152623
Two batteries of emf $4 \mathrm{~V}$ and $8 \mathrm{~V}$ with internal resistances $1 \Omega$ and $2 \Omega$ respectively are connected to an external resistance, $R=9 \Omega$ as shown in figure. The current in circuit and the potential difference between $P$ and $Q$ respectively will be
152623
Two batteries of emf $4 \mathrm{~V}$ and $8 \mathrm{~V}$ with internal resistances $1 \Omega$ and $2 \Omega$ respectively are connected to an external resistance, $R=9 \Omega$ as shown in figure. The current in circuit and the potential difference between $P$ and $Q$ respectively will be
152623
Two batteries of emf $4 \mathrm{~V}$ and $8 \mathrm{~V}$ with internal resistances $1 \Omega$ and $2 \Omega$ respectively are connected to an external resistance, $R=9 \Omega$ as shown in figure. The current in circuit and the potential difference between $P$ and $Q$ respectively will be
152623
Two batteries of emf $4 \mathrm{~V}$ and $8 \mathrm{~V}$ with internal resistances $1 \Omega$ and $2 \Omega$ respectively are connected to an external resistance, $R=9 \Omega$ as shown in figure. The current in circuit and the potential difference between $P$ and $Q$ respectively will be
152623
Two batteries of emf $4 \mathrm{~V}$ and $8 \mathrm{~V}$ with internal resistances $1 \Omega$ and $2 \Omega$ respectively are connected to an external resistance, $R=9 \Omega$ as shown in figure. The current in circuit and the potential difference between $P$ and $Q$ respectively will be