A 10 kg sack slides down a smooth surface. If the normal force on the surface at the flat spot, A is 98.1 N (↑↑), the radius of the curvature is _____.a. 0.2 mb. 0.4 mc. 1.0 md. None of the above.

Answers

Answer 1

The radius of the curvature is 1.0 m (option c)  If the normal force on the surface at the flat spot, A is 98.1 N (↑↑) .

To calculate the radius of curvature using this formula:
radius of curvature (r) = (mass × acceleration due to gravity) / normal force

Step 1: Identify the mass (m), acceleration due to gravity (g), and normal force (N).
mass (m) = 10 kg
acceleration due to gravity (g) = 9.81 m/s²
normal force (N) = 98.1 N

Step 2: Plug in the values into the formula.
radius of curvature (r) = (10 kg × 9.81 m/s²) / 98.1 N

Step 3: Perform the calculations.
radius of curvature (r) = (98.1 kg m/s²) / 98.1 N

Step 4: Simplify the result.
radius of curvature (r) = 1 m

So, the radius of the curvature is 1.0 m .Hence, option c is correct.

To know more about Normal force refer here :

https://brainly.com/question/31377954

#SPJ11


Related Questions

The period of the Moon's rotation is the same as the period of its revolution: 27.3 days (sidereal).
What is the angular momentum for each rotation and revolution? (Because the periods are equal, we see only one side of the Moon from Earth.)

Answers

The angular momentum of the Moon's rotation and revolution is approximately 6.68 × 10^33 kg m^2/s.

How can angular momentum of the Moon's rotation and revolution can be calculated?

The angular momentum of the Moon's rotation and revolution can be calculated using the formula:

L = Iω

where L is the angular momentum, I is the moment of inertia, and ω is the angular velocity.

For the Moon's rotation, the moment of inertia can be approximated as that of a solid sphere, which is:

I = (2/5)MR^2

where M is the mass of the Moon and R is its radius.

The angular velocity can be calculated as:

ω = 2π/T

where T is the period of rotation, which is 27.3 days.

Substituting these values, we get:

L_rotation = (2/5)MR^2 * (2π/27.3 days)

For the Moon's revolution, the moment of inertia can be approximated as that of a point mass, which is:

I = MR^2

where M is the mass of the Moon and R is the radius of its orbit around the Earth.

The angular velocity can be calculated as:

ω = 2π/T

where T is the period of revolution, which is also 27.3 days.

Substituting these values, we get:

L_revolution = MR^2 * (2π/27.3 days)

Since the period of rotation and revolution is the same, both angular momenta have the same value. Therefore, we can simplify the equations to:

L = (2/5)MR^2 * (2π/27.3 days)

and

L = MR^2 * (2π/27.3 days)

which both simplify to:

L = (2π/27.3 days) * (M*R^2)

Using the known values for the mass and radius of the Moon (M = 7.342 × 10^22 kg, R = 1.737 × 10^6 m), we can calculate the angular momentum:

L = (2π/27.3 days) * (7.342 × 10^22 kg * (1.737 × 10^6 m)^2)

L = 6.68 × 10^33 kg m^2/s

Therefore, the angular momentum of the Moon's rotation and revolution is approximately 6.68 × 10^33 kg m^2/s.

Learn more about Moon's rotation

brainly.com/question/15672596

#SPJ11

a constant force acts for a time δt on a block that is initially at rest on a frictionless surface, resulting in a final velocity v.

Answers

When a constant force acts for a time δt on a block that is initially at rest on a frictionless surface, the block will experience an acceleration proportional to the force applied. The acceleration of the block will continue until the force is removed or until the block reaches a maximum velocity.

Assuming that the mass of the block is known, the acceleration can be calculated using Newton's Second Law, which states that force is equal to mass times acceleration (F=ma). Therefore, the acceleration can be calculated as a=F/m.
The final velocity v of the block can be calculated using the formula v=u+at, where u is the initial velocity (zero in this case), a is the acceleration calculated above, and t is the time for which the force is applied (δt in this case).Since the surface is frictionless, there is no opposing force to slow down the block, and hence, the final velocity v of the block will be solely determined by the magnitude of the force applied and the time for which it is applied.

Therefore, the constant force acting for a time δt on a block that is initially at rest on a frictionless surface will result in the block accelerating until it reaches a final velocity v.

For more such questions on Friction, visit:

brainly.com/question/13000653

#SPJ11

A Hobbit Home is surely a cooler design than your home, but why should Bilbo consider rethinking the design of the front door? A larger handle is needed when pulling at the center of mass Less leverage when pulling would be better That circular door has more rotational inertia than a rectangular door would The handle should be lower for smaller hobbits to pull and creating less rotational inertia More leverage when pulling would be better

Answers

While a Hobbit home may be a cooler design than a regular home, there are still functional considerations that should be taken into account when designing the front door. A larger handle, more leverage, and a lower handle would all make it easier to open the door and reduce the amount of force required to get it moving.

Bilbo may want to consider rethinking the design of the front door for a few reasons:

A larger handle is needed when pulling at the center of mass: The circular shape of the door means that the center of mass is not in the middle of the door. This makes it harder to pull the door open, especially if the handle is too small. A larger handle would provide more surface area to grip and make it easier to open the door.More leverage when pulling would be better: The circular shape of the door also means that there is less leverage when pulling the door open. A rectangular door with a longer handle would provide more leverage, making it easier to open the door.The handle should be lower for smaller hobbits to pull and creating less rotational inertia: The circular shape of the door creates more rotational inertia than a rectangular door would. This means that it takes more force to get the door moving, and once it is moving, it is harder to stop. A lower handle would make it easier for smaller hobbits to pull the door open and would also create less rotational inertia.

To know more about  leverage

https://brainly.com/question/29835109

#SPJ4

A 450 Ω resistor, an uncharged 2.75 μF capacitor and a 6.25 V emf are connected in series. What is the RC time constant? 1.24 ms 806 s 164 Ms 6.11 ns

Answers

The RC time constant for this circuit is 1.24 ms, which is option (a). The RC time constant is a value that measures how quickly a capacitor charges or discharges through a resistor in an electronic circuit.

It is calculated by multiplying the resistance (R) and capacitance (C) values together. In this case, we have a 450 Ω resistor and an uncharged 2.75 μF capacitor connected in series with a 6.25 V emf.

To find the RC time constant, we simply multiply the resistance and capacitance values together:

RC = R x C
[tex]RC = 450 \Omega \times2.75 \mu F[/tex]
RC = 1.2375 ms

Therefore, the RC time constant for this circuit is 1.24 ms (rounded to two decimal places). This means that it will take approximately 1.24 milliseconds for the capacitor to charge up to 63.2% of the applied voltage (6.25 V in this case) through the 450 Ω resistors.

The RC time constant is an important factor in determining the time behavior of electronic circuits, particularly in applications such as signal filtering and time-delay circuits.

To know more about capacitors refer here:

https://brainly.com/question/30874471#

#SPJ11

the rotating parts of a turbine of a jet engine have a 38-kg⋅m2 rotational inertia.. What is the average torque needed to accelerate the turbine from rest to a rotational velocity of 190 rad/s in 23 s ?

Answers

The turbine requires an average torque of 809,900 N.m to accelerate it from rest to a rotational velocity of 190 rad/s in 23 s.

How can I calculate average torque?

Between the pivot point and the location where the force is delivered, measure the distance, r. Calculate the angle between the vector connecting the force's application point and the pivot point and the direction of the applied force. You may calculate the torque by multiplying r by F and sin.

The relationship between the turbine's rotational inertia and its angular velocity and torque may be found using the rotational kinetic energy formula:  K_rot = (1/2) * I * w²

We can rearrange this equation to solve for the torque (T):

T = (I * w^2) / 2

We may first get the angular acceleration (alpha) by using the following formula to determine the torque required to accelerate the turbine from rest to a rotating velocity of 190 rad/s in 23 s.

alpha = w / t

where t is the time taken to reach the final angular velocity.

alpha = (190 rad/s) / (23 s) = 8.261 rad/s²

Next, we can use the formula for torque to calculate the average torque needed:

T = (I * w²) / 2

T = (38 kg.m²) * (190 rad/s)² / (2)

T = 809,900 N.m

To know more about torque visit:-

https://brainly.com/question/29024338

#SPJ1

Consider the following types of electromagnetic radiation: (1) radio waves, (2) infrared, (3) ultraviolet, (4) visible, (5) microwave, (6) x-ray.
Arrange them in the indicated orders, from lowest to highest, by entering numbers by order in the boxes below.
a. Arrange them in order of increasing wavelength.
b. Arrange them in order of increasing frequency
c. Arrange them in order of increasing energy.

Answers

The types of electromagnetic radiation arranged in order of increasing wavelength are (6) X-ray, (3) Ultraviolet, (4) Visible, (2) Infrared, (5) Microwave, (1) Radio waves.

In order of increasing frequency, they are (1) Radio waves, (5) Microwave, (2) Infrared, (4) Visible, (3) Ultraviolet, (6) X-ray.

Lastly, in order of increasing energy, the order is (1) Radio waves, (5) Microwave, (2) Infrared, (4) Visible, (3) Ultraviolet, (6) X-ray.


Electromagnetic radiation is composed of photons, which are particles that carry energy. They can be characterized by their wavelength, frequency, and energy. The relationship between these properties is given by the formula: Energy = (Planck's constant) x (Speed of light) / Wavelength.

Wavelength and frequency are inversely proportional, so as wavelength increases, frequency decreases. Since energy is directly proportional to frequency, higher frequency means higher energy. Therefore, the order of increasing wavelength is the reverse order of increasing frequency and energy.

To know more about electromagnetic radiation click on below link:

https://brainly.com/question/10759891#

#SPJ11

The three components of velocity in a flow field are given by u = x^2 + y^2 + z^2 v = xy + yz + z^2 w - 3xz - z^2/2 + 4 Determine the volumetric dilatation rate and interpret the results. (b) Determine an expression for the rotation vector. Is this an irrational flow field?

Answers

a) The volumetric dilatation rate for the given flow field is 0, indicating an incompressible flow.

b)∇ × V = (-z)i + (3x)j + (y)k so the flow field is rotational.

The rotation vector has non-zero components, which means the flow field is rotational and not irrotational.

To find the volumetric dilatation rate, calculate the divergence of the velocity vector (∇ • V):
∇ • V = (∂u/∂x) + (∂v/∂y) + (∂w/∂z)
Using the given components, we get:
∇ • V = (2x) + (x + z) + (-3x - z) = 0


To find the rotation vector, compute the curl of the velocity vector (∇ × V):
∇ × V = (∂w/∂y - ∂v/∂z)i + (∂u/∂z - ∂w/∂x)j + (∂v/∂x - ∂u/∂y)k
Calculating the partial derivatives, we get:
∇ × V = (-z)i + (3x)j + (y)k

Since the curl of the velocity vector has non-zero components, the flow field is rotational, not irrotational.

To know more about partial derivatives click on below link:

https://brainly.com/question/30365299#

#SPJ11

On which of the following physical quantities, specific heat capacity of a substance depends on?

A) Mass
B) Temperature
C) Nature
D) Mass and temperature

Prove your answer​

Answers

Answer:

The specific heat capacity of a substance is the amount of heat energy required to raise the temperature of one unit of mass of that substance by one degree Celsius (or one Kelvin). The specific heat capacity of a substance depends on its nature or composition, as well as the temperature range in which it is measured. Therefore, the correct answer is C) Nature.

Explanation:

a tin can has a total volume of 1260 cm3 and a mass of 141 g. how many grams of lead shot of density 11.4 g/cm3 could it carry without sinking in water?

Answers

The tin can can carry up to 5,792.76 g of lead shot without sinking in water.

The volume of air can be approximated by assuming that the can is a cylinder with a radius of 3 cm and a height of 14 cm, giving a volume of [tex]396 cm^3[/tex]. Therefore, the volume of the can submerged in water would be 1260 - 396 = [tex]864 cm^3[/tex].

Next, we can calculate the weight of the displaced water by multiplying the volume of the submerged portion of the can by the density of water, which is 1 g/cm^3.

Weight of displaced water = [tex]864 cm^3[/tex] x [tex]1 g/cm^3[/tex] = 864 g

To find the weight of lead shot the can can carry without sinking, we need to subtract the weight of the can and the weight of the displaced water from the buoyant force (which is equal to the weight of the water that the can displaces when fully submerged).

Weight of can = 141 g

Weight of lead shot = buoyant force - weight of can - weight of displaced water

Weight of lead shot = (864 g) x [tex](11.4 g/cm^3)[/tex] - 141 g - 864 g

Weight of lead shot = 6,797.76 g - 1,005 g

Weight of lead shot = 5,792.76 g

A force equal to the weight of the displaced fluid that operates on a submerged object is known as the buoyant force. In a fluid, this force determines whether an item floats or sinks. When an item is immersed in a liquid, the displacement of the fluid is proportional to the volume of the object.

The buoyant force, which is exerted on the object by this displaced fluid, is upward. The buoyant force of an object determines whether it will float or sink. If it is more than the object's weight, the object will float. The pressure differential between the submerged object's top and bottom causes the buoyant force.

To learn more about Buoyant force visit here:

brainly.com/question/21990136

#SPJ4

points B(G) Bx(g) By(g) Tetha(degrees A 9.04 -3.08 8.5 109.94
B 12.45 -4.52 11.6 111.29
C 0.36 -0.35 0.07 169.30 D 0.22 0.18 -0.13 -35.61
E 3.37 -3.28 -0.79 -166.51
F 0.80 0.07 -0.13 -60.37
G 25.27 25.15 2.37 5.38
based on your data table, where is the magnetic field weakest?

Answers

The magnetic field is weakest at point D with a total magnetic field strength of approximately 0.31.

Based on the data table provided, the magnetic field strength can be determined using the values of Bx, By, and Bz. To calculate the total magnetic field, B, at each point, we can use the following formula:

B = sqrt(Bx^2 + By^2 + Bz^2)

Calculating the magnetic field strength for each point:

A: B = sqrt(9.04^2 + (-3.08)^2 + 8.5^2) ≈ 12.55
B: B = sqrt(12.45^2 + (-4.52)^2 + 11.6^2) ≈ 18.23
C: B = sqrt(0.36^2 + (-0.35)^2 + 0.07^2) ≈ 0.52
D: B = sqrt(0.22^2 + 0.18^2 + (-0.13)^2) ≈ 0.31
E: B = sqrt(3.37^2 + (-3.28)^2 + (-0.79)^2) ≈ 4.75
F: B = sqrt(0.80^2 + 0.07^2 + (-0.13)^2) ≈ 0.81
G: B = sqrt(25.27^2 + 25.15^2 + 2.37^2) ≈ 35.74

Comparing these values, the magnetic field is weakest at point D i.e., approximately 0.31.

For more such questions on Magnetic field.

https://brainly.com/question/28104888#

#SPJ11

What happens when a wave enters shallow water?a. Wavelength increases, wave height increases, and wave speed decreases.b. Wavelength increases, wave height increases, and wave speed increases.c. Wavelength decreases, wave height increases, and wave speed decreases.d. Wavelength decreases, wave height decreases, and wave speed decreases.e. Wavelength decreases, wave height increases, and wave speed increases.

Answers

Right answer is option c. Wavelength decreases, wave height increases, and wave speed decreases.

When a wave enters shallow water, the wavelength decreases, the wave height increases, and the wave speed decreases. Therefore, the correct option is (c). This happens because the shallow water exerts more friction on the bottom of the wave, causing it to slow down and reduce its wavelength while increasing its height.
When a wave enters shallow water, the correct answer is: option C.

As a wave enters shallow water, the water depth affects the wave's properties. The wavelength (distance between two consecutive wave crests) decreases due to the interaction with the bottom, causing the wave to slow down. As the wave slows down, its energy is compressed, leading to an increase in wave height (the vertical distance between the crest and the trough).

Learn more about wave here:

https://brainly.com/question/25954805

#SPJ11

Jasmine and Emily were learning about forces in class. They learned that a
force was either a push or a pull. Emily wondered if gravity was a force. She
knew that when she dropped her book it was pulled down to the ground.
Jasmine knew that the moon had less gravity than the earth, but she wasn't
sure why.
Check the circle containing the statement you agree with:
Gravity depends on the material of the objects.
Gravity is not a force because it can't move objects.
Gravity is a force because a force is a push or a pull.
The moon has less gravity than the Earth because it has less mass than the
Earth.
The moon has less gravity than the Earth because it has no atmosphere.
X

Answers

The moon has less gravity because it has less mass

A small 650 g ball on the end of a thin, light rod is rotated in a horizontal circle of radius 1.3 m.(a) Calculate the moment of inertia of the ball about the center of the circle.(in kg·m2)(b) Calculate the torque needed to keep the ball rotating at constant angular velocity if air resistance exerts a force of 0.015 N on the ball. Ignore the rod's moment of inertia and air resistance.(in m·N)

Answers

The ball's moment of inertia around the circle's centre is 1.14 kg/m². 0.0195 Nm of torque is required to maintain the ball's rotational angular velocity.

Are joules a type of moment unit?

How come the SI unit of work is While both appear to have the same formula, the difference between the Joule and the SI unit of Moment of force (torque) is that the former includes a perpendicular distance while the latter just includes a distance. The joule is the SI unit for measuring work or energy.

I = mr²

where m is the mass of the ball and r is the radius of the circle. Substituting the given values, we get:

I = (0.65 kg) × (1.3 m)² = 1.14 kg·m²

τ = Fr

where F is the force exerted on the ball by air resistance and r is the radius of the circle. Substituting the given values, we get:

τ = (0.015 N) × (1.3 m) = 0.0195 N·m

To know more about angular velocity visit:-

https://brainly.com/question/29557272

#SPJ1

Hypothesis: The Elodea plants will perform photosynthesis and cellular respiration when placed in light and will only perform cellular respiration when placed in the dark. How is the dependent variable measured to test this hypothesis?
a. amount of carbon dioxide present
b. amount of oxygen present
c. number of Elodea plants
d. number of snails
e. amount of light
f. color of bromothymol blue

Answers

To test the given hypothesis, the dependent variable that needs to be measured is the amount of oxygen present. This is because photosynthesis produces oxygen as a byproduct and cellular respiration consume oxygen as a reactant.

When the Elodea plants are placed in light, they are expected to perform both photosynthesis and cellular respiration, leading to an increase in the amount of oxygen present.

On the other hand, when the Elodea plants are placed in the dark, they are expected to only perform cellular respiration, leading to a decrease in the amount of oxygen present. By measuring the amount of oxygen present in both light and dark conditions, we can determine if the hypothesis is supported or not.

The other options, such as the amount of carbon dioxide present, number of Elodea plants, number of snails, amount of light, and color of bromothymol blue are not directly related to the hypothesis and do not provide a clear indication of whether the plants are performing photosynthesis or cellular respiration.

To know more about photosynthesis refer here:

https://brainly.com/question/29775046#

#SPJ11

find the time t and tension in the rope when 600 kg mass moves up 3m

Answers

To find the time t and tension in the rope when a 600 kg mass moves up 3m, we need to use the equations of motion and energy conservation. Assuming that the mass moves with constant velocity, we can use the work-energy principle.



Work done by tension = Change in gravitational potential energy

Tension x distance = mgh

where m = 600 kg, g = 9.8 m/s^2 (acceleration due to gravity), and h = 3 m.

Solving for tension, we get:

Tension = mgh / distance = 600 x 9.8 x 3 / 3 = 17640 N

This is the tension in the rope when the mass is moving up at a constant velocity. To find the time t, we can use the kinematic equation:

distance = initial velocity x time + 0.5 x acceleration x time^2

Since the mass is moving up with constant velocity, the initial velocity is zero, and the equation simplifies to:

distance = 0.5 x acceleration x time^2

Substituting the values, we get:

3 = 0.5 x 9.8 x t^2

Solving for t, we get:

t = sqrt(3 / 4.9) = 0.78 s

Therefore, the time t taken by the mass to move up 3m is 0.78 seconds, and the tension in the rope is 17640 N.

Learn more about mass here:

https://brainly.com/question/15959704

#SPJ11

When kicking a football, the kicker rotates his leg about the hip joint
a. if the velocity of the tip of the kicker’s shoe is 33 m/s and the hip joint is 0.95 m from the tip of the shoe, what is the shoe tip’s angular velocity in rad/s?
b. The Shoe is in Contact with the initally nearly
Stationary 8.500kg
20.0 ms. What average
force is exerted on the football in Newtons to
give it a velocity of 22 m/s?
Football for
c. What is the maximum range of the football in
neglecting
air resistance?

Answers

The shoe tip's angular velocity is 34.74 rad/s. The maximum range of the football neglecting air resistance is 50.07 meters.

a. We may apply the formula to get the angular velocity of the shoe tip:

v = ωr

Substituting the values, we get:

ω = v / r = 33 m/s / 0.95 m = 34.74 rad/s

b. To find the average force exerted on the football, we can use the impulse-momentum theorem, which states that:

Impulse = Change in momentum

The impulse is given by the formula:

Impulse = FΔt

Δp = mΔv

Substituting the values, we get:

FΔt = mΔv

F = mΔv / Δt = (8.5 kg)(22 m/s - 0 m/s) / (0.02 s) = 9350 N

Therefore, the average force exerted on the football is 9350 Newtons.

c. To find the maximum range of the football neglecting air resistance, we can use the range equation, which is given by:

R = ([tex]v^2[/tex]/g) * sin(2θ)

Since the football is being kicked, we can assume that it is projected at an angle of 45 degrees to the horizontal, which gives:

[tex]R = (22 m/s)^2 / (2*9.81 m/s^2) * sin(90\textdegree ) = 50.07 meters[/tex]

Air resistance, also known as drag, is a force that opposes the motion of an object as it moves through the air. When an object moves through the air, it collides with air molecules, causing them to move out of the way and create a region of low pressure behind the object. This creates a force that acts in the opposite direction of the object's motion, slowing it down.

The amount of air resistance an object experiences depends on its size, shape, and speed, as well as the properties of the air through which it is moving. For example, streamlined objects like airplanes and rockets are designed to minimize air resistance in order to maximize their speed and efficiency.

To learn more about Air resistance visit here:

brainly.com/question/11019447

#SPJ4

a force is applied horizontally to a block to move it up a 30° incline. the incline is frictionless. if f = 70.0 n and m = 5.8 kg , what is the magnitude of the acceleration of the block?

Answers

The magnitude of the acceleration of the block due to the force applied to it horizontally to move it up a 30° incline is approximately 6.03 m/s².

To calculate the acceleration of a block on a frictionless incline, we'll use Newton's second law of motion and consider the component of the applied force parallel to the incline.

First, we determine the force parallel to the incline: F_parallel = F * sin(30°), where F = 70.0 N and sin(30°) = 0.5.

F_parallel = 70.0 N * 0.5 = 35.0 N

Now, using Newton's second law (F = m * a), we can find the acceleration (a) of the block with mass (m) 5.8 kg:

35.0 N = 5.8 kg * a

To find the acceleration (a), divide both sides by the mass (5.8 kg):

a = 35.0 N / 5.8 kg ≈ 6.03 m/s²

The magnitude of the acceleration of the block is approximately 6.03 m/s².

Learn more about acceleration here: https://brainly.com/question/28441255

#SPJ11

why do you think the locations of globular clusters and open clusters are different? choose all that apply.

Answers

The globular clusters are distributed above, below, and level with the plane of our Milky Way as these clusters are found in a spherical halo while open clusters are located in the plane of our galaxy, along the spiral arms where dust and gas reside.

Locations of globular clusters and open clusters are different. Globular clusters have remained in a gravitationally bound system and are old clusters of stars. These clusters are roughly spherical. They are on the order of 13 billion years old, which means they contain some of the oldest stars in our galaxy.

Astronomers use them to study the early history of our galaxy. Globular clusters are distributed above, below, and level with the plane of our flat, disk-shaped Milky Way as they are found in our galaxy’s spherical halo.

Open clusters are much smaller and younger than globular clusters. They are the recent birthplaces of new stars and contain only thousands of stars. The stars in an open cluster do not remain gravitationally bound over time and spread out, scattering their stars wide.

Astronomers use them for studying the processes of star formation. They are located where the gas and dust in the Milky Way reside that is in the plane of our galaxy, along the spiral arms.

To learn more about globular clusters and open clusters;

https://brainly.com/question/29944712

#SPJ4

Enter the number of each atom needed to balance the following equation.

____ FeO + ____ PdF2
____ FeF2 + ____ PdO

Answers

Ferrous fluoride + Palladium(II) oxide = 1 Iron(II) oxide + 1 Palladium(II) fluoride As a result, the balanced equation calls for: 1 Iron(II) oxide, 1 Palladium(II) fluoride, 1 ferrous fluoride, and 1 Palladium(II) oxide.

How may ferric oxide be acquired?

Iron (III) oxide, sometimes referred to as ferric oxide, is the end product of iron oxidation. This can be produced in a laboratory setting by electrolyzing sodium bicarbonate solution, a harmless electrolyte. The hydrated iron(III) oxide that results is dehydrated at around 200 °C.

How is iron dioxide created?

We show that the mineral goethite, ferric oxyhydroxide, which is found everywhere as "rust" and is concentrated in bog iron ore, decomposes at the deep lower-mantle conditions to form iron dioxide and liberate hydrogen.

To know more about equation visit:-

https://brainly.com/question/30396488

#SPJ1

What is the speed of a .28 kg baseball if its kinetic energy is 200J?

Answers

Answer: The speed of the baseball is approximately 71.4 m/s

Explanation: The formula for kinetic energy is KE = 1/2 * m * v^2, where KE is kinetic energy, m is the mass of the object, and v is its velocity/speed.

Rearranging the formula to solve for v, we get:

v = sqrt(2 * KE / m)

Substituting the given values, we get:

v = sqrt(2 * 200J / 0.28 kg)

v = sqrt(1428.57 m^2/s^2 / 0.28 kg)

v = sqrt(5102.46 m^2/s^2/kg)

v = 71.4 m/s

a) A square loop of wire with sides of length 40 cm is in a uniform magnetic field perpendicular to its area. If the field’s strength is initially 100 mT and it decays to zero in 0.010 s, what is the magnitude of the average emf induced in the loop? b) What would be the average emf if the sides of the loop were only 20 cm?

Answers

The magnitude of the average emf induced in the loop would be:

|ε| = ΔΦ/Δt = (0.002 Wb)/(0.010 s) = 0.20 V.

a) The magnetic flux through the loop is given by:

Φ = BA,

where B is the magnetic field strength and A is the area of the loop. Since the loop is square, we have A = (0.4 m)² = 0.16 m².

During the 0.010 s interval, the magnetic field changes at a constant rate from 100 mT to 0, so the average magnetic field strength is:

Bavg = (100 mT + 0)/2 = 50 mT = 0.05 T.

Using Faraday's law, the induced emf is given by:

ε = -dΦ/dt,

where dΦ/dt is the rate of change of magnetic flux through the loop.

The magnetic flux through the loop changes as:

ΔΦ = BavgA = (0.05 T)(0.16 m²) = 0.008 Wb.

Therefore, the magnitude of the average emf induced in the loop is:

|ε| = ΔΦ/Δt = (0.008 Wb)/(0.010 s) = 0.80 V.

b) If the sides of the loop were only 20 cm, then the area of the loop would be A = (0.2 m)² = 0.04 m². The magnetic flux through the loop would be:

ΔΦ = BavgA = (0.05 T)(0.04 m²) = 0.002 Wb.

Therefore, the magnitude of the average emf induced in the loop would be:

|ε| = ΔΦ/Δt = (0.002 Wb)/(0.010 s) = 0.20 V.

Learn more about magnetic flux

https://brainly.com/question/30858765

#SPJ4

A block with mass 2 kg is attached to an ideal massless spring and undergoes simple harmonic oscillations with a period of 0.50 s. The surface is frictionless. The amplitude of the oscillation is 0.1 m. (a) What is the spring constant of the spring? (b) What is the total mechanical energy of the system (the spring and block system)? (c) What is the maximum speed of the block? (d) What is the speed of the block when the displacement of the block is 0.05 m (in other words, the distance between the block and the equilibrium position is 0.05 m, or the block is half way between the equilibrium and the maximum displacement)?

Answers

What we know: m = 2 kg, a = 0.1, T = 0.50

k = mw^2 , w = 1/T = 1/0.50 = 2

k = 2 * 2^2 = 8

(a) The spring constant is 8.

(b) Total mechanical energy is 1/2 mw^2 A^2

= 1/2 (8) (0.1)^2 = 4* 0.01 = 0.04

0.04 J

(c) The maximum speed is when kinetic energy equals mechanical energy

0.04 J = 1/2 mv^2

v = sqrt(0.08/2)

(d) 1/2 mv^2 + 1/2 kx^2 = 1/2 kA^2

mv^2 + kx^2 = kA^2

mv^2 = k(A^2-x^2)

v^2 = k(A^2 - x^2) / m

v^2 = 8 * (0.1^2 - 0.05^2) / 2

v= 1.7 * 10^-1 m/s

How much work must you do to push a 11.0 kg block of steel across a steel table (uk 0.6) at a steady speed of 1.20 m/s for 5.20 s? Express your answer with the appropriate units. push a Value Units Submit My Answers Give U Part B What is your power output while doing so? Express your answer with the appropriate units. P Value Units

Answers

The work done to push the block can be calculated as:

[tex]Work = Force x Distance[/tex]

The force required to push the block at a steady speed can be found using the formula:

Force = frictional force = coefficient of kinetic friction x normal force

The normal force is equal to the weight of the block, which is given by:

Weight = mass x gravity

where mass is 11.0 kg and gravity is 9.81 m/s^2. Therefore,

Weight = 11.0 kg x 9.81 m/s^2 = 107.91 N

The frictional force can be calculated as:

Frictional force = 0.6 x 107.91 N = 64.746 N

The distance traveled by the block can be calculated as:

Distance = speed x time = 1.20 m/s x 5.20 s = 6.24 m

Therefore, the work done to push the block is:

Work = 64.746 N x 6.24 m = 404.24 J

The power output can be calculated as:

[tex]Power = Work/Time = 404.24 J/5.20 s = 77.77 W\\[/tex]

Therefore, the work done to push the block is 404.24 J and the power output is 77.77 W.

Learn more about Force  here:

https://brainly.com/question/13191643

#SPJ11

An AM radio station's antenna is constructed to be λ4 tall, where λ is the wavelength of the radio waves.How tall should the antenna be for a station broadcasting at a frequency of 820 kHz ?

Answers

The antenna should be approximately 91.46 meters tall for a station broadcasting at a frequency of 820 kHz

To determine the height of an antenna that is λ/4 tall for a station broadcasting at a frequency of 820 kHz, you will first need to find the wavelength of the radio waves.

Step 1: Convert the frequency to Hz.
Frequency = 820 kHz = 820,000 Hz

Step 2: Use the formula for the speed of light (c) to find the wavelength (λ).
c = λ * frequency, where c is the speed of light (approximately 3 x 10^8 m/s).

Step 3: Rearrange the formula to solve for λ.
λ = c / frequency

Step 4: Calculate the wavelength.
λ = (3 x 10^8 m/s) / (820,000 Hz) ≈ 365.85 meters

Step 5: Find the antenna height.
Antenna height = λ/4 = 365.85 meters / 4 ≈ 91.46 meters

The antenna should be approximately 91.46 meters tall for a station broadcasting at a frequency of 820 kHz.

For more information on frequency and wavelength refer to https://brainly.com/question/10728818

#SPJ11

(a) Find the terminal voltage of a 12.0-V motorcycle battery having a 0.600-Ω internal resistance, if it is being charged by a current of 10.0 A. (b) What is the output voltage of the battery charger?

Answers

(a) The terminal voltage of a 12.0-V motorcycle battery having a 0.600-Ω internal resistance is 6.0 V. (b) The output voltage of the battery charger is 12.0 V.

(a) To find the terminal voltage of a 12.0-V motorcycle battery having a 0.600-Ω internal resistance, while being charged by a current of 10.0 A, we can use the formula:

Terminal voltage = EMF - (Current × Internal resistance)

Here, EMF is the electromotive force, which is 12.0 V, the current is 10.0 A, and the internal resistance is 0.600 Ω.

Terminal voltage = 12.0 V - (10.0 A × 0.600 Ω)
Terminal voltage = 12.0 V - 6.0 V
Terminal voltage = 6.0 V

(b) To find the output voltage of the battery charger, we will add the voltage drop across the internal resistance to the terminal voltage:

Output voltage = Terminal voltage + (Current × Internal resistance)

Output voltage = 6.0 V + (10.0 A × 0.600 Ω)
Output voltage = 6.0 V + 6.0 V
Output voltage = 12.0 V

You can learn more about terminal voltage at: brainly.com/question/28199592

#SPJ11

How much impulse (in magnitude) stops an object with mass m= 10 kg sliding at v = 3m/s? a. 30 Ns
b. 0.6 kg m/s
c. 60 kg m/s
d. 10 Ns

Answers

a.) The impulse required to stop an object with a mass of 10 kg and velocity of 3 m/s is 30 Ns.

Impulse is defined as the change in momentum of an object, which is equal to the force applied multiplied by the time it acts. In this case, the object has a mass of 10 kg and is moving with a velocity of 3 m/s. To stop the object, a force needs to be applied in the opposite direction of its motion. The impulse required to stop the object can be calculated by multiplying the force applied with the time it acts. Since the impulse is equal to the change in momentum, it can be calculated using the equation  [tex]J = ∆p = mv_f - mv_i.[/tex]  Solving for the force, we get[tex]F = J/t = ∆p/t = m(v_f - v_i)/t = m*a,[/tex]  where a is the acceleration produced by the force. Therefore, the impulse required to stop the object is 30 Ns, which is equivalent to the force of 30 N acting for 1 second.

learn more about momentum here:

https://brainly.com/question/30677308

#SPJ11

Four 240-Ω lightbulbs are connected in series. what is the total resistance of the ciruit? what is their resisance if they are connacted in parellel?

Answers

The total resistance of the circuit when the lightbulbs are connected in parallel is 60 Ω.

How we can lightbulbs series  are connacted in parellel?

When resistors are connected in series, their resistances add up to give the total resistance of the circuit. In this case, since there are four 240-Ω lightbulbs connected in series, the total resistance of the circuit is:

R_total = R1 + R2 + R3 + R4

= 240 Ω + 240 Ω + 240 Ω + 240 Ω

= 960 Ω

So the total resistance of the circuit is 960 Ω.

When resistors are connected in parallel, the reciprocal of their resistances add up to give the reciprocal of the total resistance of the circuit. In this case, since there are four 240-Ω lightbulbs connected in parallel, the resistance of each lightbulb is:

1/R = 1/R1 + 1/R2 + 1/R3 + 1/R4

= 1/240 Ω + 1/240 Ω + 1/240 Ω + 1/240 Ω

= 4/240 Ω

= 1/60 Ω

So the resistance of each lightbulb when connected in parallel is 1/60 Ω.

To find the total resistance of the circuit when the lightbulbs are connected in parallel, we can use the formula:

R_total = 1/(1/R1 + 1/R2 + 1/R3 + 1/R4)

Substituting in the values, we get:

R_total = 1/(1/240 Ω + 1/240 Ω + 1/240 Ω + 1/240 Ω)

= 60 Ω

Learn more about resistance

brainly.com/question/30799966

#SPJ11

Two loudspeakers in a plane, 5.0 m apart, are playing the same frequency. If you stand 12.0 m in front of the plane of the speakers, centered between them, you hear a sound of maximum intensity. As you walk parallel to the plane of the speakers, staying 12.0 m in front of them, you first hear a minimum of sound intensity when you are directly in front of one of the speakers. What is the frequency of the sound? Assume a sound speed of 340 m/s.

Answers

The frequency of the sound is 68 Hz, which is found by dividing the speed of sound by the wavelength, where the wavelength is determined by the path difference between the two speakers.

To find the frequency of the sound, we need to consider the path difference and the speed of the sound. When you hear maximum intensity, the path difference is a whole number multiple of the wavelength (constructive interference). When you hear minimum intensity, the path difference is a half-integer multiple of the wavelength (destructive interference).
In this case, when you're in front of one speaker, the path difference is half the distance between the speakers (5.0 m / 2 = 2.5 m). This corresponds to a half-integer multiple of the wavelength, meaning (2n + 1) * (wavelength / 2) = 2.5 m, where n is an integer.
Let's consider the smallest value of n, which is 0. Then, the wavelength is 5.0 m.
To find the frequency, we can use the equation:
frequency = speed of sound/wavelength
frequency = 340 m/s / 5.0 m
frequency = 68 Hz
So, the frequency of the sound is 68 Hz.

learn more about frequency here:

https://brainly.com/question/30611426

#SPJ11

A cylindrical wire has a resistance R and resistivity p. If its length and diameter are BOTH cut in half. (a) what will be its resistance? A)4R B)2R C)R D)R/2 E)R/4 (b) What will be its resistivity? A)4p B)2p D) p12 E)p/4

Answers

the length and diameter are both cut in half, the resistance will be multiplied by (1/2)/(1/4) = 2. This means the answer to (a) is (B) 2R.

The resistance of a wire is directly proportional to its length and inversely proportional to its cross-sectional area (diameter squared). Therefore, if the length and diameter are both cut in half, the resistance will be multiplied by (1/2)/(1/4) = 2. This means the answer to (a) is (B) 2R.

The resistivity of a material is a constant that depends on the material itself, not on the dimensions of the wire. Therefore, cutting the length and diameter in half will not affect the resistivity. The answer to (b) is (B) 2p.
(a) To calculate the new resistance, we can use the formula R = ρ(L/A), where L is the length, A is the cross-sectional area, and ρ is the resistivity. After cutting both the length and diameter in half, the new length L' = L/2 and the new diameter D' = D/2. The new cross-sectional area A' = π(D'/2)^2 = (1/4)π(D/2)^2 = A/4. Therefore, the new resistance R' = ρ(L'/A') = ρ((L/2)/(A/4)) = 4ρ(L/A) = 4R. So the answer is A) 4R.

(b) Resistivity is a material property and is not affected by changes in length or diameter. Therefore, the new resistivity will be the same as the original resistivity, which is D) p.

To know more about Resistivity is a material click here:

brainly.com/question/31085138

#SPJ11

A combination of three electrons and two protons would have a net charge q. calculateq?​

Answers

A combination of three electrons and two protons would have a net charge of -1.

A single electron has a negative charge of -1, while a single proton has a positive charge of +1. Therefore, three electrons would have a total negative charge of -3, and two protons would have a total positive charge of +2. To find the net charge, we need to add the total negative charge from the total positive charge:

q = (+2) + (-3)

q = -1

q = -1

Therefore, a combination of three electrons and two protons would have a net charge of -1.
To calculate the net charge q of a combination of three electrons and two protons, we need to consider the charge of each particle. Electrons have a negative charge of -1 and protons have a positive charge of +1 (measured in elementary charge units).

Step 1: Determine the total charge of electrons.
Since there are three electrons, their total charge is:
3 electrons * (-1) = -3

Step 2: Determine the total charge of protons.
Since there are two protons, their total charge is:
2 protons * (+1) = +2

Step 3: Calculate the net charge q by adding the charges of electrons and protons together.
q = total charge of electrons + total charge of protons
q = -3 + 2

The net charge q is:
q = -1

Learn more about net charge here:

https://brainly.com/question/30758689

#SPJ11

Other Questions
In an unknown radioactive sample, the number of radioactive nuclei is observed todecrease to 1/20 of the original number in a one-hour period. What is the half-life of thissubstance (in minutes)? A student is fixing flat tires to earn spending money. The student can fix 25 tires in 1 hour 40 minutes. What is the student's productivity? Productivity = Outputs / Inputs Efficiency = 100% (Actual Outputs / Standard Outputs) A. 15.000 tires/minute B. 0.250 tires/minute C. 25.625 tires/minute D. 4.000 tires/minute E. 0.067 tires/minute What is Network Penetration Testing ? why important ?As a leading Web Application Penetration Testing Company In DUBAI, we are dedicated to providing the best services to secure your online presence. Our team of experts use the latest techniques and tools to identify vulnerabilities and weaknesses in your web applications, ensuring the security of your sensitive information. more info :- https://securiumsolutions.com/web-application-penetration-testing-company-in-dubai/ The Crow's Foot notation is less implementation-oriented than the Chen notation.A. TrueB. False Nonprotein coding pieces of pre-mRNA that are removed during RNA splicing are called:a) SNPsb) promotersc) poly(A) tailsd) intronse) exons Solve the following showing all steps. (x+6)2=8 If someone were unable to produce cytokines, what would be the consequences? evaluate dy for the given values of x and dx. y = x 1 x 1 , x = 2, dx = 0.05. I am 41 years old. I am 24 years older than double my elder son's age. How old is my elder son? In the four trials of Exercise 1, one needs to accurately measure ... a. The length of four different radii and the corresponding time for 10 revolutions b. The weight hanger c. The mass of the stopperd. All of the above A time series is said to exhibit an additive seasonality a) when the seasonal fluctuations vary depending on the overall level of the time series b) when the time series is stationary c) when the time series is contaminated by irregular interventions such as promotions d) when the seasonal fluctuations vary Independently of the overall level of the time series Tyson Gay's best time to run 100.0 meters was 9.69 seconds. What was his average speed during this run, in miles per hour? (3.281ft=1 m)(1 mile=5280 ft)Report your answer to three significant figures (round your answer to one decimal place). You accidentally spill a hazardous chemical in the resident hallway. What is your action? 10. Mary just bought solar panels that cost $2,000 and will reduce her electricity bills by $40 per month. How long will it take her to recoup her investment in the panels if she can earn 12% interest, compounded monthly, on her money? therefore, we have the following. (if an answer does not exist, enter dne.) lim n [infinity] 1 8 n 5n = lim n [infinity] eln(y) A healthy mind and body is important. The decisions you make can have a serious effect on your health and the health of those around you. Think about what you have learned in the module. Use the information from your milestone 1 and milestone 2 projects to help you complete your final project.Your project should be about the diseases that can be caused by hereditary traits.Choose a healthy behavior and develop a positive health media message.TV commercialRadio commercialMagazine adInternet popup adTeacher approved ideaExamples of hereditary diseases include heart disease, Type 1 Diabetes, or many other diseases you may have learned about in your interviews.You will present a message that tries to get people to make health choices that will help them reduce the impact of hereditary disease. Your message can be presented as a video or by using a Web 2.0 tool such as Weebly or Jing.Your presentation will focus on:Making people aware of hereditary traits.Getting people to make good health choices to help lessen the risk of hereditary disease.Answer the following questions to help you get started on your project:What is the purpose of your media message? (to inform or persuade)What type of medium is it? (commercial, advertisement, or teacher approved)Who is your intended audience?What is the message? (main idea or main points)What information can be omitted?What techniques are you going to use to get attention?(Please put an actual answer please.) NOT part of net investment income for purposes of calculating the Net Investment Income tax?Veteran's benefits Interest income Passive activity incomeAnnuity income Riding a bike or skiing would require information encoded in episodic memory semantic memory working memory procedural memory Peleg has proposed an equation to model water uptake for a variety of dehydrated foods. In particular, this empirical equation was developed from data related to absorption of water for milk powder and rice. The equation, where Mt) is the moisture content at time t, Mo is the original moisture content of the sample, and k and k2 are parameters that affect the rate of moisture uptake, is a rate equation similar to those used in chemical kinetics 1. What is the value of M(t) when t = 0 and when t = [infinity]?2. What is the value of dM(t)/dt when t = 0 and when t = [infinity]? Fill in the blank using the word from below1 Using STD before a repeat instruction ensures that the characters will be read ___________.2 In order to repeat while ZF is clear, you should use the ___________ instruction.3 Repeating CMPS with REPZ rather than REP is necessary because REPZ will only repeat if ZF is ___________.4 When using CMPSW, the address in edi will be incremented by ___________ each iteration.5 When repeating a string instruction, you must load the C register with the number of ___________.6 ZF will equal ___________ each iteration that SCAS does not find the target character.7 After executing SCAS, the most efficient way to proceed is to use the ___________ instruction, which will execute the code branch for when the target character is not found.8 Only one register is implicitly used for indirect addressing when executing STOS: ___________.9 The ___________ instruction(s) is/are the instruction(s) that is/are typically called with one of the repeat instructions.10 Calling MOVS with REPZ or REPNZ could have unintended effects such as exiting early because MOVS does not modify ___________.JNZDi/edi/rdiMOVS, CMPS, SCAS, and STOSCharacters or repetitionREPNE OR REPNZ2 bytes (16 bits)Right-to-left0 or zero1 or setFlags or ZF