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1

A., I. Olanrewaju, and O. Avwiri G. "Assessment of the Radiation Hazard Indices from Terrestrial Radiation in Mining Sites in Benue State, Nigeria." Asian Journal of Environment & Ecology 2, no. 4 (2017): 1–10. https://doi.org/10.9734/AJEE/2017/33373.

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The assessment of the radiation hazard indices of solid minerals and sand in mining sites of Benue State, Nigeria was carried out using well calibrated radalert-50 and 100 meters and a Global Positioning System (Garmin 765). The sites investigated are Lessle (Barite), Gboko (Limestone), Owukpa (Coal) and Akuana (Salt) deposits fields. The mean background radiation ionization exposure rate of 0.019±0.004, 0.019±0.004, 0.014±0.002 and 0.023±0.005 mRh<sup>-1</sup> were obtained respectively. The mean of absorbed dose rates estimated for the mining fields are 161.53, 169.40, 120.35 and 201.84 nGy/
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2

Karki, R. S., R. Bhatta, B. P. Jha, R. Khanal, and B. R. Shah. "Study of Natural Background Radiation in Bagmati Province, Nepal." Journal of Nepal Physical Society 9, no. 2 (2023): 63–68. http://dx.doi.org/10.3126/jnphyssoc.v9i2.62405.

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In this research, we explored the influence of natural sources on ambient radiation levels in the surrounding environment. Our investigation involved conducting a comprehensive survey of background radiation across seven districts in the Bagmati province. We utilized a Radalert 100 radiation monitor to measure the background dose rate at 141 different locations. The recorded background ionizing radiation at these sites varied from 0.022 mR/hr to 0.028 mR/hr, averaging at 0.025 mR/hr. The mean dose rate was determined to 2.129 ± 0.172 mSv/y. Subsequently, the obtained dose rates were used to co
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3

Bubu, A., and C. P. Ononugbo. "Measurement of Outdoor and Indoor Background Ionizing Radiation of O.B. Lulu Briggs Health Center, University of Port Harcourt, Choba, Rivers State, Nigeria." Asian Journal of Physical and Chemical Sciences 11, no. 3 (2023): 21–29. http://dx.doi.org/10.9734/ajopacs/2023/v11i3203.

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Measurement of outdoor and indoor background ionizing radiation (BIR) of O.B. Lulu Briggs Health Centre in the University of Port Harcourt, Rivers State, Nigeria was carried out using a well-calibrated Radalert-100 (Radiation meter) and Digilert-200 meters and Global Positioning System (Garmin 765). 30 selected locations were considered. The outdoor and indoor results are as follows respectively, average exposure rates are 0.012±0.001 and 0.013±0.001 mR/h, mean absorbed dose rate (ADR) are 105.6 and 96.28 nGy/h, estimated value of the annual effective dose equivalent (AEDE) are 0.17 and 0.27 m
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4

Pantha, Parkash, Tanka Prasad Bhusal, Budha Ram Shah, and Rajendra Prasad Koirala. "Study of natural background radiation in Kathmandu Valley." BIBECHANA 16 (November 22, 2018): 187–95. http://dx.doi.org/10.3126/bibechana.v16i0.21605.

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The study of natural background radiation dose at thirty two locations of Kathmandu valley has been done successfully using the instrument Radalert 100. The average dose rates and annual effective dose were measured. From the measurements, the least value of average dose rate was found to be (22.3±3.9)×10-3 mR/hr for Sundhara and the greatest value of average dose rate was found to be (37.7±7)×10-3 mR/hr for Budhanilkantha 3. As per the annual effective dose, the least value was 0.391 mSv/yr for Sundhara and the greatest value was 0.661 mSv/yr for Budhanilkantha 3. The average annual effective
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5

Chaanda, Mohammed S., Agbalagba Ezekiel, and Felix Igede. "RADIOLOGICAL EVALUATION OF THE CONCENTRATION AND IMPACT OF OIL AND GAS ACTIVITIES IN ERUEMUKOHWARIEN AREA OF SOUTHERN NIGERIA." Geological Behavior 4, no. 2 (2020): 47–53. http://dx.doi.org/10.26480/gbr.02.2020.47.53.

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The study was carried out in-situ using a Radalert 100 nuclear radiation monitor and a geographical positioning system (GPS). Five facilities were investigated at the rig site which included the rig site host community as well as the camp site for the oil workers at Ekapkamreh town. Ten 10 sampling locations were evaluated at a total of 60 study points. The values obtained range between 0.115±0.018 (µSv/hr) and 0.299±0.040 (µSv/hr) for the rig site environment, 0.111±0.006 (µSv/hr) and 0.337±0.031 (µSv/hr) for field logistic base (offices and workshops), 0.114±0.011 (µSv/hr) and 0.312±0.021 (µ
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6

Orlunta, Aloysius Ndubisi, and Sylvester Akinabie Sokari. "Terrestrial Radiation of Some Selected Active Telecommunication Sites in Port Harcourt, Rivers State, Nigeria." Asian Journal of Research and Reviews in Physics 7, no. 1 (2023): 24–32. http://dx.doi.org/10.9734/ajr2p/2023/v7i1132.

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A study on terrestrial background ionization radiation was carried out around active selected telecommunications sites in Port Harcourt. This study was done using Radalert 100 and the geographical position system (GPS). The exposure rate ranged from 0.033 to 0.141 with a mean value of 0.123±0.20 (mR/h) which is lower than the acceptable limit of 0.0133 (mR/h). The absorbed dose ranged from 287.1 nG/h to 1226.7 nGy/hr with a mean value of 1066.64±1769.6 nGy/hr, which is quite higher than the acceptable limit of 89.0 nGy/h. The annual effective dose ranged between 0.44 and 1.88 mSv/y, with a mea
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7

Grębecka, Lucyna. "100 i 50 lat temu." Kosmos 71, no. 1 (2022): I—X. http://dx.doi.org/10.36921/kos.2022_2847.

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8

Baden-Powell, B. "50 & 100 Years Ago." Nature 451, no. 7179 (2008): 637. http://dx.doi.org/10.1038/451637a.

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9

Avwiri, G. O., J. Ekpo, and Y. E. Chad-Umoren. "Occupational Hazards from Outdoor and Indoor Radiation in Oil Field Facilities in Rivers State, Nigeria." Asian Journal of Physical and Chemical Sciences, November 11, 2019, 1–7. http://dx.doi.org/10.9734/ajopacs/2019/v7i430099.

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The aim of this study is to determine the occupational hazards due to exposure to gamma radiations from oil and gas facilities. In-situ measurement of radiation exposure rate of some Oil Field Facilities in Rivers State, Nigeria carried out using Digilert 200 and Radalert 100 nuclear radiation monitor and a geographical positioning system (Garmin GPSMAP 76S). The average exposure rates of the facilities range from 0.010±0.002 to 0.015±0.001, for indoor and 0.014±0.003 to 0.027±0.003 for outdoor. The mean absorbed dose rates for indoor varied from 92.1 to 121.1 nGyh-1 while the mean outdoor abs
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10

"Abstracts 50-100." Journal of Sleep Research 11 (May 27, 2002): 26–52. http://dx.doi.org/10.1046/j.1365-2869.11.s1.2.x.

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11

C. Kingsley, Azionu, Avwiri O. Gregory, and Ononugbo, P. Chinyere. "Occupational Hazards from BIR in Selected Crude Oil Production Pipes Storage Locations in Niger Delta Region of Nigeria." Current Journal of Applied Science and Technology, August 22, 2019, 1–12. http://dx.doi.org/10.9734/cjast/2019/v37i230277.

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The study of occupational hazards from BIR in selected crude oil production pipes storage locations in Niger Delta Region of Nigeria has been carried out using two well calibrated radiation monitoring meters (Digilert Tm 100 and Radalert Tm 200). A global positioning system (GPS 76 CSX) was also used to geographically co-ordinate the sampling locations. Measurements were carried out in forty two (42) selected locations in oil producing area of Niger Delta. The following parameters were estimated to determine the level of occupational exposures by crude oil production pipes dealers and customer
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12

Audu, M. U., G. O. Avwiri, and C. P. Ononugbo. "Evaluation of Background Ionizing Radiation Level of Selected Oil Spill Communities of Delta State, Nigeria." Current Journal of Applied Science and Technology, November 1, 2019, 1–10. http://dx.doi.org/10.9734/cjast/2019/v38i330362.

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Study of the terrestrial Background Ionizing Radiation levels of selected Oil Spill Communities of Delta State, Nigeria have been carried out using Digilert 200 and Radalert 100 nuclear radiation monitor and a geographical positioning system (Garmin GPSMAP 76S). The exposure rates of the five communities ranges from 0.016 to 0.030 at Jones Creek, 0.014 to 0.034 at Opuwade Community, 0.015 to 0.037 at Okpare community, 0.007 to 0.029 at OtuJeremi community and 0.011to 0.040 at Otor-Edo community. The obtained mean exposures rates were higher than ICRP standard limit of 0.013. The absorbed dose
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13

Anyalebechi, C. D., O. L. Gbarato, and C. P. Ononugbo. "Assessment of Background Gamma Radiation Level in Selected Dump Site of Niger Delta, Nigeria." Archives of Current Research International, June 2, 2022, 10–18. http://dx.doi.org/10.9734/acri/2022/v22i430282.

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Our environment has been exposed to ionizing radiation from indiscriminate dumping of refuse which is seen as unending and unpreventable challenge on earth. Radiation level and exposure risks in some selected dump site in Rivers state have been calculated using radiation exposure rate meter (Radalert-100). Rate of exposure measured at Ignatius Ajuru University of Education (IAUE) and its environment ranged from 0.005±0.0001 to 0.016±0.003 mRh-1 with mean value of 0.015±0.002 mRh-1 and that measured at Igwuruta ranged from 0.009±0.001 to 0.048±0.003 mRh-1 its mean value is 0.015±0.002 mRh-1. Fo
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14

Anyalebechi, C. D., O. L. Gbarato, and C. P. Ononugbo. "Assessment of Background Gamma Radiation Level in Selected Dump Site of Niger Delta, Nigeria." Archives of Current Research International, June 2, 2022, 10–18. http://dx.doi.org/10.9734/acri/2022/v22i430282.

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Our environment has been exposed to ionizing radiation from indiscriminate dumping of refuse which is seen as unending and unpreventable challenge on earth. Radiation level and exposure risks in some selected dump site in Rivers state have been calculated using radiation exposure rate meter (Radalert-100). Rate of exposure measured at Ignatius Ajuru University of Education (IAUE) and its environment ranged from 0.005±0.0001 to 0.016±0.003 mRh-1 with mean value of 0.015±0.002 mRh-1 and that measured at Igwuruta ranged from 0.009±0.001 to 0.048±0.003 mRh-1 its mean value is 0.015±0.002 mRh-1. Fo
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15

"100 and 50 years ago." Nature 397, no. 6719 (1999): 479. http://dx.doi.org/10.1038/17227.

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16

"50 & 100 Years Ago." Nature 445, no. 7124 (2007): 158. http://dx.doi.org/10.1038/445158a.

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17

"50 & 100 Years Ago." Nature 445, no. 7125 (2007): 269. http://dx.doi.org/10.1038/445269a.

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18

"50 & 100 Years Ago." Nature 445, no. 7126 (2007): 376. http://dx.doi.org/10.1038/445376a.

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19

"50 & 100 Years Ago." Nature 445, no. 7127 (2007): 493. http://dx.doi.org/10.1038/445493a.

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20

"50 & 100 Years Ago." Nature 445, no. 7129 (2007): 719. http://dx.doi.org/10.1038/445719a.

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21

"50 & 100 Years Ago." Nature 445, no. 7130 (2007): 827. http://dx.doi.org/10.1038/445827b.

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"50 & 100 Years Ago." Nature 446, no. 7131 (2007): 34. http://dx.doi.org/10.1038/446034a.

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23

"50 & 100 Years Ago." Nature 446, no. 7132 (2007): 150. http://dx.doi.org/10.1038/446150a.

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"50 & 100 Years Ago." Nature 446, no. 7133 (2007): 271. http://dx.doi.org/10.1038/446271a.

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25

"50 & 100 Years Ago." Nature 446, no. 7134 (2007): 387. http://dx.doi.org/10.1038/446387b.

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26

"50 & 100 Years Ago." Nature 446, no. 7135 (2007): 504. http://dx.doi.org/10.1038/446504a.

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"50 & 100 Years Ago." Nature 446, no. 7137 (2007): 737. http://dx.doi.org/10.1038/446737a.

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"50 & 100 Years Ago." Nature 446, no. 7138 (2007): 862. http://dx.doi.org/10.1038/446862a.

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"50 & 100 Years Ago." Nature 446, no. 7139 (2007): 990. http://dx.doi.org/10.1038/446990a.

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"50 & 100 Years Ago." Nature 447, no. 7140 (2007): 51. http://dx.doi.org/10.1038/447051b.

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"50 & 100 Years Ago." Nature 447, no. 7148 (2007): 1062. http://dx.doi.org/10.1038/4471062a.

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"50 & 100 Years Ago." Nature 447, no. 7141 (2007): 154. http://dx.doi.org/10.1038/447154a.

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"50 & 100 Years Ago." Nature 447, no. 7142 (2007): 274. http://dx.doi.org/10.1038/447274a.

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"100 and 50 years ago." Nature 401, no. 6756 (1999): 865. http://dx.doi.org/10.1038/44735.

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"50 & 100 Years Ago." Nature 447, no. 7143 (2007): 391. http://dx.doi.org/10.1038/447391b.

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"50 & 100 Years Ago." Nature 447, no. 7144 (2007): 539. http://dx.doi.org/10.1038/447539b.

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"50 & 100 Years Ago." Nature 447, no. 7145 (2007): 651. http://dx.doi.org/10.1038/447651b.

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"50 & 100 Years Ago." Nature 447, no. 7146 (2007): 785. http://dx.doi.org/10.1038/447785b.

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"50 & 100 Years Ago." Nature 447, no. 7147 (2007): 915. http://dx.doi.org/10.1038/447915a.

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"50 & 100 Years Ago." Nature 448, no. 7149 (2007): 35. http://dx.doi.org/10.1038/448035a.

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"50 & 100 Years Ago." Nature 448, no. 7150 (2007): 146. http://dx.doi.org/10.1038/448146a.

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"50 & 100 Years Ago." Nature 448, no. 7151 (2007): 263. http://dx.doi.org/10.1038/448263b.

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"50 & 100 Years Ago." Nature 448, no. 7152 (2007): 417. http://dx.doi.org/10.1038/448417a.

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"50 & 100 Years Ago." Nature 448, no. 7153 (2007): 546. http://dx.doi.org/10.1038/448546a.

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"50 & 100 Years Ago." Nature 448, no. 7154 (2007): 653. http://dx.doi.org/10.1038/448653a.

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"50 & 100 Years Ago." Nature 448, no. 7155 (2007): 761. http://dx.doi.org/10.1038/448761a.

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"50 & 100 Years Ago." Nature 448, no. 7156 (2007): 873. http://dx.doi.org/10.1038/448873a.

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"50 & 100 Years Ago." Nature 449, no. 7159 (2007): 153. http://dx.doi.org/10.1038/449153b.

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"50 & 100 Years Ago." Nature 449, no. 7161 (2007): 414. http://dx.doi.org/10.1038/449414a.

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"50 & 100 Years Ago." Nature 449, no. 7162 (2007): 547. http://dx.doi.org/10.1038/449547a.

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