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Mathematical Reasoning

Statement (Proposition)

A statement is an assertive sentence which is either true or false but not both a true statement is called valid statement. Otherwise it is called invalid statement. Statements are denoted by the small letters

i.e., p, q, r … etc.

Open and Compound Statement

A sentence which contains one or more variable such that when certain values are given to the variable it becomes a statement, is called an open statement.

If two or more simple statements are combined by the use of words such as ‘and’, ‘or’, ‘not’, ‘if’, ‘then’, ‘if and only if ‘, then the resulting statement is called a compound statement.

Truth Value and Truth Table

A statement can be either ‘true’ or ‘false’ which are called truth values of a .statement and it is represented by the symbols T and F, respectively.

A. truth table is a summary of truth values of the resulting statements for all possible assignment of values to the variables appearing in a compound statement.

Number of rows depends on their number of statements.


Truth Table for Two Statements (p, q)

Number of rows = 22 = 4

pq
TT
TF
FT
FF


Elementary Operation of Logic

 (i) Conjunction A compound sentence formed by two simple sentences p and q using connective ‘and’ is called the conjunction of p and q and it is represented by p ∧ q.


(ii) Disjunction A compound sentence formed by two simple sentences p and q using connectives ‘or’ is called the disjunction of p and q and it is represented by p ∨ q.


(iii) Negation A statement which is formed by changing the truth value of a given statement by using the word like ‘no’, ‘not’ is called negation of given statement. If p is a statement, then negation of p is denoted by ~ p.


(iv) Conditional Sentence (Implication) Two simple sentences p and q connected by the phase, if and then, is called conditional sentence of p and q arid it is denoted by p => q.


(v) Biconditional Sentence (Bi-implication) The two simple sentences connected by the phrase, ‘if and only if this is called biconditional sentences. It is denoted by the symbol ‘<=>’.


Table for Basic Logical Connections

pq~pp ^ qqp⇒qp⇔q

T

T

F

F

T

F

T

F

F

F

T

T

T

F

F

F

T

T

T

F

T

F

T

T

T

F

F

T


Tautology and Contradiction

The compound statement which are true for every value of their components are called tautology.

The compound statements which are false for every value of their components are called contradiction (fallacy).


Truth Table

pqp⇒qq⇒pTautology (p⇒q)  (q⇒p) Contradiction ~ {(p⇒q)  (q⇒p)}

T

T

F

F

T

F

T

F

F

F

T

T

T

T

F

T

T

T

T

T

F

F

F

F


Quantifiers and Quantified Statements

In this statements, there are two important symbols are used.

(i) The symbol ‘∀’ stands for ‘all values of ‘.

This is known as universal quantifier.

(ii) The symbol ‘∃’ stands for ‘there exists’.

The symbol ∃ is known as existential quantifier.


Quantified Statement

An open sentence with a quantifier becomes a statement, called a quantified statement.


Negation of a Quantified Statement

(i) ~{∀ x ∈ A : p(x) is true} = {∃ x ∈ A such that (s.t.) ~ p(x) is true}

(ii) ~{∃x ∈ A : p(x) is true} = {∀ x ∈ A : ~ p(x) is true}

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FAQs on Mathematical Reasoning Statement and Truth Table - Applied Mathematics for Class 11 - Commerce

1. What is mathematical reasoning?
Answer 1. Mathematical reasoning refers to the process of using logical thinking and mathematical principles to solve problems or prove mathematical statements. It involves analyzing and understanding relationships, patterns, and structures in order to make valid conclusions based on mathematical rules and evidence.
2. How is mathematical reasoning used in everyday life?
Answer 2. Mathematical reasoning is used in various aspects of everyday life, such as budgeting, calculating measurements, and making informed decisions. For example, when comparing prices at the grocery store, mathematical reasoning allows us to determine the best value for our money by calculating unit prices and considering discounts.
3. What are truth tables used for in mathematical reasoning?
Answer 3. Truth tables are used in mathematical reasoning to analyze the logical connections between statements and their truth values. They provide a systematic way to evaluate the truth or falsehood of compound statements based on the truth values of their individual components. Truth tables are particularly helpful in formal logic, where they allow for the construction of valid arguments and the identification of logical fallacies.
4. How can mathematical reasoning be improved?
Answer 4. Mathematical reasoning can be improved through practice and exposure to a variety of mathematical problems. Engaging in problem-solving activities, puzzles, and logical reasoning exercises can help develop critical thinking skills and enhance mathematical reasoning abilities. Additionally, seeking guidance from teachers or tutors, discussing mathematical concepts with peers, and exploring real-world applications of mathematics can also contribute to improving mathematical reasoning.
5. Can mathematical reasoning be learned or is it innate?
Answer 5. Mathematical reasoning is a skill that can be learned and developed over time. While some individuals may have a natural inclination towards logical thinking, everyone can improve their mathematical reasoning abilities through practice and perseverance. By engaging in activities that promote logical thinking, such as solving mathematical problems, studying mathematical concepts, and analyzing patterns and relationships, individuals can enhance their mathematical reasoning skills.
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