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HSC Science (Computer Science) १२ वीं कक्षा - Maharashtra State Board Question Bank Solutions for Mathematics and Statistics

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Mathematics and Statistics
< prev  1821 to 1840 of 1934  next > 

If `bar("c") = 3bar("a") - 2bar("b")` then prove that `[(bar("a"), bar("b"), bar("c"))]` = 0

[5] Vectors
Chapter: [5] Vectors
Concept: undefined >> undefined

Without using truth table prove that (p ∧ q) ∨ (∼ p ∧ q) v (p∧ ∼ q) ≡ p ∨ q

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

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`"Check whether the vectors"  2hati+2hatj+3hatk,-3hati+3hatj+2hatk  "and"  3hati+4hatk  "form a triangle or not".`

[5] Vectors
Chapter: [5] Vectors
Concept: undefined >> undefined

Without using truth table, prove that : [(p ∨ q) ∧ ∼p] →q is a tautology.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

The simplified form of [(~ p v q) ∧ r] v [(p ∧ ~ q) ∧ r] is ______.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Without using truth table prove that

[(p ∧ q ∧ ∼ p) ∨ (∼ p ∧ q ∧ r) ∨ (p ∧ q ∧ r) ∨ (p ∧ ∼ q ∧ r) ≡ (p ∨ q) ∧ r

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

The statement p → (q → p) is equivalent to ______.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Show that the simplified form of (p ∧ q ∧ ∼ r) ∨ (r ∧ p ∧ q) ∨ (∼ p ∨ q) is q ∨ ∼ p.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined
If the vectors `2 hat i - 3 hat j + 4 hat k` and `p hat i + 6 hat j - 8 hat k` are collinear, then find the value of p.
[5] Vectors
Chapter: [5] Vectors
Concept: undefined >> undefined

In the triangle `PQR, bar (PQ) = 2bara and bar (QR) = 2barb`. The mid-point of PR is M. Find following vectors in terms of `bar a and bar b`.

  1. `bar(PR)`
  2. `bar(PM)`
  3. `bar(QM)`
[5] Vectors
Chapter: [5] Vectors
Concept: undefined >> undefined

Construct the switching circuit for the following statement : [p v (~ p ∧ q)] v [(- q ∧ r) v ~ p]

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Construct the simplified circuit for the following circuit:

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Find the symbolic form of the following switching circuit, construct its switching table and interpret it.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Construct the switching circuit for the statement (p ∧ q) ∨ (~ p) ∨ (p ∧ ~ q).

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Simplify the following circuit so that the new circuit has minimum number of switches. Also, draw the simplified circuit.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Construct the new switching circuit for the following circuit with only one switch by simplifying the given circuit:

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Find the symbolic form of the given switching circuit. Construct its switching table and interpret your result.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Express the following circuit in the symbolic form of logic and writ the input-output table.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Express the following circuit in the symbolic form of logic and write the input-output table.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined

Express the following circuit in the symbolic form of logic and write the input-output table.

[1] Mathematical Logic
Chapter: [1] Mathematical Logic
Concept: undefined >> undefined
< prev  1821 to 1840 of 1934  next > 
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