Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Appropriate assessment of disparity in some electrical parameters of selected bulbs

View through CrossRef
The complaints, worries and dissatisfactions accrued to bulb users prompted the quest of this research. The objective of the research is to suitably assess few electrical parameters of bulbs available in the market in order to have an experimental proof of the disparity in their ratings. In the research experimental data, incandescent bulbs (100W and 200W), LED bulb (5W) and CFL bulb (40W) (of different powers) were selected for evaluation. The power and lux of the bulbs were measured and compared correspondingly using the incandescent bulbs as reference bulbs for lux comparison. The new double T8 full range & ac/dc power meter with dimmer was instrument used to measure power and other associated electrical parameters (current and voltage) of the bulbs. The measurement results show that incandescent bulb of 100W measured 60.1W and the 200W measured 184.0W. The power of the 5W LED and 40W CFL bulbs measured 7.2W and 22.2W respectively. On this note, it is invariably obvious that there exists disparity in power rating of the bulbs accessible in our present day market. The digital luxmetre was used to measure lux (luminous flux per unit area or lumen per metre square) of the bulbs. In the lux measurement, the luxmetre’s sensor was placed 50cm away from the bulb’s position to obtain exact or close values to original bulbs’ lux. Consequential to the bulbs lux comparisons, the lux value of 5W LED and 40W CFL bulbs have illuminances of 507lm/m2 and 568lm/m2 respectively higher than lux of 100W incandescent bulb. Hence, lux values of the LED and CFL bulbs measurements fall in-between lux values of 100W and 200W incandescent bulbs. Critical evaluation of the results tends to establish that luminosity (luminous flux per area) of bulb does not depend on power.
Title: Appropriate assessment of disparity in some electrical parameters of selected bulbs
Description:
The complaints, worries and dissatisfactions accrued to bulb users prompted the quest of this research.
The objective of the research is to suitably assess few electrical parameters of bulbs available in the market in order to have an experimental proof of the disparity in their ratings.
In the research experimental data, incandescent bulbs (100W and 200W), LED bulb (5W) and CFL bulb (40W) (of different powers) were selected for evaluation.
The power and lux of the bulbs were measured and compared correspondingly using the incandescent bulbs as reference bulbs for lux comparison.
The new double T8 full range & ac/dc power meter with dimmer was instrument used to measure power and other associated electrical parameters (current and voltage) of the bulbs.
The measurement results show that incandescent bulb of 100W measured 60.
1W and the 200W measured 184.
0W.
The power of the 5W LED and 40W CFL bulbs measured 7.
2W and 22.
2W respectively.
On this note, it is invariably obvious that there exists disparity in power rating of the bulbs accessible in our present day market.
The digital luxmetre was used to measure lux (luminous flux per unit area or lumen per metre square) of the bulbs.
In the lux measurement, the luxmetre’s sensor was placed 50cm away from the bulb’s position to obtain exact or close values to original bulbs’ lux.
Consequential to the bulbs lux comparisons, the lux value of 5W LED and 40W CFL bulbs have illuminances of 507lm/m2 and 568lm/m2 respectively higher than lux of 100W incandescent bulb.
Hence, lux values of the LED and CFL bulbs measurements fall in-between lux values of 100W and 200W incandescent bulbs.
Critical evaluation of the results tends to establish that luminosity (luminous flux per area) of bulb does not depend on power.

Related Results

EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Immunomodulatory Impacts of Bulbs Extracts From Five Allium Species on IFN-γ, IL-4, and IL-17 Cytokines
Immunomodulatory Impacts of Bulbs Extracts From Five Allium Species on IFN-γ, IL-4, and IL-17 Cytokines
Background: Nowadays, the impacts of medicinal plants on immune-related diseases are one of the main pharmacological approaches. Thus, here, the modulatory potential of some Allium...
Paclobutrazol and Uniconazole Solutions Maintain Efficacy after Multiple Lily Bulb Dip Events
Paclobutrazol and Uniconazole Solutions Maintain Efficacy after Multiple Lily Bulb Dip Events
One of the problems associated with preplant bulb dips into plant growth regulator (PGR) solutions is the lack of knowledge of solution efficacy as an increasing number of bulbs ar...
Why is horizontal disparity important for stereo depth?
Why is horizontal disparity important for stereo depth?
Why is horizontal disparity important for stereo depth? Horizontal disparity plays an important role in theories of stereopsis and in the creation of stereoscopic s...
Potential of rosemary leaves and branches to enhance storage life of onion bulbs
Potential of rosemary leaves and branches to enhance storage life of onion bulbs
ABSTRACT Although its importance as vegetable, a considerable amount of onion bulbs is lost in storage. That's why storage condition is one of the most important issues to maintain...
Linton Scale Illusion
Linton Scale Illusion
We present a new illusion that challenges our understanding of visual scale. Since Helmholtz’s ‘telestereoscope’ (1857), we’ve known that stereo vision governs visual scale, turnin...
Visual Scale is Governed by Horizontal Disparities: Linton Scale Illusion
Visual Scale is Governed by Horizontal Disparities: Linton Scale Illusion
We present a new illusion that challenges our understanding of visual scale. Since Helmholtz’s ‘telestereoscope’ (1857), we’ve known that stereo vision governs visual scale, turnin...
Visual Scale is Governed by Horizontal Disparities: Linton Scale Illusion
Visual Scale is Governed by Horizontal Disparities: Linton Scale Illusion
We present a new illusion that challenges our understanding of visual scale. Since Helmholtz’s ‘telestereoscope’ (1857), we’ve known that stereo vision governs visual scale, turnin...

Back to Top