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SCIENCE
Week 5
Changes in Materials
In this new lessons, you are expected to
describe changes in the properties of materials
when exposed to certain conditions such as
temperature or when mixed with other
materials.
Try to sip some iced tea or cold water while you
are going through all the learning tasks in this
module. What did you feel? Don`t you know that
cold water have more dissolved oxygen that`s why it
feels better to sip cold drinks than a non-cold
drinks? Recall what happened to ice cubes when
they were exposed to heat. The ice cubes melted.
What made the ice cube melted? See figure 3. below.
Effect of Temperature in the Phases of Materials
At constant pressure, the state of materials
depends on the temperature by which they are
exposed. The ice cube or the solid phase of water,
as seen in Figure 3 above will melt if taken out of a
freezer and stayed long at room temperature. The
water that boils turned into gas or vapor that comes
out of the kettle if left at high temperature for too
long.
Temperature is the measurement of the
amount of heat energy present in the
surroundings. There is an exchange of heat
between the substance and the surroundings.
This means that heat can be absorbed by the
materials or can be released by the materials.
When the heat is absorbed by the
materials, the temperature will increase, thus
the material is hot. If heat is removed or
released by the materials, temperature will
decrease, thus it is cold.
Temperature varies depending on the
environment from where the materials are
exposed. For example, we feel very hot during
summer days because of the intense heat of the
sun. Some places in our country registered a
temperature of 40 °C.
This is very hot because our normal body
temperature is about 37 °C. If your temperature
is above 37°C , you may experience fever. This
is the reason why you are advised by doctor to
take medicine and take plenty of water to lower
the temperature.
Another changes in the materials due to the
application of heat is called melting. This
process that happens when solid material
changes into liquid form. The heat coming from
the environment made the ice cubes melted
when they are removed from freezer.
The temperature in the freezer is O °C (read
as zero degree centigrade or zero degree
Celsius). Thus, when ice cubes were exposed to
heat in the environment, the high temperature of
the environment caused the melting of ice
cubes.
Generally, an increase in the temperature
turns solids into liquids (melting), liquid to solid
(freezing), liquid into gases (evaporation), solid
into gas (sublimation), and boils water at certain
point (boiling ).
When materials reached its melting point,
solid materials changed into liquid. The
temperature at which the liquid will change back
to solid is called its freezing point. The melting
point of ice is 00C, this is also the freeing point
of water. The boiling point, or the temperature at
which water boils, and turned into gas is 100 °C .
That is why water exists in three phases
depending on the condition by which its exposed
to different temperature. If the change is from gas
to liquid as the temperature falls below it, it is the
condensation point.
The state of substances in solid, liquid or gas
phases is largely determined by its temperature.
At each threshold level of temperature, the
material will change its state. These changes
may either be physical changes or chemical
changes.
Physical changes like melting of ice cubes, lighted
candles, floor wax, margarine , chocolate bar, crayons,
and butter resulted to changes in their shape, sizes
and texture. There are no new materials formed.
When cooled, these materials recover their original
physical state.
Metals expand when heated and contracts when
cooled. They resulted to changes in size. Some
materials when exposed to heat or different conditions
of temperature resulted to chemical changes. Burning
of woods and matchsticks turned the materials into
ashes.
Combustion of engines results to burning of fuels that
causes the cars and airplanes to move or run its functions.
Combustion, also known as burning, is the basic chemical
process of releasing energy from a fuel and air mixture. In
an internal combustion engine (ICE), the ignition and
combustion of the fuel occurs within the engine itself. The
engine then partially converts the energy from the
combustion to work.
Change in Materials When
Mixed with Other Materials
Mixture is a substance made by mixing other
substances together. It is the product of the random
distribution of one substance through another without
any chemical reaction, as distinct for a compound. ike
in halo-halo and wet clothes where water is mixed with
the fabric.
Types of Mixtures
Mixed materials can be classified depending on the
appearance of the resulting mixture. When solid materials
are mixed with solid materials, each of the combined/
mixed materials can be easily identified/ distinguished from
one another. These mixtures are called heterogenous
mixtures. In halo-halo, you can easily identify or distinguish
the ingredients . It is a heterogenous mixture. Each
property of the materials in heterogenous mixtures do not
change. Their sizes, shape and color remain the same after
mixing them together.
Some solid materials when mixed with other solid
materials cannot be distinguished from each other. The
resulting mixture looked the same all throughout. When
sugar is dissolved in water, you cannot distinguish sugar
in the solution. This kind of mixture is called homogenous
mixture. Examples of these are liquid medicines, sugar
and a salt solution. Examples of homogenous mixtures
include salt dissolved in water or a salt solution and juice
drinks.
Science Week 5.pptx
Science Week 5.pptx
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Science Week 5.pptx

  • 2. Changes in Materials In this new lessons, you are expected to describe changes in the properties of materials when exposed to certain conditions such as temperature or when mixed with other materials.
  • 3. Try to sip some iced tea or cold water while you are going through all the learning tasks in this module. What did you feel? Don`t you know that cold water have more dissolved oxygen that`s why it feels better to sip cold drinks than a non-cold drinks? Recall what happened to ice cubes when they were exposed to heat. The ice cubes melted. What made the ice cube melted? See figure 3. below.
  • 4.
  • 5. Effect of Temperature in the Phases of Materials At constant pressure, the state of materials depends on the temperature by which they are exposed. The ice cube or the solid phase of water, as seen in Figure 3 above will melt if taken out of a freezer and stayed long at room temperature. The water that boils turned into gas or vapor that comes out of the kettle if left at high temperature for too long.
  • 6. Temperature is the measurement of the amount of heat energy present in the surroundings. There is an exchange of heat between the substance and the surroundings. This means that heat can be absorbed by the materials or can be released by the materials.
  • 7. When the heat is absorbed by the materials, the temperature will increase, thus the material is hot. If heat is removed or released by the materials, temperature will decrease, thus it is cold.
  • 8. Temperature varies depending on the environment from where the materials are exposed. For example, we feel very hot during summer days because of the intense heat of the sun. Some places in our country registered a temperature of 40 °C.
  • 9. This is very hot because our normal body temperature is about 37 °C. If your temperature is above 37°C , you may experience fever. This is the reason why you are advised by doctor to take medicine and take plenty of water to lower the temperature.
  • 10. Another changes in the materials due to the application of heat is called melting. This process that happens when solid material changes into liquid form. The heat coming from the environment made the ice cubes melted when they are removed from freezer.
  • 11. The temperature in the freezer is O °C (read as zero degree centigrade or zero degree Celsius). Thus, when ice cubes were exposed to heat in the environment, the high temperature of the environment caused the melting of ice cubes.
  • 12. Generally, an increase in the temperature turns solids into liquids (melting), liquid to solid (freezing), liquid into gases (evaporation), solid into gas (sublimation), and boils water at certain point (boiling ).
  • 13.
  • 14. When materials reached its melting point, solid materials changed into liquid. The temperature at which the liquid will change back to solid is called its freezing point. The melting point of ice is 00C, this is also the freeing point of water. The boiling point, or the temperature at which water boils, and turned into gas is 100 °C .
  • 15. That is why water exists in three phases depending on the condition by which its exposed to different temperature. If the change is from gas to liquid as the temperature falls below it, it is the condensation point.
  • 16. The state of substances in solid, liquid or gas phases is largely determined by its temperature. At each threshold level of temperature, the material will change its state. These changes may either be physical changes or chemical changes.
  • 17. Physical changes like melting of ice cubes, lighted candles, floor wax, margarine , chocolate bar, crayons, and butter resulted to changes in their shape, sizes and texture. There are no new materials formed. When cooled, these materials recover their original physical state.
  • 18. Metals expand when heated and contracts when cooled. They resulted to changes in size. Some materials when exposed to heat or different conditions of temperature resulted to chemical changes. Burning of woods and matchsticks turned the materials into ashes.
  • 19.
  • 20. Combustion of engines results to burning of fuels that causes the cars and airplanes to move or run its functions. Combustion, also known as burning, is the basic chemical process of releasing energy from a fuel and air mixture. In an internal combustion engine (ICE), the ignition and combustion of the fuel occurs within the engine itself. The engine then partially converts the energy from the combustion to work.
  • 21. Change in Materials When Mixed with Other Materials Mixture is a substance made by mixing other substances together. It is the product of the random distribution of one substance through another without any chemical reaction, as distinct for a compound. ike in halo-halo and wet clothes where water is mixed with the fabric.
  • 22. Types of Mixtures Mixed materials can be classified depending on the appearance of the resulting mixture. When solid materials are mixed with solid materials, each of the combined/ mixed materials can be easily identified/ distinguished from one another. These mixtures are called heterogenous mixtures. In halo-halo, you can easily identify or distinguish the ingredients . It is a heterogenous mixture. Each property of the materials in heterogenous mixtures do not change. Their sizes, shape and color remain the same after mixing them together.
  • 23. Some solid materials when mixed with other solid materials cannot be distinguished from each other. The resulting mixture looked the same all throughout. When sugar is dissolved in water, you cannot distinguish sugar in the solution. This kind of mixture is called homogenous mixture. Examples of these are liquid medicines, sugar and a salt solution. Examples of homogenous mixtures include salt dissolved in water or a salt solution and juice drinks.