C1 (b). Calculate the capillary effect in mm in a glass tube of 4.2 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0771 N/m and 0.64 N/m respectively. The contact angle for water =0° and mercury =130°.

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter11: Calibrating Instruments
Section: Chapter Questions
Problem 4RQ: Temperature-measuring instruments may be designed to measure the temperature of vapors, ________,...
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C1(a).(i).The density of oil in kg/m3 k
C1(a). (ii) the weight density of oil in N/m3
C1(a). (iii) the specific gravity
C1(a). (iv) the specific volume in m³/kg
C1 (b). 1.The capillary effect (water) in mm
C1 (b). 2.The capillary effect (mercury) in mm
Transcribed Image Text:C1(a).(i).The density of oil in kg/m3 k C1(a). (ii) the weight density of oil in N/m3 C1(a). (iii) the specific gravity C1(a). (iv) the specific volume in m³/kg C1 (b). 1.The capillary effect (water) in mm C1 (b). 2.The capillary effect (mercury) in mm
(ii) the weight density of oil in N/m³, (iii) the specific
gravity, and (iv) the specific volume in m3/kg.
M
C1 (b). Calculate the capillary effect in mm in a
glass tube of 4.2 mm diameter, when immersed in
(1) water (2) mercury. The values of surface
tension in contact with air are 0.0771 N/m and 0.64
N/m respectively. The contact angle for water =0°
and mercury =130°.
Transcribed Image Text:(ii) the weight density of oil in N/m³, (iii) the specific gravity, and (iv) the specific volume in m3/kg. M C1 (b). Calculate the capillary effect in mm in a glass tube of 4.2 mm diameter, when immersed in (1) water (2) mercury. The values of surface tension in contact with air are 0.0771 N/m and 0.64 N/m respectively. The contact angle for water =0° and mercury =130°.
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