Answer:
R = 25 cm
Step-by-step explanation:
 We can solve this problem using the Archimedes principle that the magnitude of hydrostatic thrust equal to the weight of the liquid dislodged 
Let's start by reducing all units is to the SI system 
 ρ liq = 1000 kg / m3 (water) 
 ρ body = 0.0950 g /cm³ (1 kg / 1000g) 10⁶ cm³ / 1m³) = 95 kg/m³ 
 
We use Newton's second law for this equilibrium case 
 
 B - F -W = 0 
 B = ρ liq g V 
 
 ρ = m / V 
 m = ρ V 
 W = ρbody g V 
 
 ρliq g V body - F - ρbody g Vbody = 
 Vbody g (ρliq - ρbody) = F 
 V body = F / g (ρliq - ρbody) 
 
 V body = 608 / [9.81 (1000 -95) 
 V body = 0.06855 m3 
 
The volume of a sphere is 
 V = 4/3 pi R3 
 R =∛ ¾ V /π 
 R = ∛ ¾ 0.06855 /π 
 R = 0.254 m 
 R = 25 cm