Answer:
Step-by-step explanation:
Efficiency of the electric power plant is
![e=1-(T_(2))/(T_(1))](https://img.qammunity.org/2020/formulas/chemistry/middle-school/95pldvoat3qdxuqdin0bl1ydnsyqsvocyv.png)
Here Temperature of hot source
![T_(1) = 450^(o)C=450+273=723 K](https://img.qammunity.org/2020/formulas/chemistry/middle-school/rbtbgcgrgfgn1kd62elqh1y6j0vqf7kipo.png)
and Temperature of sink
![T_(1) = 20^(o)C=20+273=293 K](https://img.qammunity.org/2020/formulas/chemistry/middle-school/nt9eppmepl856kpp6d7v7eikeam9o1po07.png)
Hence the efficiency is
Now another formula for thermal efficiency Is
![e_(therm)=(Q_(1)-Q_(2))/(Q_(1))=(W)/(Q_(1))](https://img.qammunity.org/2020/formulas/chemistry/middle-school/7zol6l66u5gmkzww9x5llervd1zke3sq1t.png)
Here QI is the of heat taken from source 100 MJ ; Q2 of heat transferred to the sink (river) to be found
W is the of work done and W = QI -Q2
Hence From
![e_(therm)=(Q_(1)-Q_(2))/(Q_(1))=(W)/(Q_(1))](https://img.qammunity.org/2020/formulas/chemistry/middle-school/7zol6l66u5gmkzww9x5llervd1zke3sq1t.png)
![W=e(Q_(1))=(0.5947)(100)=59.47MJ](https://img.qammunity.org/2020/formulas/chemistry/middle-school/3ytyrakc8ipa2hm10jwi0885l2k2uqsm4z.png)
Hence the of heat transferred to the river Is
![Q_(2) -W = (100 -59.47=40.53](https://img.qammunity.org/2020/formulas/chemistry/middle-school/sn4rt74dhgkfqos4q9mxbeditb10s9iyr8.png)