Answer:
a) the coefficient of performance of the air conditioner is 3.5729
b)
- the power input required for a reversible air conditioner is 0.645 hp
- the coefficient of performance for the reversible air conditioner is 18.2759 
Step-by-step explanation:
Given the data in the question;
Lower Temperature 
 = 70°F = ( 70 + 460 )R = 530 R
 = 70°F = ( 70 + 460 )R = 530 R
Higher Temperature 
 = 99° F = ( 99 + 460 )R = 559 R
 = 99° F = ( 99 + 460 )R = 559 R
Cooling Load 
 = 30000 Btu/h
 = 30000 Btu/h
we know that 1 hp = 2544.43 Btu/h
Net power input P = 3.3 hp = ( 3.3 × 2544.43 )Btu/h = 8396.619 Btu/h 
a)
 Coefficient of performance of the air conditioner;
 = Cooling Load
 = Cooling Load 
 / power P
 / power P
we substitute
 = 30000 Btu/h / 8396.619 Btu/h
 = 30000 Btu/h / 8396.619 Btu/h 
 = 3.5729
 = 3.5729
Therefore, the coefficient of performance of the air conditioner is 3.5729
b)
- Power input required ( in hp )
 /
 / 
 =
 = 
 / (
 / ( 
 -
 - 
 )
 )
we substitute
30000 Btu/h / 
 = 530 R / ( 559 R - 530 R )
 = 530 R / ( 559 R - 530 R )
30000 Btu/h / 
 = 530 R / 29 R
 = 530 R / 29 R
we solve for 
 
 
 = ( 30000 Btu/h × 29 R ) / 530 R
 = ( 30000 Btu/h × 29 R ) / 530 R
 = ( 870000 Btu/h / 530 )
 = ( 870000 Btu/h / 530 )
 = 1641.5094 Btu/h
 = 1641.5094 Btu/h
we know that; 1 hp = 2544.43 Btu/h
so;
 = ( 1641.5094 / 2544.43 ) hp
 = ( 1641.5094 / 2544.43 ) hp
 = 0.645 hp
 = 0.645 hp
Hence, the power input required for a reversible air conditioner is 0.645 hp
- the coefficient of performance for the reversible air conditioner;
 =
 = 
 / (
 / ( 
 -
 - 
 )
 )
we substitute
 = 530 R / ( 559 R - 530 R )
 = 530 R / ( 559 R - 530 R )
 = 530 R / 29 R
 = 530 R / 29 R
 = 18.2759
 = 18.2759 
Hence, the coefficient of performance for the reversible air conditioner is 18.2759