The test tube opens at 293 K with 13 cm Hg at the bottom, and 6 cm water above the Hg. Calculate the pressure at the bottom of the tube if the atmospheric pressure is 760 mm Hg. Use a density of 13.55 g / cm for Hg and 0.998 g / cm for water. Give the answer in terms of dyne / cm2, psia, and kN / m2 (See conversion table). = kPa. = dyne / cm2 = psia.
The test tube opens at 293 K with 13 cm Hg at the bottom, and 6 cm water above the Hg. Calculate the pressure at the bottom of the tube if the atmospheric pressure is 760 mm Hg. Use a density of 13.55 g / cm for Hg and 0.998 g / cm for water. Give the answer in terms of dyne / cm2, psia, and kN / m2 (See conversion table). = kPa. = dyne / cm2 = psia.
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Question
The test tube opens at 293 K with 13 cm Hg at the bottom, and 6 cm water above the Hg. Calculate the pressure at the bottom of the tube if the atmospheric pressure is 760 mm Hg. Use a density of 13.55 g / cm for Hg and 0.998 g / cm for water. Give the answer in terms of dyne / cm2,
psia, and kN / m2 (See conversion table). =
kPa. =
dyne / cm2 =
psia.

Transcribed Image Text:12.24 d
O 78 7 l ..
(76
e-learning.untan.ac.id/l
18
on 3
Tabung reaksi terbuka pada 293 K terdapat 13 cm Hg di
bagian bawah, dan 6 cm air di atas Hg. Hitung tekanan di
bagian dasar tabung jika tekanan atmosfer adalah 760 mm
Hg. Gunakan massa jenis 13.55 g / cm3 untuk Hg dan 0.998
g/ cm3 untuk air.Berikan jawaban dalam hal dyne / cm?,
psia, dan kN / m² · (Lihat Tabel konversi). =
red
Tout of
kPa. =
dyne/cm2. =
psia.
pus page
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Transcribed Image Text:The test tube opens at 293 K with
13 cm Hg at the bottom, and 6 cm
water above the Hg. Calculate the
pressure at the bottom of the tube
if the atmospheric pressure is 760
mm Hg. Use a density of 13.55 g /
cm for Hg and 0.998 g / cm for
water. Give the answer in terms of
dyne / cm2,
psia, and kN / m2 (See conversion
table). =
kPa. =
dyne / cm2 =
psia.
19.11 /
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