Home
Class 12
BIOLOGY
Inherent capacity of a population to inc...

Inherent capacity of a population to increase under ideal conditions is represented by 'r'/'k'.

Text Solution

AI Generated Solution

To answer the question regarding the inherent capacity of a population to increase under ideal conditions, we can follow these steps: ### Step-by-Step Solution: 1. **Understanding the Terms**: - The question asks about the inherent capacity of a population to increase under ideal conditions, which relates to two key concepts in population ecology: 'r' and 'K'. 2. **Defining 'r'**: ...
Promotional Banner

Topper's Solved these Questions

  • ORGANISMS AND POPULATIONS

    MODERN PUBLICATION|Exercise REVISION EXERCISES (I. MULTIPLE CHOICE QUESTIONS (MCQs)|30 Videos
  • ORGANISMS AND POPULATIONS

    MODERN PUBLICATION|Exercise REVISION EXERCISES (II. VERY SHORT ANSWER QUESTIONS) (A. QUESTIONS FROM STATE BOARD EXAMINATIONS)|37 Videos
  • ORGANISMS AND POPULATIONS

    MODERN PUBLICATION|Exercise QUICK MEMORY TEST (B. Complete the missing links)|22 Videos
  • MOLECULAR BASIS OF INHERITANCE

    MODERN PUBLICATION|Exercise CHAPTER PRACTICE TEST (Section - E)|1 Videos
  • PRINCIPLES OF INHERITANCE AND VARIATION

    MODERN PUBLICATION|Exercise CHAPTER PRACTICE TEST section-e(Long answer type question)|1 Videos

Similar Questions

Explore conceptually related problems

Increase of population under optimum condition is termed

Fill in the blanks : ……… is the natural ability of a population to increase at its maximum rate under ideal conditions. However , sum of factors called ………. prevent a population from reproducing at its maximum rate .

The number of deaths under ideal conditions is known as

The evaporation of water increases under the following conditions :

Maximum power of reproduction under ideal conditions is called___

Certain amount of heat supplied to an ideal gas under isothermal conditions will result in

Maximum survival and reproductive capacity shown by a population under optimal environmental conditions is called:

Ideal gas equation strictly obeys gas laws under all conditions of