

    • Once ignited, a forest fire can spread quickly, driven by factors like wind, dry conditions, and the presence of flammable vegetation. Fires can leap from treetop to treetop, travel along the forest floor, and even jump natural or man-made barriers like rivers or roads.
  3. Intensity:

    • The intensity of a forest fire depends on factors such as fuel availability, weather conditions, and topography. High-intensity fires can lead to crown fires, where flames move through the canopy of trees.
  4. Effects:

    • Forest fires can have significant ecological, environmental, and economic impacts. They can destroy wildlife habitats, contribute to air pollution by releasing large amounts of smoke and particulate matter, and cause soil erosion. The loss of vegetation also increases the risk of landslides and flash floods.
  5. Control and Management:

    • Fire management strategies may include controlled burns, where fires are intentionally set under controlled conditions to reduce fuel loads and minimize the risk of larger, uncontrolled fires. Firebreaks, which are cleared areas designed to impede the progress of a fire, are also used as a preventive measure.

Forest fires are a natural part of many ecosystems, playing a role in clearing dead vegetation and promoting the growth of certain plant species. However, uncontrolled and widespread fires can pose serious threats to both human and environmental well-being. Efforts are made globally to prevent, manage, and suppress forest fires through fire management practices and firefighting efforts.

 
 
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Answered on 02 Feb Learn CBSE/Class 8/Science/Combustion and Flame

Pooja R. Jain

A fire brigade, also known as a fire department or fire service, plays a crucial role in responding to emergencies involving fires and other incidents. The operations of a fire brigade are structured to efficiently and effectively handle various situations. Here's an overview of how a fire... read more

A fire brigade, also known as a fire department or fire service, plays a crucial role in responding to emergencies involving fires and other incidents. The operations of a fire brigade are structured to efficiently and effectively handle various situations. Here's an overview of how a fire brigade typically works:

  1. Emergency Dispatch:

    • The process often begins with the receipt of an emergency call reporting a fire or other incidents such as rescues, hazardous materials incidents, or medical emergencies. Emergency calls are received by a central dispatch center, which coordinates the response.
  2. Response and Arrival:

    • Upon receiving a call, firefighters are alerted and dispatched to the location of the incident. Fire stations are strategically located to ensure quick response times. Firefighters respond in specialized vehicles, including fire engines and rescue trucks, equipped with firefighting equipment and tools.
  3. Incident Command System:

    • Upon arrival at the scene, the fire brigade employs an Incident Command System (ICS) to manage and coordinate the response. This system establishes a clear chain of command and ensures effective communication among emergency responders.
  4. Size-Up and Assessment:

    • Firefighters conduct a quick size-up of the incident, assessing factors such as the type and size of the fire, potential hazards, and the presence of people who may need assistance. This information helps determine the appropriate firefighting tactics and resource allocation.
  5. Fire Suppression:

    • Firefighters use various techniques and equipment to suppress and control the fire. This may include deploying hoses, using water or fire-retardant chemicals, and employing specialized tools to access and extinguish flames.
  6. Rescue Operations:

    • In addition to firefighting, fire brigades are trained to conduct rescue operations. This may involve rescuing individuals from burning buildings, extricating people from vehicles involved in accidents, or responding to other life-threatening situations.
  7. Medical Assistance:

    • Many fire departments are trained to provide basic medical assistance. Firefighters may administer first aid, perform CPR, or assist paramedics and emergency medical services in treating injured individuals.
  8. Hazmat Response:

    • Fire brigades are equipped to handle incidents involving hazardous materials. Specialized teams are trained to identify, contain, and mitigate the effects of hazardous substances.
  9. Fire Prevention and Education:

    • Fire brigades are involved in community outreach and education programs to promote fire prevention. This includes conducting fire safety inspections, offering educational programs to schools and businesses, and promoting the importance of smoke alarms and other safety measures.
  10. Post-Incident Operations:

    • After the incident is under control, firefighters conduct post-incident operations, including salvage and overhaul activities to prevent re-ignition and mitigate further damage.

Fire brigades operate under established protocols, training, and coordination to ensure a swift and effective response to emergencies. Regular training and drills are conducted to keep firefighters prepared for various scenarios. The goal is to protect life, property, and the environment while promoting fire safety and prevention within the community.

 
 
 
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