If \(F=\alpha t^2-\beta t \) is the magnitude of the force acting on a particle at an instant \(t,\) then the time at which the force becomes constant is (where \(\alpha \) and \(\beta \) are constants):
1. \(\dfrac{\beta}{\alpha}\) 2. \(\dfrac{\beta}{2\alpha}\)
3. \(\dfrac{2\beta}{\alpha}\) 4. zero

Subtopic:  Differentiation |
 69%
From NCERT
NEET - 2024
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If \(\vec F=2\hat i+\hat j-\hat k\) and \(\vec r=3\hat i+2\hat j-2\hat k,\) then the scalar and vector products of \(\vec F\) and \(\vec r\) have the magnitudes, respectively, as:
1. \(5, ~\sqrt3\)
2. \(4,~ \sqrt5\)
3. \(10, ~\sqrt2\)
4. \(10,~2\)
Subtopic:  Vector Product |
 75%
From NCERT
NEET - 2022
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The scalar and vector product of two vectors, a=3i^-4j^+5k^ and b=-2i^+j^-3k^ is equal to:

1. \(-25\)7i^-j^-5k^

2. \(25\)-7i^+j^-5k^

3. \(0\)-7i^+j^+3k^

4. \(-25\)-7i^+j^+5k^

Subtopic:  Vector Product |
 75%
From NCERT
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The magnitude of the resultant of two forces \(A=8~\text{N}\) and \(B=6~\text{N}\) acting at a point angle of \(90^{\circ}\) between them is:
1. \(14~\text{N}\)
2. \(2~\text{N}\)
3. \(10~\text{N}\)
4. \(12~\text{N}\)

Subtopic:  Resultant of Vectors |
 86%
From NCERT
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The angle between \(\mathrm{A}=\hat{\mathbf{i}}+\hat{\mathbf{j}}\) and \(\mathrm{B}=\hat{\mathbf{i}}-\hat{\mathbf{j}}\) is:
1. \(45^{\circ} \)
2. \(90^{\circ} \)
3. \(-45^{\circ} \)
4. \(180^{\circ}\)
Subtopic:  Scalar Product |
 78%
From NCERT
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For two vectors \(\vec A\) and \(\vec B\), |\(\vec A\)+\(\vec B\)|=|\(\vec A\) - \(\vec B\)| is always true when:

(a) |\(\vec A\)| = |\(\vec B\)|  ≠ \(0\)
(b) \(\vec A\perp\vec B\)
(c) |\(\vec A\)| = |\(\vec B\)|  ≠ \(0\) and \(\vec A\) and \(\vec B\) are parallel or antiparallel.
(d) when either |\(\vec A\)| or |\(\vec B\)| is zero.

Choose the correct option from the given ones:
1. (a), (d)
2. (b), (c)
3. (b), (d)
4. (a), (b)
Subtopic:  Resultant of Vectors |
 55%
From NCERT
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It is found that \(|\vec{A}+\vec{B}|=|\vec{A}|\). This necessarily implies:

1. \(\vec{B}=0\)
2. \(\vec{A},\) \(\vec{B}\) are antiparallel
3. \(\vec{A}\) and \(\vec{B}\) are perpendicular
4. \(\vec{A}.\vec{B}\leq0\)

Subtopic:  Scalar Product |
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Three vectors \(A,B\) and \(C\) add up to zero. Then:
1. vector \((A\times B)\times C\) is not zero unless vectors \(B\) and \(C\) are parallel.
2. vector \((A\times B).C\) is not zero unless vectors \(B\) and \(C\) are parallel.
3. if vectors \(A,B\) and \(C\) define a plane, \((A\times B)\times C\) is in that plane.
4. \((A\times B). C= |A||B||C|\rightarrow C^2= A^2+B^2\)

The incorrect statement/s is/are:
1. (b), (d)
2. (a), (c)
3. (b), (c), (d)
4. (a), (b)

Subtopic:  Vector Product |
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Consider the quantities of pressure, power, energy, impulse, gravitational potential, electric charge, temperature, and area. Out of these, the only vector quantities are:

1. impulse, pressure, and area
2. impulse and area
3. area and gravitational potential
4. impulse and pressure

Subtopic:  Scalars & Vectors |
From NCERT
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The component of a vector \(\vec{r}\) along the X-axis will have maximum value if:

1. \(\vec{r}\) is along the positive Y-axis.
2. \(\vec{r}\) is along the positive X-axis.
3. \(\vec{r}\) makes an angle of \(45^\circ\) with the X-axis.
4. \(\vec{r}\) is along the negative Y-axis.

Subtopic:  Resolution of Vectors |
 69%
From NCERT
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