here is it answer.....
Because the lamp filament is physically very small and dissipates a relatively large amount of power (say, 60W for a typical incandescent bulb), while the conductors which feed it are relatively large and of negligible resistance, so they dissipate very little power, for a relatively large conductor area. How hot a component gets from resistive heating is proportional to its power dissipation, and inversely proportional to its area/size.
Thus if you dissipate, say 60W of power in a tiny lamp filament, it will get hot enough to become (surprise !!) incandescent, while the conductors which supply it (which dissipate perhaps a fraction of a watt for many feet of conductor length) will experience no significant temperature rise.
In fact, applicable electrical codes mandate that circuit conductors be sized large enough and provided with appropriate overcurrent protection, so that no significant conductor heating can take place.
loses electrons.
gains electrons.
gains neutrons.
An element becomes a positively charged ion when it losses electron.
Charged material experiences a force when it is exposed to an electromagnetic field due to the physical property of electric charge. You can have a positive ornegative electric charge (commonly carried by protons and electrons respectively). Unlike charges attract one another while like charges repel one another. Neutral refers to an object that carries no net charge.
Electric charge is a conserved attribute, meaning that the net charge—that is, the sum of the positive and negative charges in an isolated system—cannot change. Subatomic particles carry an electric charge. In the nuclei of atoms, protons have positive charge and electrons carry negative charge in normal matter.
So, an element becomes a positively charged ion when it loses negative charge, that is, electron.
Learn more about electric charges here:
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The six forms of energy are chemical, thermal, nuclear, electrical, mechanical, and light energy. Each has different characteristics and uses, such as chemical energy being stored in potential changes or light energy being visible to the human eye.
Energy exists in many forms. Here are six common forms of energy:
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A. where oceanic crust slides under continental crust.
O
B. in the middle of continents.
O
c. where two continental plates spread apart.
D. on the edges of the Atlantic plate,
Answer:
A is right
Explanation:
a ball being thrown straight up would excel faster.
Which of these go under- Earths Rotation and which go under- Earths Revolution
the Moon's movement
during one night
changing seasons
a sunrise
the Sun's changing
midday height over
several days
passing years
a sunset