Academic literature on the topic 'Electroculture'

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Journal articles on the topic "Electroculture"

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Jahrudin, Ahmad, and Siti Ayu Kumala. "Studi Literatur Sistem Elektrokultur Dalam Mempercepat Pertumbuhan Dan Perkembangan Tanaman." Jurnal Riset Fisika Indonesia 4, no. 2 (2024): 55–64. http://dx.doi.org/10.33019/jrfi.v4i2.5338.

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In the development of agricultural or plant technology, innovations are needed to increase efficiency in the process of accelerating growth and the harvest period. The application of physics in the fields of agriculture and biology is one that can be developed. One study that is very interesting to discuss is the application of the electroculture system, which uses electricity to help speed up the growth process and harvest period, in addition to growth and development of electroculture is also claimed to be able to minimize attacks by insect pests and viruses, in this article we review severa
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Martin, W. John. "KELEA (Kinetic Energy Limiting Electrostatic Attraction) may explain electroculture and magnetoculture technologies in Horticulture." Horticulture International Journal 8, no. 1 (2024): 8–10. http://dx.doi.org/10.15406/hij.2024.08.00295.

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This article proposes that the mechanism of action of electroculture and magentoculture procedures is to increase the level of a specific form of energy in the groundwater termed KELEA, an abbreviation for Kinetic Energy Limiting Electrostatic Attraction. This energy is distinct from the energies obtained by plants from photosynthesis and food catabolism. Rather, KELEA supports what is referred to as the Alternative Cellular Energy (ACE) pathway in all forms of life. KELEA exists in conjunction with electrical charges with the probable fundamental purpose of preventing the fusion and annihilat
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Christianto, Victor, and Florentin Smarandache. "A Review on Electroculture, Magneticulture and Laserculture to Boost Plant Growth." Bulletin of Pure & Applied Sciences- Botany 40b, no. 1 (2021): 30–34. http://dx.doi.org/10.5958/2320-3196.2021.00006.9.

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Manguiam, Von Louie R., Ashley Marie N. Margate, Rose Danielle G. Hilahan, Harold Gian L. Lucin, Kristopher Ray S. Pamintuan, and Adonis P. Adornado. "The effects of electroculture on shoot proliferation of garlic (Allium sativum l.)." IOP Conference Series: Materials Science and Engineering 703 (December 4, 2019): 012009. http://dx.doi.org/10.1088/1757-899x/703/1/012009.

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Kour, Sheetal, Nirmala, and Munish Kaundal. "A Sustainable Alternative to Traditional Food Production Through CO2 Electrolysis." Journal of Advances in Biology & Biotechnology 28, no. 7 (2025): 1497–513. https://doi.org/10.9734/jabb/2025/v28i72666.

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Electro-agriculture is a newly emerging field where CO₂ electrolysis and electroculture are put together to change food production through the use of a green replacement for traditional farming. This practice addresses global food security problems through the destruction of the dependency on land-wasting, wasteful photosynthesis agriculture.CO₂ electrolysis produces atmospheric carbon dioxide into acetate, which is a direct source of carbon that can be utilized by plants, algae, yeast, and fungi to carry out sunlight-independent food synthesis. Electroculture induces plant growth using electr
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Christianto, Victor. "Beyond Electroculture: Modeling Possible Effect of Low Intensity Laser Pen to Improve Plant Growth." Bulletin of Pure & Applied Sciences- Botany 42, no. 1 (2023): 1–8. http://dx.doi.org/10.48165/bpas.2023.42b.1.1.

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It is known that in many regions in this earth, there are growing concerns on rice and other crops supply stability, while the water supply for irrigation has become more scarce. Part of the problem is that farm lands have been reallocated to other purposes, including housing etc, and other reasons include the technology on farming was quite in stagnation for years. In this regard, studies have shown beneficial effects of laser technology to boost plant growth and especially during seed formation. In this small experiment, we take a look at modeling of such low intensity laser pen interacting
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Abasi, Sara, John R. Aggas, Naren Venkatesh, Iris G. Vallavanatt, and Anthony Guiseppi-Elie. "Design, fabrication and testing of an electrical cell stimulation and recording apparatus (ECSARA) for cells in electroculture." Biosensors and Bioelectronics 147 (January 2020): 111793. http://dx.doi.org/10.1016/j.bios.2019.111793.

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Mukundraj, B. Patil. "Effect of Electrocultre on seed germination and growth of Raphanus sativus (L)." African Journal of Plant Science 12, no. 12 (2018): 350–53. http://dx.doi.org/10.5897/ajps2018.1716.

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Books on the topic "Electroculture"

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Electroculture. Talma Studios, 2016.

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Briggs, Lyman J. Electroculture. Creative Media Partners, LLC, 2022.

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Electroculture. Talma Studios, 2016.

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Briggs, Lyman J. Electroculture. Creative Media Partners, LLC, 2022.

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Electroculture. Talma Studios, 2016.

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Augmentation des récoltes et sauvetage des arbres malades par l'électroculture: Suppression des nitrates et autres engrais chimiques devenus inutiles par l'électro-magnétique terro-céleste. independant (Amazon), 2022.

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Hayes, Clavin. Electroculture Gardening for Beginners: Unlock Faster Plant Growth, Higher Yields and Healthier Crops. Chapin Holdings LLC, 2023.

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8

Electricity in Agriculture; the Uses of Electricity in Arable, Pasture, Dairy, and Poultry Farming; Horticulture; Pumping and Irrigation; Electroculture; and General Mechanical and Domestic Service on Farms; for Farmers, Agriculturists, Horticulturists, S. Creative Media Partners, LLC, 2022.

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Conference papers on the topic "Electroculture"

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Basallote, Nicole Andrei, Mary Anne Gardones, Carl Joseph Mantilla, et al. "IoT-Based Growth Analysis of Red Onion in Controlled Hydroponic Environment using Electroculture." In TENCON 2022 - 2022 IEEE Region 10 Conference (TENCON). IEEE, 2022. http://dx.doi.org/10.1109/tencon55691.2022.9977614.

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