148559 A Carnot engine with efficiency $\eta$ operates between two heat reservoirs with temperatures $T_{1}$ and $T_{2}$, where $T_{1}>T_{2}$. If only $T_{1}$ is changed by $0.4 \%$, the change in efficiency is $\Delta \eta_{1}$, whereas if only $T_{2}$ is changed by $0.2 \%$, the efficiency is changed by $\Delta \eta_{2}$. The ratio $\frac{\Delta \eta_{1}}{\Delta \eta_{2}}$ is approximately.
148559 A Carnot engine with efficiency $\eta$ operates between two heat reservoirs with temperatures $T_{1}$ and $T_{2}$, where $T_{1}>T_{2}$. If only $T_{1}$ is changed by $0.4 \%$, the change in efficiency is $\Delta \eta_{1}$, whereas if only $T_{2}$ is changed by $0.2 \%$, the efficiency is changed by $\Delta \eta_{2}$. The ratio $\frac{\Delta \eta_{1}}{\Delta \eta_{2}}$ is approximately.
148559 A Carnot engine with efficiency $\eta$ operates between two heat reservoirs with temperatures $T_{1}$ and $T_{2}$, where $T_{1}>T_{2}$. If only $T_{1}$ is changed by $0.4 \%$, the change in efficiency is $\Delta \eta_{1}$, whereas if only $T_{2}$ is changed by $0.2 \%$, the efficiency is changed by $\Delta \eta_{2}$. The ratio $\frac{\Delta \eta_{1}}{\Delta \eta_{2}}$ is approximately.
148559 A Carnot engine with efficiency $\eta$ operates between two heat reservoirs with temperatures $T_{1}$ and $T_{2}$, where $T_{1}>T_{2}$. If only $T_{1}$ is changed by $0.4 \%$, the change in efficiency is $\Delta \eta_{1}$, whereas if only $T_{2}$ is changed by $0.2 \%$, the efficiency is changed by $\Delta \eta_{2}$. The ratio $\frac{\Delta \eta_{1}}{\Delta \eta_{2}}$ is approximately.