Question on bulb and brightness

In summary, an increase in resistance in a bulb leads to an increase in brightness, while a decrease in resistance causes a decrease in brightness. The voltage supply is constant and reducing resistance is important for maximizing brightness. There may be a relationship between current and brightness, but it is not clear and requires further examination.
  • #1
seto6
251
0
EDIT: NOT A HOMEWORK PROBLEM

in a bulb increase in resistance means that there is a increase in brightness.if there is a decrease in resistance means that decrease in brightness.

is the statement correct ?

one more question does the brightness depend on current
say we have same R , if i increase the current does the brightness change?

say you have the same resistance if you increase the current does the brightness change?
 
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  • #2
Not sure if this is homework so a small hint:

Voltage is constant, right? Keep that in mind and examine the two equations that relate voltage, amperage, wattage and resistance.
 
  • #3
that helps but this is not a home work question this is something that bothered me as i was reading the textbook
 
  • #4
so i think since resistance increases the thermal energy as the resistance increase the thermal energy increases so as thermal energy increases the brightness increase.

but not sure if the current affects it..?
 
  • #5
The power output of a resistive element is V²/R. If you keep applied voltage constant, increasing resistance would reduce power output.

This is even more critical to light bulbs, because reducing power output reduces temperature, and that reduces amount of visible light generated as a fraction of total output.

In other words, given a fixed voltage supply, you want as low a resistance as possible to maximize brightness.
 

Related to Question on bulb and brightness

1. What is the relationship between the wattage of a bulb and its brightness?

The wattage of a bulb refers to the amount of power it consumes. Generally, the higher the wattage, the brighter the bulb will be. However, with advancements in lighting technology, this relationship is not always linear and may vary depending on the type of bulb.

2. How does the type of bulb affect its brightness?

The type of bulb can greatly affect its brightness. Incandescent bulbs produce a warm, yellowish light and are typically brighter than LED or CFL bulbs. LED bulbs, on the other hand, can vary in brightness depending on the number of diodes and their design. CFL bulbs tend to produce a cooler, bluish light and may not be as bright as incandescent bulbs.

3. Is there a standard measurement for brightness in bulbs?

Yes, the standard unit of measurement for brightness in bulbs is the lumen. This measures the amount of visible light emitted by a bulb. The higher the lumen, the brighter the bulb will appear.

4. Can the brightness of a bulb be adjusted?

Yes, the brightness of a bulb can be adjusted through various means. Incandescent bulbs can be dimmed using a dimmer switch, while LED and CFL bulbs may have dimming capabilities built into them. Additionally, the brightness of a bulb can also be adjusted by using lamp shades or covers to diffuse the light.

5. How can I choose the right bulb for the desired brightness?

When choosing a bulb for a specific brightness level, it is important to look at the lumen output and not just the wattage. Additionally, consider the type of bulb, as well as the color temperature (measured in Kelvin) for the desired level of brightness. You can also use online calculators or consult with a lighting professional for assistance in selecting the right bulb.

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