The amount of incoming solar radiation available at various places on the earth depends mainly onlongitude.the angle at which the sun's rays strike the earth and the number of daylight hours.the earth's rotation.the absorbance of the earth surface material.

Answers

Answer 1

"The amount of incoming solar radiation available at various places on the earth depends mainly on the angle at which the sun's rays strike the earth and the number of daylight hours." Correct option is B.

The amount of incoming solar radiation that is accessible varies on the latitude, day of the year, time of day, and amount of cloud cover. The amount of solar energy received at a particular latitude would not change throughout the year if the earth were not tilted from the perpendicular.

The incoming solar energy received on a daily basis depends primarily on the angle of the Sun above the horizon, the length of time the surface is exposed to the Sun, and atmospheric conditions.

Following the latitude of the Earth we observe that the sun’s rays are more intense at the equator and they become less intense as we approach the poles. At the same time this intensity fluctuates during the seasons due to the Earth's tilted axis (23.5 degree angle), this makes that the hemisphere that is closer to the sun receives more sunlight than the opposing hemisphere.

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Answer 2

Answer: THE ANSWER IS B


Related Questions

why does a protoplanet become spherical after it grows to be larger than several hundred kilometers in diameter? choose one: a. as particles and debris accrete to the protoplanet, the spaces fill in to create a spherical shape. b. a sphere is the best shape in nature. as objects get larger, they attain sphericity. c. smaller objects are more likely to be oblong. as they get larger, they tend to become spherical. d. as a protoplanet gets larger, it heats up and becomes soft. gravity shapes the planet into a sphere.

Answers

Correct answer is D) Protoplanet gets spherical when larger than 100 kilometers in diameter cause increasing mass and gravity heat

As a protoplanet grows, it attracts more and more particles and debris in its vicinity through gravitational forces. As these particles and debris collide and merge, they create a mass that is concentrated at the center of the protoplanet. The mass and gravity of the protoplanet increase as it grows, and this results in a higher pressure and temperature in its interior.

As the protoplanet heats up, it becomes softer and more malleable. Gravity, which is the force that pulls objects toward each other, acts to distribute the mass of the protoplanet uniformly around its center. This leads to the formation of a spherical shape. A sphere is the most stable and uniform shape in nature, and it is the most efficient shape for distributing mass evenly.

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4. A point charge of 1 μC experiences an electric force of 0.02 N. What is the magnitude of electric field at that point?

Answers

The magnitude of the electric field at that point is 2 × 10⁷ N/C.

What is the magnitude of electric field at that point?

The electric field at a point can be determined from the force experienced by a charge at that point, using the equation:

E = F/q

where;

E is the electric field, F is the force experienced by a charge, and q is the charge.

In this case, the force experienced by a charge of 1 μC (or 1 × 10^-6 Coulombs) is 0.02 N, so the electric field can be calculated as follows:

E = F/q = 0.02 N / (1 × 10^-6 C)

E = 2 × 10⁷ N/C

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The table above shows the data that Mendel collected about the offspring of
his second set of crosses. What is the median of the number of trials he
performed?

Answers

The table above shows the data that Mendel collected about the offspring of his second set of crosses therefore the median of the number of trials he performed is 1,181 and is therefore denoted as option A.

What is Median?

This is referred to as the middle number in a sorted, ascending or descending list of numbers.

In this scenario there were five trials which are 1064, 7324, 8003, 1181 and 929. When it is arranged in an ascending order we have:

929 ,  1064 , 1181 , 7324 , 8003

Therefore the median number is 1181.

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What will you see if you look at them with a telescope that has an angular resolution of 0.5 arcsecond?

Answers

The term “angular resolution,” which is often referred to as “spatial resolution,” refers to a device's capacity to differentiate fine features of an item. Examples include the human eye and telescopes. The eye, an organ, functions as a tool in the human visual system.

What is the angular resolution?

When the measurement points are closer together, smaller objects can be “seen” with less angular resolution. The safety quality increases with additional beams, which results in a decrease in angular resolution.

Several safety laser scanner products direct the laser beam in a circular pattern across the scanning field using a spinning mirror.

The lowest angle between close objects that can be seen to be distinctly separate is the telescope's angular resolving power (or resolution). The fact that light is a wave limits resolution.

Therefore, One spot of light with a hazy representation of two stars.

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what is the ka of an unknown weak acid ha, at 25°c, if the ph of a 2.5 × 10-2 m solution of the acid was measured and found to be 4.94?

Answers

The value of Ka of an unknown weak acid ha, at 25°c is 0.53 x 10⁻⁸.

According to the given data,

concentration of weak acid (C) = 2.5 x 10⁻² M

[tex]P^H[/tex] = 4.94

[tex][H^+] = 10^-^P^H[/tex] = 10⁻⁴.⁹⁴

= 1.15 x 10⁻⁵ M

[tex][H^+] = \sqrt{Ka * C}[/tex]

(1.15 x 10⁻⁵ M)² = Ka x 2.5 x 10⁻² M

[tex]Ka =\frac{(1.15*10^-^5 M)^2}{2.5*10^-^2M}[/tex]

= 0.53 x 10⁻⁸

Therefore,  ka of an unknown weak acid ha, at 25°c is 0.53 x 10⁻⁸.

A weak acid is an acid that incompletely dissociates into its ions in an waterless result or water. In discrepancy, a strong acid completely dissociates into its ions in water.

The conjugate base of a weak acid is a weak base, while the conjugate acid of a weak base is a weak acid. At the same attention, weak acids have a advanced pH value than strong acids.

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Is temperature the measure of the average kinetic energy of a substance?

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Yes, The average kinetic energy of the particles in a material is measured by temperature. It is a typical particle's kinetic energy.

The average kinetic energy of the particles in a material is measured by temperature. The overall kinetic energy of the particles in a material is measured by thermal energy. The more the mobility of particles, the higher the temperature and thermal energy of a material. Kinetic energy is the energy held by a moving item. A substance's temperature is directly proportional to the average kinetic energy of its particles. The kinetic energy of the particles is 0 at absolute zero. A substance's temperature is proportional to its kinetic energy. Since kinetic energy is the energy that a material has as a result of its molecules moving, when a substance absorbs heat, its molecules move quicker, increasing the substance's kinetic energy.

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assume the woman in the figure uses her prism to look at a spectrum of light coming from the object(s) shown. in which case will she see a continuous rainbow of thermal radiation?

Answers

She will see a continuous rainbow of thermal radiation which is blackbody radiation.

In thermal radiation:

This type of radiation is called blackbody radiation and is emitted by any object that has a temperature above absolute zero.

When the object is heated, it emits radiation at different wavelengths across the entire electromagnetic spectrum. As the light passes through the prism, it is refracted and dispersed into its component colors, creating a rainbow-like spectrum. The resulting spectrum will be continuous and contain all the colors of the rainbow.

On the other hand, if the object is not hot enough to emit blackbody radiation, the spectrum of light emitted by it will not be continuous. Instead, the spectrum will have discrete lines or bands, depending on the energy levels of the atoms or molecules present in the object. This type of emission is called line emission or band emission, respectively.

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what is the magnitude of the total charge on the sphere? express your answer with the appropriate units.

Answers

The magnitude of uniformly distributed charge on the sphere, is - Q(r3/a3).

What is magnitude?

The magnitude of an item, event, or phenomena is a measure of its relative size or intensity. It is often stated numerically on a logarithmic scale. The magnitude scale is frequently used to compare the size of earthquakes and other objects such as stars and galaxies.

As we know that, outside any spherically-symmetric charge distribution, the field is the same as if all the charge were concentrated at a point in the center, and so, then, is the potential. Therefore,

V=Q4πϵ0r.(2.2.3)

And, inside a hollow spherical shell of radius a and carrying a charge  Q the field is zero, and thus, the potential is uniform throughout the interior, and equal to the potential on the surface, which is

V=Q4πϵ0a.(2.2.4)

A solid sphere of radius a bearing a charge Q that is uniformly distributed throughout the sphere is easier to imagine than to achieve in practice, but, for all we know, a proton might be like this (it might be – but it isn’t!), so let’s calculate the field at a point P inside the sphere at a distance  (r<a) from the center.

We can solve this problem in 2 parts.

1- The potential from the part of the sphere “below” P. If the charge is uniformly distributed throughout the sphere, this is just  Qr4πϵ0r

- Here, Qr- is the charge contained within radius  r, which, if the charge is uniformly distributed throughout the sphere, is  Q(r3/a3)

Thus, that part of the potential is - "Qr24πϵ0a3".

Thus the final answer for the magnitude of total charge on sphere is  Q(r3/a3).

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(ii) has the particle moved to a position where the electric potential is higher than before, unchanged, lower than before, or unpredictable?

Answers

The particle has moved to a position where the electric potential is lower than before.

Electric potential is a scalar quantity that represents the amount of electric potential energy per unit charge at a particular point in space. In the given scenario, as the particle has moved towards the negatively charged object, the distance between the particle and the object decreases. As a result, the electric potential energy between the two objects decreases, which in turn reduces the electric potential at the position of the particle. Therefore, the particle has moved to a position of lower electric potential than before. This can be visualized by the electric potential lines, which are closer together near the negatively charged object, indicating a higher electric field strength and lower electric potential in that region.

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Calculate gravitational strength you weight yourself at the top of a high mountain and the scale reads 728N.If your mass is 75 kg,what is the gravitational strenght at your location

Answers

The gravitational strength at your location is 9.71 m/s^2.

What is the gravitational strength

The gravitational strength, or acceleration due to gravity, can be calculated using the formula:

g = F/m

where;

F is the force due to gravity (weight) and m is the mass of the object.

In this case, F = 728 N and m = 75 kg.

g = 728 N / 75 kg = 9.71 m/s^2

This is the acceleration due to gravity at the location where you weighed yourself on the high mountain.

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when you weigh yourself on a bathroom scale on a slight incline instead of a level surface, your weight reading on the scale will be

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The answer is C) more. When a bathroom scale is placed on an incline, the weight will be greater than when placed on a level surface due to the increased force of gravity.

This can be explained mathematically using the equation[tex]F = mg[/tex], where F is the force, m is the mass, and g is the acceleration due to gravity. If the scale is on an incline, the force of gravity on the object will be greater than if it were on a level surface, resulting in a higher weight reading on the scale.Gravity is a force of attraction between two objects that is proportional to the product of their masses and inversely proportional to the square of the distance between them.

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complete question:When you weigh yourself on a bathroom scale on a slight incline instead of a level surface, your weight reading on the scale will be

A) less.

B) no different.

C) more.

how is rayleigh scattering and frequency related? double

Answers

Rayleigh scattering and frequency are related because the amount of scattering is inversely proportional to the fourth power of the frequency of the light. This means that as the frequency of the light increases, the amount of scattering decreases. This relationship is described by the Rayleigh scattering equation:


Is = I0 (1 + cos2θ) / (2r2) (λ0/λ)4


Where Is is the intensity of the scattered light, I0 is the intensity of the incident light, θ is the scattering angle, r is the distance from the scattering particle, λ0 is the wavelength of the incident light, and λ is the wavelength of the scattered light. This equation shows that the intensity of the scattered light is inversely proportional to the fourth power of the wavelength of the incident light, which is directly related to the frequency of the light.


Therefore, Rayleigh scattering and frequency are related in that the amount of scattering decreases as the frequency of the light increases.

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a capacitor is connected to a battery as shown above. the plates of the capacitor are pulled apart using insulating handles while the capacitor remains connected to the battery. will the capacitance and energy stored in the capacitor increase, decrease, or remain the same?

Answers

If the plates of a capacitor are pulled apart using insulating handles while the capacitor remains connected to the battery, the distance between the plates will increase. This will result in a decrease in the capacitance of the capacitor.

The capacitance of a capacitor is directly proportional to the area of the plates and inversely proportional to the distance between the plates. When the plates are pulled apart, the distance between them increases, so the capacitance decreases.

However, the energy stored in the capacitor is given by the formula: E = (1/2)CV^2, where C is the capacitance of the capacitor and V is the voltage across the capacitor. Since the battery is still connected, the voltage across the capacitor remains constant. Therefore, the energy stored in the capacitor will decrease as the capacitance decreases.

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a spaceship explodes in deep space and the fragments go in all different directions. does this event conserve momentum?

Answers

If a system is isolated, then whether it is a collision or an explosion, each object involved encounters the identical impulse to cause the same momentum change.

What are the event conserve momentum?

Since the initial energy was changed into multiple kinds of energy during the explosion, the initial kinetic energy was not conserved. However, because mass is broken into fragments with velocities that are inversely proportional to mass, momentum will be conserved.

The linear momentum of two objects in an isolated system that are at rest and are driven apart by an explosion is constant. The two objects are initially at rest with zero linear motion (because vi2 and vi2 are both equal to zero).

Therefore, each object has an equal but opposite change in impulse and momentum. As a result, the system's overall momentum is conserved.

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three parallel plate capacitors are shown below. the distance between their plates is the same in all three cases. for which capacitor does the electric field between the plates have the largest magnitude?

Answers

From the given diagram, we can see that the middle capacitor has the smallest capacitance since it has the smallest plate area. Therefore, the middle capacitor will have the largest electric field.

The electric field between the plates of a parallel plate capacitor is given by E = V/d, where V is the potential difference between the plates and d is the distance between the plates.

Since the distance between the plates is the same for all three capacitors, the electric field between the plates will be proportional to the potential difference V.

The potential difference V for a capacitor is given by V = Q/C, where Q is the charge on the plates and C is the capacitance of the capacitor.

Therefore, the capacitor with the largest electric field will be the one with the largest charge or the smallest capacitance.

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a 0.10 m long solenoid contains 500 turns and carries a current of 4.0 a. what is the strength of the magnetic field at the center of the solenoid if its radius is 1.0 x 10-2 m?

Answers

The strength of the magnetic field at the center of the solenoid is 1.26 x 10^-2 T.

What is a magnetic field?

An area of space known as a magnetic field is where a magnetic force is applied to a magnetic item. It is produced by electric charges moving, such as electrons moving in an electric current or electrons moving in the atoms and molecules of magnetic materials.

A magnetic field has both a magnitude and a direction because it is a vector field. While the direction of the magnetic field is determined by the direction of the magnetic force it exerts on a north magnetic pole, the strength of the magnetic field is measured in units of tesla (T).

To calculate the magnetic field at the center of the solenoid:

B = μ₀ * n * I

Where:

μ₀ is the permeability of free space (4π x 10^-7 T·m/A)

n is the number of turns per unit length (in this case, n = N/L, where N is the total number of turns and L is the length of the solenoid)

I is the current

We can calculate n as:

n = N/L = 500 turns / 0.10 m = 5000 turns/m

Now we can substitute the values into the equation:

B = μ₀ * n * I = (4π x 10^-7 T·m/A) * (5000 turns/m) * (4.0 A)

B = 1.26 x 10^-2 T

Therefore, the strength of the magnetic field at the center of the solenoid is 1.26 x 10^-2 T (tesla).

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how cold does it have to be to freeze water instantly

Answers

The technique of "supercooling" is what causes this immediate freezing. Water bottles may be instantly converted into interesting items by adding salt, ice, and water. Until something, such as a tapping motion, swiftly starts the freezing process, supercooled water will stay a liquid.

What is the condition for freeze water formation?

A 16-ounce water bottle made of plastic will freeze in about 90 minutes at 0 degrees Fahrenheit in a typical freezer. It will take roughly 45 minutes to freeze a smaller 8 ounce bottle of water.

Start by putting two water bottles in the freezer and setting a timer for two hours and fifteen minutes. These bottles must remain undisturbed for the full two hours and fifteen minutes.

Therefore, Although the air comes close to freezing water instantly, which occurs at minus 42 degrees,

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a 33 m chain weighing 3 kg/m hangs over the side of a bridge. how much work is done by a winch that winds the entire chain in?

Answers

The mass of the chain is 99 kg (33 m x 3 kg/m),The height of the chain is 33 mThe work done by the winch to lift the chain is 32,455 J.

What is a mass?

In physics, mass is a measure of the amount of matter in an object. It is a scalar quantity that does not depend on the location or environment of the object. Mass is usually measured in kilograms (kg) or grams (g), and it is one of the fundamental properties of matter that is used to describe the behavior of objects in motion. The mass of an object can be determined by weighing it on a scale, and it is different from weight, which is the force that gravity exerts on an object and varies depending on the object's location and the strength of the gravitational field.

Some examples of mass are:

A book has a mass of several hundred grams to a few kilograms, depending on its size and thickness.An adult human typically has a mass of 50-100 kilograms, depending on their height and weight.A small car has a mass of around 1000 kg, while a larger SUV may have a mass of 2000 kg or more.

To calculate the work done by the winch in winding the entire chain, the potential energy stored in the chain has to be known when it hangs over the side of the bridge. This potential energy is due to the gravitational force acting on the chain.

The formula for gravitational potential energy is:

U = mgh

Where U is the potential energy, m is the mass of the object, g is the acceleration due to gravity, and h is the height of the object above some reference point.

In this case, take the reference point to be the level of the bridge.

First, calculate the mass of the entire chain:

mass of chain = length of chain × mass per unit length

mass of chain = 33 m × 3 kg/m

mass of chain = 99 kg

Next, calculate the height of the chain above the bridge.

Since the chain hangs over the side of the bridge, use the full length of the chain as the height:

Height of chain = length of chain = 33 m

Finally, calculate the potential energy of the chain:

U = mgh

U = 99 kg × 9.81 m/s^2 × 33 m

U = 32,455 J

Therefore, the work done by the winch in winding the entire chain in is 32,455 J.

Note that this is the minimum amount of work required to lift the chain, and the actual work done by the winch may be slightly higher due to friction and other factors.

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two charged copper spheres are placed in space. if the charge on each sphere is halved and the distance between the spheres is also halved, the electric force between the spheres will

Answers

The distance between the spheres is halved. The force of repulsion between the two spheres, Therefore, the force between the two spheres is 0.243 N.

Let us consider, the charge on sphere A  [tex]q_A[/tex] and on sphere B  [tex]q_B[/tex] According to the question,

q_A= 6.5 × 10−7 C

q_B= 6.5 × 10−7 C

r=distance between A and B=50cm=50×10^-2

From Coulomb's law, the force between the two spheres is

F= [tex]\frac{9*6.5&6.5* 10^-5}{50*50*10^-4} = 1.521*10^-2N[/tex]

According to the question, if the charge is doubled

Distance between them is halved i.e., r'=r/2

F = 16F 16*1.521*10^-2N = 0.243 N

In physics, pressure is an influence that may exchange the motion of an item. A force can purpose an object with mass to alternate its velocity (e.g. moving from a nation of relaxation), i.e., to boost up.  its miles are measured inside the SI unit of newton (N). force is represented with the aid of the symbol F (formerly P).

The unique form of Newton's 2d regulation states that the net pressure appearing upon an object is identical to the fee at which its momentum modifications with time. If the mass of the item is steady, this regulation implies that the acceleration of an item is immediately proportional to the internet force appearing on the object, is within the direction of the internet force, and is inversely proportional to the mass of the object.

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Complete Question:

Two insulated charged copper spheres A and B have their centers separated by a distance of 50 cm. What is the mutual force of electrostatic repulsion if the charge on each is 6.5 × 10−7 C? The radii of A and B are negligible compared to the distance of separation. (b) What is the force of repulsion if each sphere is charged double the above amount, and the distance between them is halved?

two rock climbers, bill and karen, use safety ropes of similar length. karen's rope is more elastic, called a dynamic rope by climbers. bill has a static rope, not recommended for safety purposes in pro climbing. part a karen falls freely about 1.6 m and then the rope stops her over a distance of 1.1 m . estimate how large a force (assume constant) she will feel from the rope. (express the result in multiples of her weight.)

Answers

The force exerted by the rope on Karen is about 0.023 times her weight, acting upwards.

To estimate the force that Karen will feel from the rope, we can use the equation for the elastic potential energy stored in a stretched spring, which is:

PE = 0.5kx²

where PE is the elastic potential energy, k is the spring constant, and x is the distance the spring is stretched.

In this case, the dynamic rope can be modeled as a spring with a spring constant of k, and Karen falls freely for a distance of 1.6 m before the rope starts to stretch. Once the rope starts to stretch, it stops Karen over a distance of 1.1 m. We can assume that the force exerted by the rope is constant during this period of time.

The total distance the rope stretches is 1.6 m + 1.1 m = 2.7 m. We can solve for the spring constant, k, by rearranging the equation:

k = 2*PE/(x²)

where PE is the elastic potential energy stored in the rope, which can be calculated as the work done by the rope on Karen:

PE = F * d

where F is the force exerted by the rope and d is the distance over which the force is exerted.

Substituting these values into the equation, we get:

k = 2*(F * d)/(x²)

k = 2*(F * 1.1)/(2.7²)

k ≈ 0.082 * F

Now we can use the equation for the force exerted by a spring, which is:

F = -k*x

where x is the distance the spring is stretched. In this case, x is the distance over which the rope stops Karen, which is 1.1 m. Substituting the value of k we calculated earlier, we get:

F = -0.082 * F * 1.1

Solving for F, we get:

F ≈ -12.7 N

The negative sign indicates that the force is acting upwards, opposite to the direction of Karen's weight.

To express the result in multiples of Karen's weight, we can divide the force by her weight:

F/W ≈ -12.7 N / (55 kg * 9.81 m/s²)

F/W ≈ -0.023

So the force exerted by the rope on Karen is about 0.023 times her weight, acting upwards.

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weightlifter lifts the mathematical constant speed so high 8in time tea how much power than by weightlifter

Answers

The power done by the weightlifter is given by the formula P = mgh/t, where m is the mass and g is the acceleration due to gravity. Therefore, the power done by the weightlifter is P = mgh/t.

The concept of "work" has a fairly clear definition in physics. Work is the application of a force, f, over a distance, d, to move an item in the direction of the applied force. The formula W = fd describes work, or W.

Energy and work go hand in hand. You alter an object's energy as you work to move it. The energy that an object has stored up due to its position above the Earth's surface is known as gravitational potential energy (or another object in space).

Power is defined as work done per unit time such that: P = W/t = Fd/t = mgh/t where F = mg  and d= h.

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complete question: A weightlifter lifts the mass m at constant speed to a height h in time t. How much power is done by the weightlifter?

Would the field representation of a positive or negative charge be a better representation for the gravitational field around one mass? why?

Answers

The field representation of a negative charge would be a better representation for the gravitational field around one mass. This is because the gravitational force between two masses is an attractive force, and the field representation of a negative charge is an attractive force. Additionally, the strength of the gravitational force is inversely proportional to the square of the distance between two masses, and the field representation of a negative charge also follows this same inverse-square law.

What you've learned about people researching. Be sure to discuss some of the issues Oliver points to regarding research methods and representativeness that you think are relevant to this article about monkey pox, or others you might have seen. Expand your discussion by reflecting on how you make meaning of the 'deeply embedded systems, laws, written or unwritten policies,' etc. That play a role here as well

Answers

Research methods and representativeness play a crucial role in scientific studies, and they are essential for drawing accurate conclusions.

As Oliver points out, issues such as selection bias, sampling methods, and the generalizability of findings can all impact the validity of research. In the case of the article about moneypox, it is essential to consider the representativeness of the sample, which was limited to individuals who sought healthcare.

This limitation could impact the accuracy of the reported incidence rates. Furthermore, it is important to acknowledge the deeply embedded systems, laws, and policies that influence research and its outcomes, such as funding biases or political agendas. Being aware of these factors is crucial for interpreting and contextualizing research findings.

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a bob of mass .8kg is attached to the end of a 1.5m long strig and pulled back to a maximum angle of 30. when the bob reaches the equilibrium position, determine

Answers

As the bob swings back towards its equilibrium position, its potential energy is converted into kinetic energy, causing it to accelerate. When the bob reaches its equilibrium position, it momentarily comes to a stop before accelerating in the opposite direction.

At this point, all of the potential energy has been converted into kinetic energy, and the velocity of the bob is at its maximum. The exact velocity of the bob at the equilibrium position can be calculated using conservation of energy principles, taking into account the mass of the bob, the length of the string, and the maximum angle of displacement. Additionally, the period and frequency of the bob's motion can also be determined using equations of simple harmonic motion.

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what happens to most solar radiation when it reaches the surface of the earth?

Answers

When solar radiation reaches the surface of the Earth, a variety of processes can occur.

Some of the energy is reflected back into space by clouds, snow, ice, and other reflective surfaces. Some of the energy is absorbed by the atmosphere, where it can be scattered, reflected, or absorbed by gases and particles. The remaining solar radiation that reaches the surface of the Earth can be absorbed by the ground, plants, and other materials, where it is converted into heat. This process is responsible for warming the Earth's surface and is a critical component of the Earth's climate system.

Solar radiation is a combination of different types of electromagnetic waves, including visible light, ultraviolet (UV) radiation, and infrared (IR) radiation. When solar radiation reaches the Earth's atmosphere, a portion of it is reflected back into space by the atmosphere itself, clouds, and other reflective surfaces.

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exerts such a strong gravitational pull that no light escapes

Answers

Black holes are among the most extreme and fascinating objects in the universe, and their study has greatly advanced our understanding of gravity, the properties of matter, and the structure of the universe.

What is Gravitation?

Gravitation is the force of attraction between two masses in the universe. Every object in the universe that has mass exerts a gravitational force on every other object that has mass. The strength of the gravitational force depends on the mass of the objects and the distance between them. The greater the mass of an object, the stronger the gravitational force it exerts, and the closer two objects are, the stronger the gravitational force between them.

An object that exerts such a strong gravitational pull that no light can escape is called a black hole. Black holes are formed by the collapse of massive stars, in which the star's core collapses under the force of gravity to a point of zero volume and infinite density known as a singularity. The gravitational force of a black hole is so strong that even light, which has no mass, cannot escape its pull.

The boundary around a black hole beyond which nothing can escape is called the event horizon. Once something crosses the event horizon, it is inevitably pulled towards the singularity at the center of the black hole. The boundary of the event horizon is also known as the point of no return, beyond which escape is impossible.

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if the block is at rest (and the only forces acting on the block are the force due to gravity and the normal force from the table), what is the magnitude of the force due to friction?

Answers

The friction force will be ZERO. because friction force act only on relative motion. but here is no motion.

In physics, pressure is an influence that may exchange the motion of an item. A force can purpose an object with mass to alternate its velocity (e.g. moving from a nation of relaxation), i.e., to boost up.  its miles are measured inside the SI unit of newton (N). force is represented with the aid of the symbol F (formerly P).

The unique form of Newton's 2d regulation states that the net pressure appearing upon an object is identical to the fee at which its momentum modifications with time. If the mass of the item is steady, this regulation implies that the acceleration of an item is immediately proportional to the internet force appearing on the object, is within the direction of the internet force, and is inversely proportional to the mass of the object.

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WHY is the answer B? Please give scientifically sound explanation. Will give brainliest.

Answers

The ball would stationary at the maximum height and accelerated greatly as it falls until it comes to rest on the ground. Option B

What is the velocity time graph for an object thrown up?

The slope of the velocity-time graph represents the acceleration of the object. At the highest point of the object's trajectory, the acceleration is zero, as it is temporarily at rest. As the object starts to fall, its acceleration becomes negative, indicating that it is accelerating downwards due to the force of gravity.

The velocity-time graph is a useful tool for analyzing the motion of an object and understanding its velocity and acceleration at different points in time.

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Which of the forces A, B, C, or D represent the tension force on the box?

Answers

The force that represents the tension force on the box is A because it is in the direction of the attached rope.

What is tension force?

Tension is defined as the force transmitted through a rope, string or wire when pulled by forces acting from opposite sides.

Tension force is described as the pulling force transmitted axially by the means of a string, a rope, chain, or similar object, or by each end of a rod, truss member, or similar three-dimensional object.

For the given diagram, the tension force is the force pulling the box upwards preventing downward motion of the box.

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to determine the height of a bridge above the water, a person drops a stone and measures the time it takes for it to hit the water. if the time is 2.3 s, what is the height of the bridge? a) 10 m b) 14 m c) 26 m d) 32 m

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the height of a bridge above the water, a person drops a stone and measures the time it takes for it to hit the water. if the time is 2.3 s, 26m is the height of the bridge.

initial velocity u = 0m/s

time taken t = 2.3 s

height of the bridge is H = ut + 1/2 g t²

= 0+ 1/2 *9.8 * ( 2.3 )²

= 25.9 m≅26m

A bridge is a structure that spans a physical obstacle, such as a body of water, a valley, or a road. Bridges are designed to provide a stable and safe passage for people, vehicles, and materials. The design of a bridge depends on the type of obstacle it spans, the traffic it carries, and the environmental conditions in the area. Bridges can be made of various materials, including wood, stone, concrete, and steel. The construction of a bridge requires careful planning, engineering, and execution. Many factors must be considered, such as the load capacity of the bridge, the effects of wind and water on the structure, and the impact on the environment. Bridges play a vital role in transportation, commerce, and tourism.

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