scholarly journals PERBEDAAN KEPADATAN LALAT YANG HINGGAP PADA FLY GRILL YANG BERBEDA WARNA DI PAJAK SINGA KOTA KABANJAHE KABUPATEN KARO TAHUN 2018

Author(s):  
Erba Kalto Manik ◽  
Susanti Br Perangin-Angin

Flies are Arthropoda insects that belong to the order of Diptera. Flies can transmit the disease through allthe limbs such as feces, vomit, body hair, limb hair and especially on the legs that have fine hairs so that theseeds of the disease can stick. Flies have a life activity interacting with a place that is a habitat for diseasessuch as trash, feces and carcasses. Plus its ability to fly 1-2 miles of several species of flies can spreadseveral diseases such as Thgypoid Fever, Parathypoid, bacillary dysentery, amoebic dysentery, and severaleye diseases from various places that have been visited. Flies are insects in general having sensitivity todifferent light wavelengths (colors). This research is a field experiment and includes a Pre Experiment that isPostest Only Design which aims to analyze differences in the density of flies that land on Fly Grill which aredifferent colors in Singa Kabanjahe Tax to plan control efforts which are about when, where and howcontrol will be carried out. in the Singa Kabanjahe Tax TPS for 10 days and the number of flies perched withdifferent fly grill colors (orange, pink, light blue, light green and yellow) for 30 seconds, calculating 10 timesthe calculation with the highest average. The data obtained were analyzed by ANOVA test with an error rateof 0.05. From the ANOVA test data with = 0.05 shows p = 0.221, which means that there is no difference indensity of flies perched on a different color fly grill. The average density of flies, from the lowest to thehighest is as follows: fly grill in orange, light green, light blue, pink and yellow ... The conclusion that can bedrawn is that flies do not like orange, light green and light blue. Meanwhile, the color favored by flies isyellow

2020 ◽  
Vol 44 (37) ◽  
pp. 16211-16217
Author(s):  
Hongxia Guan ◽  
Yunfei Li ◽  
Guixia Liu
Keyword(s):  

Dy3+,Ho3+ co-doped β-NaGdF4 nanomaterials emitted different shades of green light, which varies from the light blue area towards the blue-green area and ultimately to the green area with the increase of Ho3+ ions.


2002 ◽  
Vol 13 (4) ◽  
pp. 355-369 ◽  
Author(s):  
Jane E. Dutton ◽  
Susan J. Ashford ◽  
Katherine A. Lawrence ◽  
Kathi Miner-Rubino

2019 ◽  
Vol 1 (2) ◽  
pp. 56
Author(s):  
Ahmad Imam Bardani ◽  
Nuryono Satya Widodo

Robot seni tari Lanange Jagad untuk lomba Kontes Robot Seni Tari Indonesia (KRSTI) belum mampu membedakan zona warna pada arena yang menyebabkan robot melakukan gerakan tarian yang tidak sesuai dengan tempatnya. Oleh karena itu dibutuhkan kontrol otomatisasi menggunakan sensor warna TCS3200. TCS3200 akan memperoleh komposisi RGB yang tepat menggunakan perhitungan frekuensi. Hasil yang dicapai dalam penelitian ini adalah robot seni tari Lanange Jagad dapat membedakan zona dengan memanfaatkan warna merah, biru, biru muda, hijau, dan putih dengan tingkat keberhasilan 84%. Ketika robot mendeteksi warna yang sudah ditentukan pada setiap zona, robot akan secara otomatis melakukan gerakan tari yang sudah disesuaikan dengan zona tersebut. Saat robot masuk ke zona warna berbeda maka robot akan menghentikan gerakan tari pada zona sebelumnya dan memanggil gerakan tari selanjutnya. Namun masih terdapat banyak noise saat melakukan pengujian sehingga nilai RGB yang digunakan untuk memanggil gerakan tari berubah sehingga robot tidak merespons perintah yang dimasukkan pada program. Nilai RGB yang stabil di dapatkan pada kondisi kaki robot menapak atau bersentuhan langsung dengan zona warna, nilai tersebut yang digunakan untuk pemanggilan gerakan tari.The Lanange Jagad dance robot for the Indonesian Robot Dance Contest (KRSTI) has not been able to distinguish the color zone in the arena that causes the robot to perform dance moves that are not in accordance with its place. Therefore we need automation control using the TCS3200 color sensor. TCS3200 will obtain the right RGB composition using frequency calculations. The results achieved in this study are the Lanange Jagad dance robot can distinguish zones by utilizing red, blue, light blue, green, and white with a success rate of 84%. When the robot detects the colors that have been determined in each zone, the robot will automatically perform dance moves that have been adapted to the zone. When the robot enters a different color zone, the robot will stop the dance movement in the previous zone and call the next dance movement. However, there is still a lot of noise when testing so that the RGB value used to call dance moves changes so that the robot does not respond to commands entered in the program. A stable RGB value is obtained when the robot's foot steps or comes into direct contact with the color zone, the value that is used for calling dance moves.


2021 ◽  
pp. 135-137
Author(s):  
Laurie E. Westphal
Keyword(s):  

Cancer Cell ◽  
2019 ◽  
Vol 36 (4) ◽  
pp. 343-345
Author(s):  
Johnathan R. Whetstine
Keyword(s):  
T Cells ◽  
Mhc I ◽  

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