For a thermocouple,the inversion temperature is $600^{\circ} C$ and the neutral temperature is $320^{\circ} C$. Find the temperature of the cold junction (in $^{\circ} C$)?

  • A
    $40$
  • B
    $20$
  • C
    $80$
  • D
    $60$

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In Circuit-$1$ and Circuit-$2$ shown in the figures,$R_1=1 \Omega, R_2=2 \Omega$ and $R_3=3 \Omega$. $P_1$ and $P_2$ are the power dissipations in Circuit-$1$ and Circuit-$2$ when the switches $S_1$ and $S_2$ are in open conditions,respectively. $Q_1$ and $Q_2$ are the power dissipations in Circuit-$1$ and Circuit-$2$ when the switches $S_1$ and $S_2$ are in closed conditions,respectively. Which of the following statement$(s)$ is(are) correct?
$(A)$ When a voltage source of $6 V$ is connected across $A$ and $B$ in both circuits,$P_2 > P_1$.
$(B)$ When a constant current source of $2 A$ is connected across $A$ and $B$ in both circuits,$P_1 > P_2$.
$(C)$ When a voltage source of $6 V$ is connected across $A$ and $B$ in Circuit-$1$,$Q_1 > P_1$.
$(D)$ When a constant current source of $2 A$ is connected across $A$ and $B$ in both circuits,$Q_1 > Q_2$.

Match List-$I$ with List-$II$ and select the correct answer using the codes given below the lists.
List-$I$ List-$II$
$I$. Joule $A$. $\text{Henry} \times \text{Amp/sec}$
$II$. Watt $B$. $\text{Farad} \times \text{Volt}$
$III$. Volt $C$. $\text{Coulomb} \times \text{Volt}$
$IV$. Coulomb $D$. $\text{Oersted} \times \text{cm}$
$E$. $\text{Amp} \times \text{Gauss}$
$F$. $\text{Amp}^2 \times \text{Ohm}$

The production of $e.m.f.$ by maintaining a difference of temperature between the two junctions of two different metals is known as

$A$ $25\, W$, $220\, V$ bulb and a $100\, W$, $220\, V$ bulb are connected in parallel across a $440\, V$ line. Which of the following will happen?

In the circuit shown here,the readings of the ammeter and voltmeter are

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