Decay constant of radium is $\lambda $ . By a suitable process its compound radium bromide is obtained. The decay constant of radium bromide will be
A. $\lambda $
B. More than $\lambda $
C. Less than $\lambda $
D. zero
Answer
280.8k+ views
Hint: In order to solve this question, we should first know about decay constant. Decay constant is the proportionality constant between the rate of change of number of nuclei with nuclei in radioactive decay law and here we will discuss the decay constant of the chemical compound radium bromide and then will determine the correct option.
Complete step by step solution:
Before proceeding with the decay constant of the chemical compound radium bromide, we should know that all the chemical elements and compounds are not radioactive in nature, and most of the radioactive elements found naturally on earth.
So, Radium is one of the radioactive element which shows radioactivity and we have given to us that decay constant of radium element alone is $\lambda $ and after some chemical process the chemical compound which is formed with radium is radium bromide and as we know that bromide is a regular chemical element means it’s not a radioactive element.
Therefore, the radioactivity process of compound radium bromide is only affected by radium alone and as we have the decay constant of radium as $\lambda $ so the decay constant of radium bromide will be the same as that of radium which is $\lambda $.
Hence, the correct answer is option A.
Note: It should be remembered that, while calculating decay constant of chemical compounds, always check which element is radioactive out of them and also remember all the most known radioactive elements, and additionally decay constant is inversely proportional to half-life of the radioactive elements.
Complete step by step solution:
Before proceeding with the decay constant of the chemical compound radium bromide, we should know that all the chemical elements and compounds are not radioactive in nature, and most of the radioactive elements found naturally on earth.
So, Radium is one of the radioactive element which shows radioactivity and we have given to us that decay constant of radium element alone is $\lambda $ and after some chemical process the chemical compound which is formed with radium is radium bromide and as we know that bromide is a regular chemical element means it’s not a radioactive element.
Therefore, the radioactivity process of compound radium bromide is only affected by radium alone and as we have the decay constant of radium as $\lambda $ so the decay constant of radium bromide will be the same as that of radium which is $\lambda $.
Hence, the correct answer is option A.
Note: It should be remembered that, while calculating decay constant of chemical compounds, always check which element is radioactive out of them and also remember all the most known radioactive elements, and additionally decay constant is inversely proportional to half-life of the radioactive elements.
Recently Updated Pages
Mass vs Weight: Key Differences Explained for Students

Difference Between Erosion and Corrosion: JEE Main 2026

Mean, Median, and Mode: Key Differences Explained Simply

Difference Between Acetic Acid and Glacial Acetic Acid: JEE Main 2026

Ammeter vs Galvanometer: Key Differences Explained

Difference Between Molecule and Compound: Key Chemistry Explained

Trending doubts
JEE Main 2026: Exam Dates, Session 2 Updates, City Slip, Admit Card & Latest News

Understanding the Electric Field of a Uniformly Charged Ring

Understanding Atomic Structure for Beginners

Derivation of Equation of Trajectory Explained for Students

Electron Gain Enthalpy and Electron Affinity Explained

How to Convert a Galvanometer into an Ammeter or Voltmeter

Other Pages
CBSE Class 12 Physics Question Paper 2026: Download SET-wise PDF with Answer Key & Analysis

JEE Advanced Percentile vs Marks 2026: JEE Main Cutoff, AIR & IIT Admission Guide

JEE Advanced 2026 Notification Out with Exam Date, Registration (Extended), Syllabus and More

Understanding Instantaneous Velocity

Understanding Uniform Acceleration in Physics

Understanding Electromagnetic Waves and Their Importance

