C1 (a). A lubricating oil having the dynamic viscosity of 0.058 poise and kinematic viscosity of 0.19 stokes. Calculate ) the density of oil in kg/m, () the weight density of oil in N/m3,(ii) the specific gravity, and (iv) the specific volume in m/kg. C1 (b). Calculate the capillary effect in mm in a glass tube of 4.4 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0756 N/m and 0.74 N/m respectively. The contact angle for water =0° and mercury = 130°. (Enter only the values by referring to the unit given. Also, upload the handwritten answers in the link provided)
C1 (a). A lubricating oil having the dynamic viscosity of 0.058 poise and kinematic viscosity of 0.19 stokes. Calculate ) the density of oil in kg/m, () the weight density of oil in N/m3,(ii) the specific gravity, and (iv) the specific volume in m/kg. C1 (b). Calculate the capillary effect in mm in a glass tube of 4.4 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0756 N/m and 0.74 N/m respectively. The contact angle for water =0° and mercury = 130°. (Enter only the values by referring to the unit given. Also, upload the handwritten answers in the link provided)
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![C1 (a). A lubricating oil having the dynamic viscosity of 0.058 poise and kinematic viscosity of 0.19 stokes. Calculate ) the density of oil in kg/m³, (ii) the weight density of oil in N/m3,(iii) the
specific gravity, and (iv) the specific volume in m3/kg.
C1 (b). Calculate the capillary effect in mm in a glass tube of 4.4 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0756 N/m and 0.74
N/m respectively. The contact angle for water =0° and mercury = 130°. (
(Enter only the values by referring to the unit given. Also, upload the handwritten answers in the link provided)
C1(a).(1).The density of oil in kg/m3
C1(a). (ii) the weight density of oil in N/m3
C1(a). (iii) the specific gravity
C1(a). (iv) the specific volume in m?/kg
C1 (b). 1.The capillary effect (water) in mm
-----
C1 (b). 2.The capillary effect (mercury) in mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F420adeb6-6551-4e78-b33b-b30461e9abb9%2F529314ab-656f-4e8d-8860-7fc071efff2a%2Fr82zj9n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:C1 (a). A lubricating oil having the dynamic viscosity of 0.058 poise and kinematic viscosity of 0.19 stokes. Calculate ) the density of oil in kg/m³, (ii) the weight density of oil in N/m3,(iii) the
specific gravity, and (iv) the specific volume in m3/kg.
C1 (b). Calculate the capillary effect in mm in a glass tube of 4.4 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0756 N/m and 0.74
N/m respectively. The contact angle for water =0° and mercury = 130°. (
(Enter only the values by referring to the unit given. Also, upload the handwritten answers in the link provided)
C1(a).(1).The density of oil in kg/m3
C1(a). (ii) the weight density of oil in N/m3
C1(a). (iii) the specific gravity
C1(a). (iv) the specific volume in m?/kg
C1 (b). 1.The capillary effect (water) in mm
-----
C1 (b). 2.The capillary effect (mercury) in mm
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