An object moving in a liquid experiences a linear drag force: F → d r a g = ( bv , direction opposite the motion), where b is a constant called the drag coefficient . For a sphere of radius R , the drag constant can be computed as b = 6p?R , where ? is the viscosity of the liquid. a. Find an algebraic expression for v x ( t ), the x -component of velocity as a function of time, for a spherical particle of radius R and mass m that is shot horizontally with initial speed v 0 through a liquid of viscosity ? . b. Water at 20°C has viscosity ? = 1.0 × 10-3 N s/m 2 . Suppose a 4.0-cm-diameter, 33 g ball is shot horizontally into a tank of 20°C water. How long will it take for the horizontal speed to decrease to 50% of its initial value?
An object moving in a liquid experiences a linear drag force: F → d r a g = ( bv , direction opposite the motion), where b is a constant called the drag coefficient . For a sphere of radius R , the drag constant can be computed as b = 6p?R , where ? is the viscosity of the liquid. a. Find an algebraic expression for v x ( t ), the x -component of velocity as a function of time, for a spherical particle of radius R and mass m that is shot horizontally with initial speed v 0 through a liquid of viscosity ? . b. Water at 20°C has viscosity ? = 1.0 × 10-3 N s/m 2 . Suppose a 4.0-cm-diameter, 33 g ball is shot horizontally into a tank of 20°C water. How long will it take for the horizontal speed to decrease to 50% of its initial value?
An object moving in a liquid experiences a linear drag force:
F
→
drag = (bv, direction opposite the motion), where b is a constant called the drag coefficient. For a sphere of radius R, the drag constant can be computed as b = 6p?R, where ? is the viscosity of the liquid.
a. Find an algebraic expression for vx(t), the x-component of velocity as a function of time, for a spherical particle of radius R and mass m that is shot horizontally with initial speed v0through a liquid of viscosity ?.
b. Water at 20°C has viscosity ? = 1.0 × 10-3 N s/m2. Suppose a 4.0-cm-diameter, 33 g ball is shot horizontally into a tank of 20°C water. How long will it take for the horizontal speed to decrease to 50% of its initial value?
Two moles of carbon monoxide (CO) start at a pressure of 1.4 atm and a volume of 35 liters. The gas is then
compressed adiabatically to 1/3 this volume. Assume that the gas may be treated as ideal.
Part A
What is the change in the internal energy of the gas?
Express your answer using two significant figures.
ΕΠΙ ΑΣΦ
AU =
Submit
Request Answer
Part B
Does the internal energy increase or decrease?
internal energy increases
internal energy decreases
Submit
Request Answer
Part C
?
J
Does the temperature of the gas increase or decrease during this process?
temperature of the gas increases
temperature of the gas decreases
Submit
Request Answer
Your answer is partially correct.
Two small objects, A and B, are fixed in place and separated by 2.98 cm in a vacuum. Object A has a charge of
+0.776 μC, and object B has a charge of -0.776 μC. How many electrons must be removed from A and put
onto B to make the electrostatic force that acts on each object an attractive force whose magnitude is 12.4 N?
e (mea
is the
es a co
le E o
ussian
Number
Tevtheel
ed Media
!
Units
No units →
answe
Tr2E
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.