An adult with a high waist circumference measurement is at increased risk for what chronic diseases

Answers

Answer 1
the answer might be Diabetes
Answer 2
They probably are dealing with high blood pressure and cholesterol. =)

Related Questions

A football kicked off at an angle 20° from the ground reaches a maximum height of 4.7 m. What is the initial velocity of the kick?

Answers

The motion of the football that is being kicked follows a projectile path and is parabolic in shape. It has a maximum height  of meters and the angle with respect to the ground is  degrees. The maximum height is the highest position vertically that the ball could reach. From the equations of an object in a projectile motion, we use the equation (V*sin20)^2 = 2gh  in order to solve for velocity, V. We do as follows:

((V) (sin(20)))^2 = 2gh  
(V^2) (0.342^2) = 92.12 
V = √ (92.12 / 0.342^2)
V = 28.06 m/s

The initial velocity of the kick would be 28.06 m/s.

Determine the displacement of a plane that is uniformly accelerated from 66 m/s to 88 m/s in 12 sec

Answers

Determined the displacement of a plane is 66 m:s

The displacement of a plane that is uniformly accelerated is equal to 925.7 m.

What is the equation of motion?

The equations of motion can be described as the relationship of the motion of any physical system as the function of time and set up the relationship between the acceleration, velocity, time, and displacement of a moving system.

Given, the initial velocity of the plane, u = 66 m/s

The final velocity of the plane, v = 88 m/s

The time taken by the plane, t = 12 sec

From the first equation of motion we can calculate the acceleration:

v = u + at

88 = 66 + a(12)

a = 1.83 m/s²

From the second equation of motion we can calculate the displacement of the plane:

S = ut + (1/2)gt²

S = 66 × 12 + (1/2)× 9.8× (12)²

S = 925.7 m

Therefore, the displacement of the plane is 925.7 m.

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A young boy was riding his bicycle down the street when he hit a parked car. what was the second collision?

Answers

the bike rider hitting his bike or the car.
Final answer:

The second collision in this scenario is likely to be when the boy's body hits some interior part of the car after he initially impacts with the car. This is because of the conservation of momentum which needs to go somewhere after the initial collision, often resulting in a further collision.

Explanation:

In the scenario you explained, a young boy was riding his bicycle and hit a parked car. This is referred to as the first collision. The second collision in this context would be the boy's body hitting some interior part of the car (like the car door or windshield) after the initial impact with the car.

This is an application of the physics principle of conservation of momentum. Initially, the bike and the boy have some momentum, and after hitting the parked car, that momentum needs to go somewhere - which often results in a second collision. However, the exact nature of the second collision could depend on a few factors such as the speed of the bicycle and the angle at which the bicycle hit the car.

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Telephone companies are replacing older, analog lines with digital lines because 

       A. wireless transmissions can be used only for short distances.   B. computers can now be equipped with modems to translate transmissions.   C. digital lines are less expensive.   D. data is transmitted more quickly over digital lines. 

Answers

Telephone companies are replacing older, analog lines with digital lines because data is transmitted more quickly over digital lines. Today, the telephone services and systems are provided via digital lines.  Digital telephony uses technology that breaks the audio  signal into binary code. Binary codes can be easily send and much quickly transmitted.


After using a thermometer where should it be placed

Answers

After using a thermometer, it is best to wash it so that the next person who is going to use it won't get the flu or illness that the person who used it before. In washing it, it is best to wash it, rinse it thoroughly, sanitized it with the use of alcohol to remove excess germs and bacteria that could be still stuck on it and lastly, air dry. When dried, placed it on its proper case to avoid it from breaking or being contaminated.

What is the thickness of the mantle in km?

Answers

The mantle is about 2900 km.

The mantle is a solid bulk that lies in the interior of the Earth. It is located between the outermost thin layer of the Earth's crust and the super-heated, dense core of the Earth.
The mantle forms about 84% of the total volume of the Earth.
Final answer:

The mantle of the Earth is approximately 2900 kilometers thick. It is the largest part of the solid Earth, extending from the base of the crust to the top of the core. It is mainly solid, but can deform and flow under extreme conditions.

Explanation:

The Earth's mantle is the largest part of the solid Earth, stretching from the base of the crust downward to a depth of 2900 kilometers. This part of the Earth is largely solid, but due to the extreme temperatures and pressures found in the mantle, the rock can deform and flow slowly. The density in the mantle increases from about 3.5 g/cm³ at the top to more than 5 g/cm³ at the bottom due to the compression produced by the weight of the overlying material.

Samples of upper mantle material are occasionally ejected from volcanoes, allowing scientists to conduct a detailed analysis of its chemical composition. After the mantle, at a depth of 2900 kilometers, we encounter the Earth's core, which is dense and metallic. The core has a larger diameter of 7000 kilometers and is made up of a liquid outer layer and a solid inner layer.

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under what conditions would a scale record a weight for an object which is equal to the magnitude of the gravitational force on the object?

Answers

In a non accelerated frame, also called inertial frame, when no additional forces are acting upon the body.

For instance, a scale in free fall will not record the weight, but zero, like the astronauts. But also, if someone is pulling the object or pushing it, the scale will record some other value.

answer:if there are no external forces acting on the object

Explanation:

under what conditions would a scale record a weight for an object which is equal to the magnitude of the gravitational force on the object?

If gravity and the normal reaction force are the only forces acting on the body, and the body is at rest or moving at constant velocity, the normal force and the weight are equal and opposite. Also if there are no influence of external forces

and air resistance is negligible.

from newtons law of motion which states that the rate of change in momentum is directly proportional to the force applied

f=km(v-u)/t

f=kma

where k is the constant and  equal to 1

f=ma

A glass is half-full of water, with a layer of vegetable oil (n 5 1.47) fl oating on top. a ray of light traveling downward through the oil is incident on the water at an angle of 71.48. determine the critical angle for the oil–water interface and decide whether the ray will penetrate into the water.

Answers

The critical angle is the angle of incidence which gives 90 degrees refraction of light. If the incident angle is less than the critical angle, the ray of light will penetrate the second medium and if the incident angle is more than the critical angle, the ray will not penetrate and total internal reflection will occur.

So, to decide whether the ray will penetrate or not, we need to calculate the critical angle and compare it with the incident angle.

critical angle is calculated using the following rule:
critical angle = arcsin (n2 / n1) where
n1 is that of the oil = 1.47
n2 is that of the water = 1.33
therefore,
critical angle =  arcsin (1.33 / 1.47) = 64.79 degree

Since the incident angle is greater than the critical angle, therefore the ray will not penetrate and will undergo total internal reflection.

What object or class of objects makes up most of the solar systemâs mass?

Answers

The dark matter makes up the most of the solar system, which is around 95%

What evidence suggests that Earth attracts or pulls on objects?

Answers

Every object in the universe that has mass exerts a gravitational pull, or force, on every other mass. 
I'm pretty sure that gravity is the biggest piece of evidence. Are you looking for evidence of gravity or something?

An object has a mass of 15 kg. on planet x, the object weighs 126 n. the force of gravity on planet x is _____. 0.12 m/s2 8.4 m/s2 1875 m/s2

Answers

8.4 m/s^2
Is correct!

The force of gravity on planet x is equal to 8.4 m/s². Therefore, option (B) is correct.

What is the weight of the object?

The weight of a body can be defined as the force acting on the body due to the gravity of the earth or any planet. Weight can be described as a vector parameter if the gravitational force is exerted on the object.

The measurement unit for weight is similar to that of force, which (SI) is the newton (N). A body with a mass of 1 Kg has a weight of 9.8 N on Earth's surface, and about 1/6th as much on the Moon.

The mathematical expression to determine the weight of an object is written as follows:

W = mg

Given the mass of the given object, m = 15 Kg

The weight of the object, W = 126N

The  force of gravity on planet x will be equal to:

126 N = 15 Kg × g

g = 126/15

g = 8.4 m/s²

Therefore, the force of gravity on planet x is equal to 8.4 m/s².

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Traffic officials indicate, it takes longer to ______ when you drive fast.

Answers

The answer in the blank is that it is difficult to accelerate at decelerate the vehicle when it is on a fast speed because having a fast speed makes it difficult to adjust the meter as well as if you try to decelerate the vehicle, it could burn out the tires and engine as it is in the fast speed, in accelerating it, it could also be complicated because it would only make the car faster enough that you may no longer control of how to stop it.

Answer:

Stop

Explanation:

when we drive fast it will be take longer time to stop.

As  car  is moving fast  the acceleration will be to decelerate we have to apply  brake.

By applying brake the car decelerates very fast as deceleration is the change in velocity per unit time. change in velocity is very high so deceleration will be high.

when the brake is applied the distance travel by the high speed vehicle will be more than the vehicle moving at slow speed.

What do astronomers mean by light pollution?

Answers

Light pollution is influence of the light on earth (for example, street lighting) which interrupt observations. For example, if you are in a street during the night and street lights are turned on you won't see stars, but if lighting is turned off or if you go out of town you will see stars above.

Final answer:

Light pollution is the excessive or misdirected artificial light that brightens the night sky, making it difficult to see celestial objects. It is a concern for astronomers, environmentalists, and those worried about global warming.

Explanation:

Light pollution refers to the excessive or misdirected artificial light that brightens the night sky, making it difficult to see celestial objects such as planets and stars. This phenomenon is of concern not just to astronomers, but also to environmentalists and those who are worried about global warming. It can disrupt the natural life cycle of animals and lead to unnecessary expenses and energy consumption. Light pollution can be measured and compared using citizen science projects like Globe at Night, and organizations like the International Dark-Sky Association work to address this issue.

What is the range of wavelengths for fm radio (88 mhz to 108 mhz)?

Answers

The range of wavelengths for FM radio waves is approximately 2.78 meters to 3.41 meters.

What is wavelength?

Wavelength is a physical property of a wave that refers to the distance between two consecutive points on a wave that are in phase, i.e., they have the same position in their cycle of motion. It is the distance over which the wave's shape repeats itself.

In other words, the wavelength is the distance between two successive peaks or troughs of a wave. It is usually denoted by the Greek letter lambda (λ) and is measured in units of length, such as meters or nanometers.

The wavelength of a wave is determined by its frequency and the speed at which it travels through a medium. In general, waves with higher frequencies have shorter wavelengths, while waves with lower frequencies have longer wavelengths.

Wavelength is an important property of many types of waves, including light waves, sound waves, and radio waves. Understanding the properties of wavelength is crucial in fields such as physics, engineering, and telecommunications, as it affects how waves interact with materials, how they can be detected and measured, and how they can be transmitted over long distances.

Here in the Question,

The ranges of wavelengths for FM (frequency modulation) radio waves can be calculated using the formula:

wavelength (in meters) = speed of light (in meters per second) / frequency (in hertz)

The frequency range for FM radio is 88 MHz to 108 MHz. To calculate the corresponding wavelength range, we can use the speed of light, which is approximately 299,792,458 meters per second:

For the lower end of the FM radio frequency range (88 MHz), the wavelength is:

wavelength = 299,792,458 m/s / 88,000,000 Hz ≈ 3.41 meters

For the upper end of the FM radio frequency range (108 MHz), the wavelength is:

wavelength = 299,792,458 m/s / 108,000,000 Hz ≈ 2.78 meters

Therefore, the range of wavelengths for FM radio waves is approximately 2.78 meters to 3.41 meters.

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If white light illuminates a diffraction grating having 790 lines/mm , over what range of angles does the visible m = 1 spectrum extend?

Answers

Final answer:

The range of angles over which the visible m = 1 spectrum extends can be calculated using the equation θ = sin^(-1)(mλ/d), where θ is the angle, m is the order of the spectrum, λ is the wavelength of light, and d is the grating spacing. For a diffraction grating with 790 lines/mm spacing, the range of angles for the visible m = 1 spectrum is approximately 18.42° to 33.57°.

Explanation:

We are given the property of the illuminating light:

790 lines/mm

Which is also equivalent to:

790,000 lines/m

Taking the reciprocal of this value will give us the distance per line:

d = 1 m / 790,000 lines

d = 1.2658 * 10^-6 m

Now we can solve for the range of angles using the formula

λ = d * sin θ

sin θ  = λ / d

where λ is the wavelength of light and θ is the angle

Now we know that visible light ranges from 400 to 700 nm, therefore we use these values to find the range.

when λ = 400 nm = 400 * 10^-9 m

sin θ = 400 * 10^-9 m / 1.2658 * 10^-6 m

θ = 18.42°

when λ = 700 nm = 700 * 10^-9 m

sin θ = 700 * 10^-9 m / 1.2658 * 10^-6 m

θ = 33.57°

Therefore the range of angles is 18.42° to 33.57°.

Determine the rate of a reaction that follows the rate law:rate = k[A]m[B]n, where:k = 1 × 10-2[A] = 2 M[B] = 3 Mm = 2n = 1

Answers

We determine the rate of a reaction from the given rate law by substituting the given concentrations and the order of the substances. We calculate as follows:

rate = k[A]^m[B]^n
rate = (1 x 10^-2) [2]^2 [3]^1
rate = 0.12 M /s

The rate law of a reaction is an expression that is related to the reaction rate. The parameters used are the concentration or the pressure of the reactants in the reaction. An example would be:

A = B + C

The rate law would be:

Rate = k[A]          where k is the reaction rate constant and determined by doing experiments

Final answer:

The rate of the reaction is calculated by substituting the given values into the rate law, resulting in a rate of 0.12 M/s, with the rate constant k having units of mol² L²/s for this reaction.

Explanation:

To calculate the rate of a reaction with the given rate law, we insert the provided values into the rate equation: rate = k[A]m[B]n. With the values k = 1 × 10-2, [A] = 2 M, [B] = 3 M, m = 2, and n = 1, the rate is calculated as follows:

rate = (1 × 10-2 M-1s-1)(2 M)2(3 M)1

rate = 1 × 10-2 M-1s-1 × 4 M2 × 3 M

rate = 0.12 M/s

The rate constant k has the units necessary to provide the rate in terms of mol/L/s, which for this second-order reaction in [A] and first-order in [B] (total order: 3), is mol-2 L2/s.

When a magnet is moved into a wire coil, voltage is induced. if the coil had twice as many loops, the voltage induced would be?

Answers

This concept is applicable to how transformers work. Transformers are used to distribute energy at very high voltages. It works through the concept of electromagnetism. The coils of the transformer is where the current passes producing a magnetic field. This magnetic field induces voltage on the other coil. The pattern goes on and that's how they transfer electricity through each other. The equation for the number of coils (N) and the induced voltage (V) is through ratio and proportion:

N₁/N₂ = V₁/V₂

So, if N₂=N₁, then

N₁/2N₁ = V₁/V₂

Cancelling N₁ yields,

1/2 = V₁/V₂
V₂ = 2V₁

Therefore, the induced voltage will be twice as much.

Electrical shock is more likely to be fatal when the path of current is through the

Answers

Electrical shock is most likely to be fatal when the path of the current is through the heart.

A steel cylinder with a moveable piston on top is filled with helium (He) gas. The force that the piston exerts on the gas is constant, but the volume inside the cylinder doubles, pushing the piston up.

Which of the following answers correctly states the cause for the change described in the scenario?

The temperature increased.
The density of the helium atoms decreased.
The pressure decreased.
The helium atoms increased in size.

Answers

The answer for this question is B. Let me know

A basketball player jumps straight upward. After 0.625 s, she is 0.411 m above the ground. What was her initial velocity? PLEASE HELP
 use the formula
trianglex = vi * t+ 1/2g * t^2

Answers

Formula for the height is:
h = v i · t - 1/2 g · t²    ( minus sign because the gravitational force is in the opposite direction then the force that a player exerts )
0.411 = v i · 0.625 - 1/2 · 9.81 · 0.625²
0.411 = 0.625 v i - 1.916
0.625 v i = 0.411 + 1.916
0.625 v i = 2.327
v i = 2.327 : 0.625 = 3.72 m /s
Answer: Her initial velocity was 3.72 m/s.

Answer:

3.72!!!

Explanation:

A bird experiences an acceleration of -1.80 m/s^2 for 3.81 s, and ends up 26.5 m to the left of its starting point. What is its final velocity?

Answers

To solve this problem, we can assume that the motion is linear so that we can use the equations:

Xf = Xi + v0 t + 0.5 a t^2                  ---> 1

vf = v0 + a t                                         ---> 2

where Xi = initial distance = 0, v0 = initial velocity, Xf = final distance = 26.5 m, a = acceleration = - 1.80 m/s^2, t = time = 3.81 s, vf = final velocity

 

Substituting the given values into equation 1 to find for v0:

26.5 = v0 (3.81) + 0.5 (-1.80 m/s^2) (3.81)^2

3.81 v0 = 39.56449

v0 = 10.38 m/s

 

Using equation 2 to find for vf:

vf = 10.38 + (-1.80) (3.81)

vf = 3.53 m/s

Kepler's second law implies what about planetary motion?

Answers

It implies the following thing. If you draw a vector connecting the Sun and a planet this vector will be covering equal areas in equal time spans. Say, each second, this vector covers N square meters, each 2 seconds - 2N square meters and so on
His 2nd law says that the line from the sun to the planet sweeps over equal areas in equal periods of time. This implies that the planet has to move faster in its orbit when it's closer to the sun (like the Earth is in January), and slower when it's farther from the sun (like the Earth is in July).

For maximum visibility, backing a vehicle requires a driver to:

Answers

Final answer:

When backing a vehicle for maximum visibility, a driver should check all mirrors, look over their shoulder, and utilize a rear-view camera if available to maintain full awareness of their surroundings.

Explanation:

For maximum visibility when backing a vehicle, a driver is required to regularly check all mirrors, turn their head to look over their shoulder, and use the vehicle's rear-view camera if one is available. Maintaining a full awareness of their surroundings is essential. For example, looking over the right shoulder will help spot any pedestrians, obstacles, or approaching vehicles from that direction. Similarly, the mirrors and rear-view camera enable a driver to monitor the areas behind and to the sides of the vehicle, ensuring a safe and smooth backing maneuver.

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For maximum visibility while backing a vehicle, the driver should use all mirrors, check blind spots, ensure rear visibility is unobstructed, and back slowly. It is also crucial that the vehicle is well-maintained with functioning lights and signals.

For maximum visibility when backing a vehicle, a driver needs to be highly alert and use all available visual aids. This includes checking all mirrors, turning to look over each shoulder for blind spots, and using the rear-view camera if the vehicle is equipped with one. It's important to have a clear view of the path behind the vehicle, which means ensuring that the rear windshield is free of obstructions like stickers, dirt, and snow. Furthermore, it's essential for the driver to move slowly and smoothly, allowing more time to react if an obstacle appears. A step-by-step approach includes:

Adjusting all mirrors for the widest field of vision.Checking for obstacles around the vehicle before getting in.Ensuring the rear windshield is clear.Turning to physically check blind spots.Backing slowly to maintain control and react to changes.

It's also crucial that the vehicle is in good condition, as noted in 'KNOW YOUR HIGHWAYS and BE SURE TO HAVE YOUR CAR IN GOOD CONDITION', including functioning lights and reverse signals to alert nearby pedestrians and motorists. Being aware of the surrounding environment, such as obeying unknown speed limits as inferred from the scenario with the test car, increases safety while maneuvering.

If the building absorbed so much heat that it turned into a liquid, then it would have undergone a phase change known as _____.

Answers

The building is in solid phase. Its molecules are arranged in a ver compact manner that is why it takes a definite shape and volume. When it is heated, the kinetic energy of the molecules increases. This is characterized by more frequent collisions. The rise in temperature causes the molecules to move rapidly by vibrating. When it reaches an amount of energy that causes the solid to change phase, this is called the latent energy. The molecules break their form and move farther away from each other until it resembles that of a liquid melting. This phase change is known as melting. The energy that must be reached to achieve melting is the latent heat of fusion.

If the building absorbed so much heat that it turned into a liquid, then it would have undergone a phase change known as Melting.

A car slow down at -5.00 m/s2 until it comes to a stop after traveling 15.0 m. What was the initial speed of the car? (Unit=m/s)

Answers

Good formula to remember!

V_F^2 = V_0^2 + 2 * a * d

V_F = final speed
V_0 = initial speed

0^2 = V_0^2 + 2*(-5)*15 = V_0^2 -150,

V_0 = sqrt(150) = 12.25 m/s

Answer:

12.25 m/s

Explanation:

If a car slows down at -5 m/s2 and it comes to a stop after traveling 15 m we just have to use the next formula:

[tex]Vf^{2} =Vo^{2} +2ad[/tex]

Now we know that the final velocity is 0, so by inserting our data into the formula it would look like this:

[tex]Vf^{2} =Vo^{2} +2ad[/tex]

[tex]0 =Vo^{2} +2(-5m/s^{2})(15m)[/tex]

[tex]-Vo^{2}= -150m^{2}/s^{2}[/tex]

[tex]Vo^{2}= 150m^{2}/s^{2}[/tex]

[tex]Vo= \sqrt{150m^{2}/s^{2}}[/tex]

[tex]Vo= 12.25m/s[/tex]

The second shell in the ground state of atomic argon contains ________ electrons.

Answers

There are 18 electrons, so if you put them all into shells, it would be 2,8,8. That means there are 8 electrons in the second shell. Hope this helps :)

The second shell in the ground state of atomic argon contains 8 electrons.

Argon is represented with the symbol  Ar and is the 18th element on the periodic table.It is an inert/noble gas.its electronic configuration is written as { Ne] 3s23p6According  to the 2,8,8 rule, The first shell can have only two electrons, the second shell can hold up to eight and  the third shell can hold up to 18 etc.

Therefore, we can say that the atomic argon has 8 electrons in the second shell.

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When a bus moves forward after stopping to pick up passengers, why do the passengers feel as though they are being pushed back against their seats?

A. The passengers' bodies tend to remain still relative to the ground while the bus is moving.

B. The forward force caused by the inertia of the bus pushes back on the passengers' bodies.

C. The force of gravity tries to hold the bodies of the passengers in place.

D. The body of the bus moves faster than the seats on the bus due to inertial forces.

Answers

The answer would be D.

What is the name of the concave depression in the central retina for gathering light?

Answers

Fovea is the name of the concave depression in the central retina for gathering light.
Retina is the thin, transparent tissues that lie adjacent to the choroid, contains rods and cones. Retina senses light and send images to the brain. A healthy, intact retina is a key to clear vision. Fovea is responsible for sharp central vision.

When you set something down on the ground what kind of work is your arm doing

Answers

I think it would be negative apex :)

When set something is set down on the ground, negative work is said to be done by the body.

What is Negative work?

This is the type of work which is characterized by the force and displacement being in opposite direction.

This type of work occurs when the arm set down something on the ground which makes it the most appropriate choice.

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The work done in pushing a tv set a distance of 2 m with an average force of 20 n is

Answers

Work, in physics, is the force exerted or applied in order to move an object to a certain distance. It is calculated from the product of force and the distance. It is the energy that is transferred during the movement. It will have units of N-m which is equivalent to J, a unit of energy. We calculate as follows:

Work = Force x distance
Work = 20 N x 2 m
Work = 40 N-m or 40 J
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