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 Page 1


• It is the transfer of heat from one body to other body by 
means of physical contact.
•Its majorly can seen in solids .
•It can also be seen in liquids and gases but its 
negligible. 
Page 2


• It is the transfer of heat from one body to other body by 
means of physical contact.
•Its majorly can seen in solids .
•It can also be seen in liquids and gases but its 
negligible. 
Physical mechanism
There are 2 mechanisms 
1)By molecular interactions
Page 3


• It is the transfer of heat from one body to other body by 
means of physical contact.
•Its majorly can seen in solids .
•It can also be seen in liquids and gases but its 
negligible. 
Physical mechanism
There are 2 mechanisms 
1)By molecular interactions
1) Molecular interaction
on taking heat, the molecules remains stationary but they 
vibrate in their lattice which imparts energy on 
neighbouring particles in the direction of low temperature 
and hence conduction takes place.
2)By drift of free electrons
• In case of metals they have more free electrons which 
moves and collides with other electrons on supplying heat 
energy thus causes the heat transfer.
Page 4


• It is the transfer of heat from one body to other body by 
means of physical contact.
•Its majorly can seen in solids .
•It can also be seen in liquids and gases but its 
negligible. 
Physical mechanism
There are 2 mechanisms 
1)By molecular interactions
1) Molecular interaction
on taking heat, the molecules remains stationary but they 
vibrate in their lattice which imparts energy on 
neighbouring particles in the direction of low temperature 
and hence conduction takes place.
2)By drift of free electrons
• In case of metals they have more free electrons which 
moves and collides with other electrons on supplying heat 
energy thus causes the heat transfer.
EXAMPLES
In Manufacturing In Heat Exchanger
In Electronics
In Everyday 
Life
Page 5


• It is the transfer of heat from one body to other body by 
means of physical contact.
•Its majorly can seen in solids .
•It can also be seen in liquids and gases but its 
negligible. 
Physical mechanism
There are 2 mechanisms 
1)By molecular interactions
1) Molecular interaction
on taking heat, the molecules remains stationary but they 
vibrate in their lattice which imparts energy on 
neighbouring particles in the direction of low temperature 
and hence conduction takes place.
2)By drift of free electrons
• In case of metals they have more free electrons which 
moves and collides with other electrons on supplying heat 
energy thus causes the heat transfer.
EXAMPLES
In Manufacturing In Heat Exchanger
In Electronics
In Everyday 
Life
Fourier's law of conduction
• Rate of heat conduction is proportional to the area
measured normal to the direction of heat flow, and to the 
temperature gradient in that direction.
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FAQs on PPT: Conduction - 1D - Heat Transfer - Mechanical Engineering

1. What is conduction in one dimension?
Ans. Conduction in one dimension refers to the transfer of heat through a material or substance in a straight line, without any variation in temperature or properties in other directions. It can occur in solids, liquids, and gases, and is governed by the flow of energy from higher to lower temperature regions.
2. How does conduction occur in one dimension?
Ans. Conduction in one dimension occurs due to the movement of heat energy through direct contact between particles of a substance. The higher energy particles transfer their energy to neighboring particles with lower energy, leading to the overall transfer of heat along a one-dimensional path.
3. What factors affect conduction in one dimension?
Ans. Several factors influence conduction in one dimension. The thermal conductivity of the material, the temperature difference across the material, the cross-sectional area of the material, and its length all play a role in determining the rate of heat transfer through conduction in one dimension.
4. Can conduction occur in fluids?
Ans. Yes, conduction can occur in fluids, although it is relatively less efficient compared to conduction in solids. In fluids, conduction primarily takes place through molecular collisions and is more significant in liquids than in gases due to the closer proximity of particles in liquids.
5. How is conduction different from convection and radiation?
Ans. Conduction, convection, and radiation are three modes of heat transfer. Conduction involves the direct transfer of heat through contact between particles, while convection involves the transfer of heat through the movement of fluid particles. Radiation, on the other hand, is the transfer of heat through electromagnetic waves. Unlike conduction and convection, radiation does not require a medium and can occur even in a vacuum.
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