Garantie de satisfaction à 100% Disponible immédiatement après paiement En ligne et en PDF Tu n'es attaché à rien 4.2 TrustPilot
logo-home
Examen

RTBC Radiation Protection and Devices Exam UPDATED QUESTIONS AND CORRECT ANSWERS

Note
-
Vendu
-
Pages
9
Grade
A+
Publié le
14-09-2025
Écrit en
2025/2026

RTBC Radiation Protection and Devices Exam UPDATED QUESTIONS AND CORRECT ANSWERS The primary purpose of the ALARA principle in diagnostic imaging is to - CORRECT ANSWER Reduce radiation dose to occupational workers A radiation worker received a radiation dose of 5 mGy while participating in a fluoroscopy procedure for 10 minutes. What radiation dose would have been received by the worker if they reduced their time in the radiation field to only 5 minutes? - CORRECT ANSWER 2.5 mGy - The radiation dose would have been 2.5 mGy. Radiation dose is directly proportional to time in the radiation field. The time was reduced by half, so the radiation dose is also reduced by half.

Montrer plus Lire moins
Établissement
RTBC
Cours
RTBC









Oups ! Impossible de charger votre document. Réessayez ou contactez le support.

École, étude et sujet

Établissement
RTBC
Cours
RTBC

Infos sur le Document

Publié le
14 septembre 2025
Nombre de pages
9
Écrit en
2025/2026
Type
Examen
Contient
Questions et réponses

Sujets

Aperçu du contenu

RTBC Radiation Protection and Devices
Exam UPDATED QUESTIONS AND
CORRECT ANSWERS
The primary purpose of the ALARA principle in diagnostic imaging is to - CORRECT
ANSWER Reduce radiation dose to occupational workers



A radiation worker received a radiation dose of 5 mGy while participating in a fluoroscopy
procedure for 10 minutes. What radiation dose would have been received by the worker if
they reduced their time in the radiation field to only 5 minutes? - CORRECT
ANSWER 2.5 mGy

- The radiation dose would have been 2.5 mGy. Radiation dose is directly proportional to
time in the radiation field. The time was reduced by half, so the radiation dose is also reduced
by half.



Which cardinal rule of radiation protection is mathematically defined by the inverse square
law? - CORRECT ANSWER distance



In order to reduce a technologist's occupational dose during a portable radiograph of the
chest, the technologist should - CORRECT ANSWER Stand several feet away from the
patient during the exposure


During a surgical procedure using 3 minutes of fluoroscopy time, a radiographer receives an
effective dose of 1 millisievert (mSv). What effective dose would be experience by the
radiographer if the fluoroscopy time is doubled? - CORRECT ANSWER 2 mSv



A radiographer is exposed to a dose rate of 10 mSv per hour while standing 3 ft from the
patient during c-arm procedures. What is the approximate dose rate if the radiographer stands
4 ft from the patient? - CORRECT ANSWER 5.6 mSv/hr



Use inverse square law

, A radiologist receives an equivalent dose of 100 microsieverts while standing 25 cm from a
patient during a fluoroscopy procedure. Estimate the equivalent dose if the radiologist and 10
cm from the patient. - CORRECT ANSWER 625 microsieverts



Which 3 properties of lead make it a valuable material for radiation shielding devices? -
CORRECT ANSWER High atomic number

High mass density

High attenuation



Which of the following materials requires the smallest half-value layer (HVL) to effectively
attenuate the xray beam? - CORRECT ANSWER Lead



How does radiation dose change if a technologist increases their distance from a radiation
source by a factor of 2? - CORRECT ANSWER Dose decreases by a factor of 2
squared


A half value layer (HVL) is the thickness of material required to reduce which of the
following by half? - CORRECT ANSWER x-ray beam intensity



A shielding device constructed with a thickness equivalent to 1 HVL will reduce the quantity
of radiation to: - CORRECT ANSWER 50% of the original quantity



A shielding device constructed with a thickness equivalent to 2 half-value layers (HVL) will
reduce the quantity of radiation to - CORRECT ANSWER 25% of the original quantity



If the half-value layer of shielding material is equal to 2mm, how much radiaiton will
transmit through 6mm of this material? - CORRECT ANSWER 12.5% of the original
quantity



What lead thickness equivalence is required for protective lead aprons designated for general
radiography, surgery and fluoroscopy? - CORRECT ANSWER 0.50 mm lead (Pb)
€9,64
Accéder à l'intégralité du document:

Garantie de satisfaction à 100%
Disponible immédiatement après paiement
En ligne et en PDF
Tu n'es attaché à rien

Faites connaissance avec le vendeur

Seller avatar
Les scores de réputation sont basés sur le nombre de documents qu'un vendeur a vendus contre paiement ainsi que sur les avis qu'il a reçu pour ces documents. Il y a trois niveaux: Bronze, Argent et Or. Plus la réputation est bonne, plus vous pouvez faire confiance sur la qualité du travail des vendeurs.
STANFORDTOPGRADES Stanford University
S'abonner Vous devez être connecté afin de suivre les étudiants ou les cours
Vendu
23
Membre depuis
9 mois
Nombre de followers
2
Documents
4459
Dernière vente
2 jours de cela
TOPSELLER

Hi there! I'm dedicated to sharing my high-quality study guides and helpful EXAM Materials to make your learning easier and more efficient. All my materials are well-organized and tailored to help you ace your courses. I offer genuine and dependable exam papers that are directly obtained from well-known, reputable institutions as a highly regarded professional who specializes in sourcing study materials. Kindly don't hesitate to contact me, my study guides, notes and exams or test banks, are 100% graded and fully guaranteed

Lire la suite Lire moins
4,7

3 revues

5
2
4
1
3
0
2
0
1
0

Récemment consulté par vous

Pourquoi les étudiants choisissent Stuvia

Créé par d'autres étudiants, vérifié par les avis

Une qualité sur laquelle compter : rédigé par des étudiants qui ont réussi et évalué par d'autres qui ont utilisé ce document.

Le document ne convient pas ? Choisis un autre document

Aucun souci ! Tu peux sélectionner directement un autre document qui correspond mieux à ce que tu cherches.

Paye comme tu veux, apprends aussitôt

Aucun abonnement, aucun engagement. Paye selon tes habitudes par carte de crédit et télécharge ton document PDF instantanément.

Student with book image

“Acheté, téléchargé et réussi. C'est aussi simple que ça.”

Alisha Student

Foire aux questions