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NEET PYQ From YCT Publication Book
Units and Measurements
1.1 Units
1. The unit of thermal conductivity is:
เคคाเคช เคाเคฒเคเคคा เคा เคฎाเคค्เคฐเค เคนै:
- J m−1 K−1
- W m K−1
- W m−1 K−1
- J m K−1
Exam: NEET (UG) — 05.05.2019
Answer: (c)
Thermal conductivity is the amount of heat that flows per unit time through a unit area with a temperature gradient of one Kelvin per unit length.
The relation for heat conduction is:
\[ \frac{Q}{t} = kA\frac{\Delta T}{\ell} \]
Where:
- \(k\) = thermal conductivity
- \(Q\) = heat transferred
- \(A\) = area of cross-section
- \(\Delta T\) = temperature difference
- \(\ell\) = length
- \(t\) = time
Rearranging the equation:
\[ k = \frac{Q\ell}{A t \Delta T} \]
Therefore, the SI unit of \(k\) is:
\[ \frac{\text{J}\cdot\text{m}} {\text{m}^2\cdot\text{s}\cdot\text{K}} = \frac{\text{J}} {\text{m}\cdot\text{s}\cdot\text{K}} \]
Since:
\[ 1\,\text{W} = 1\,\text{J s}^{-1} \]
we get:
\[ [k] = \text{W m}^{-1}\text{K}^{-1} \]
Hence, the correct answer is (c) W m−1 K−1.
2. The density of a material in CGS system of units is \(4\,\text{g/cm}^3\). In a system of units in which the unit of length is 10 cm and the unit of mass is 100 g, the value of density of the material will be:
เคฎाเคค्เคฐเคों เคी CGS เคชเคฆ्เคงเคคि เคฎें เคिเคธी เคชเคฆाเคฐ्เคฅ เคा เคเคจเคค्เคต \(4\,\text{g/cm}^3\) เคนै। เคฎाเคค्เคฐเคों เคी เคเค เคเคธी เคชเคฆ्เคงเคคि เคฎें เคिเคธเคฎें เคฒंเคฌाเค เคी เคเคाเค 10 cm เคคเคฅा เคฆ्เคฐเคต्เคฏเคฎाเคจ เคी เคเคाเค 100 g เคนै, เคชเคฆाเคฐ्เคฅ เคे เคเคจเคค्เคต เคा เคฎाเคจ เคนोเคा:
- 0.04
- 0.4
- 40
- 400
Exam: AIPMT (Mains) — 2011
Answer: (c)
The density of the material in the CGS system is:
\[ \rho = 4\,\text{g/cm}^3 \]
In the new system:
\[ 1\text{ unit of mass} = 100\,\text{g} \]
Therefore:
\[ 1\,\text{g} = \frac{1}{100} \text{ unit of mass} \]
Similarly:
\[ 1\text{ unit of length} = 10\,\text{cm} \]
Therefore:
\[ 1\,\text{cm} = \frac{1}{10} \text{ unit of length} \]
Since density is mass per unit volume:
\[ \rho = \frac{4\,\text{g}}{\text{cm}^3} \]
Substituting the new units:
\[ \rho = \frac{ 4\left(\frac{1}{100}\right) }{ \left(\frac{1}{10}\right)^3 } \]
\[ = \frac{4/100}{1/1000} \]
\[ = \frac{4\times1000}{100} = 40 \]
Hence, the density in the new system is 40 units.
Therefore, the correct answer is (c) 40.
3. The unit of permittivity of free space \(\varepsilon_0\) is:
เคจिเคฐ्เคตाเคค เคी เคชเคฐाเคตैเคฆ्เคฏुเคคเคคा \(\varepsilon_0\) เคा เคฎाเคค्เคฐเค เคนोเคा:
- Newton metre2 / Coulomb2
- Coulomb2 / Newton metre2
- Coulomb2 / (Newton metre)2
- Coulomb / Newton metre
Exam: AIPMT — 2004
Answer: (b)
According to Coulomb's law:
\[ F = \frac{1}{4\pi\varepsilon_0} \frac{q_1q_2}{r^2} \]
Rearranging for \(\varepsilon_0\):
\[ \varepsilon_0 = \frac{q_1q_2} {4\pi F r^2} \]
Ignoring the dimensionless constant \(4\pi\), the unit is:
\[ [\varepsilon_0] = \frac{\text{C}^2} {\text{N}\cdot\text{m}^2} \]
Therefore, the unit of permittivity of free space is:
\[ \boxed{ \text{C}^2\text{N}^{-1}\text{m}^{-2} } \]
Hence, the correct answer is (b) Coulomb2 / (Newton metre2).
4. Tesla is the unit of:
เคेเคธ्เคฒा เคिเคธเคा เคฎाเคค्เคฐเค เคนै?
- Electric field — เคตिเคฆ्เคฏुเคค เค्เคทेเคค्เคฐ
- Magnetic field — เคुंเคฌเคीเคฏ เค्เคทेเคค्เคฐ
- Electric flux — เคตिเคฆ्เคฏुเคค เคซ्เคฒเค्เคธ
- Magnetic flux — เคुंเคฌเคीเคฏ เคซ्เคฒเค्เคธ
Exam: AIPMT — 1997, 1998
Answer: (b)
Tesla (T) is the SI unit of magnetic field or magnetic flux density.
One tesla is defined as the magnetic field that produces a force of one newton on a conductor carrying a current of one ampere when the conductor is perpendicular to the magnetic field and has a length of one metre.
The force on a current-carrying conductor is:
\[ F = BIL\sin\theta \]
For \(\theta=90^\circ\):
\[ F = BIL \]
Therefore:
\[ B = \frac{F}{IL} \]
Hence, the SI unit of magnetic field is:
\[ 1\,\text{T} = 1\,\frac{\text{N}}{\text{A}\cdot\text{m}} \]
Therefore:
- Magnetic field → Tesla (T)
- Electric field → V/m or N/C
- Electric flux → N m2/C
- Magnetic flux → Weber (Wb)
Hence, the correct answer is (b) Magnetic field.