Physics & Maths — past paper.pdf
উত্তরসহ প্রশ্নগুলো পড়ুন। কিছু মূল্যায়ন হবে না।
- 1
A car accelerates uniformly from rest at $3\,\text{m/s}^2$ for $4\,\text{s}$. What is its final velocity?
- a)$7\,\text{m/s}$
- b)$12\,\text{m/s}$
- c)$0.75\,\text{m/s}$
- d)$48\,\text{m/s}$
Using $v = u + at$ with $u = 0$: $v = 3 \times 4 = 12\,\text{m/s}$.
- 2
Newton’s second law is usually written as:
- a)$F = ma$
- b)$F = mv$
- c)$F = \frac{m}{a}$
- d)$F = m + a$
Resultant force equals mass times acceleration.
- 3
What is the kinetic energy of a $2\,\text{kg}$ mass moving at $3\,\text{m/s}$?
- a)$6\,\text{J}$
- b)$9\,\text{J}$
- c)$18\,\text{J}$
- d)$3\,\text{J}$
$E_k = \tfrac{1}{2}mv^2 = 0.5 \times 2 \times 9 = 9\,\text{J}$.
- 4
Solve for $x$: $2x + 7 = 19$.
- a)$x = 5$
- b)$x = 6$
- c)$x = 12$
- d)$x = 13$
Subtract 7 to get $2x = 12$, then divide by 2.
- 5
What are the roots of $x^2 - 5x + 6 = 0$?
- a)$x = 1$ and $x = 6$
- b)$x = 2$ and $x = 3$
- c)$x = -2$ and $x = -3$
- d)$x = 0$ and $x = 5$
It factorises to $(x-2)(x-3) = 0$.
- 6
Ohm’s law relates voltage, current and resistance as:
- a)$V = IR$
- b)$V = \frac{I}{R}$
- c)$V = I + R$
- d)$V = I^2R^2$
Voltage is the product of current and resistance.
- 7
A $12\,\text{V}$ supply drives $2\,\text{A}$ through a resistor. What is its resistance?
- a)$24\,\Omega$
- b)$6\,\Omega$
- c)$10\,\Omega$
- d)$0.17\,\Omega$
Rearranging $V = IR$ gives $R = V/I = 12/2 = 6\,\Omega$.
- 8
In a right-angled triangle, $\sin\theta$ is defined as:
- a)$\frac{\text{opposite}}{\text{hypotenuse}}$
- b)$\frac{\text{adjacent}}{\text{hypotenuse}}$
- c)$\frac{\text{opposite}}{\text{adjacent}}$
- d)$\frac{\text{hypotenuse}}{\text{opposite}}$
Opposite over hypotenuse — the "SOH" of SOH-CAH-TOA.
- 9
A wave has frequency $50\,\text{Hz}$ and wavelength $4\,\text{m}$. What is its speed?
- a)$54\,\text{m/s}$
- b)$200\,\text{m/s}$
- c)$12.5\,\text{m/s}$
- d)$0.08\,\text{m/s}$
$v = f\lambda = 50 \times 4 = 200\,\text{m/s}$.
- 10
A $5\,\text{kg}$ box is pushed with $20\,\text{N}$ against $5\,\text{N}$ of friction. What is its acceleration?
- a)$4\,\text{m/s}^2$
- b)$3\,\text{m/s}^2$
- c)$5\,\text{m/s}^2$
- d)$1\,\text{m/s}^2$
Resultant force is $20 - 5 = 15\,\text{N}$, so $a = F/m = 15/5 = 3\,\text{m/s}^2$.
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