A wall less than or equal to 14.7 m in height is the highest the player can clear.
How to calculate height?Use the kinematic equations of motion to solve the problem. First, we can find the time it takes for the ball to travel 99.1 m horizontally:
d = vt
t = d / v
t = 99.1 m / 36.2 m/s
t ≈ 2.74 s
Now, use the vertical motion equation to find the maximum height the ball reaches:
y = yo + vot + (1/2)at²
where:
yo = 0.996 m (initial height)
vo = v sinθ = 36.2 m/s x sin(30°) ≈ 18.1 m/s (initial vertical velocity)
a = -9.81 m/s² (acceleration due to gravity, pointing downward)
t = 2.74 s (time of flight)
y = 0.996 m + 18.1 m/s x 2.74 s + (1/2) x (-9.81 m/s²) x (2.74 s)²
y ≈ 14.7 m
Therefore, the tallest wall the player can clear is a wall with a height less than or equal to 14.7 m.
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During the earliest stages of the universe, the only things that existed were
During the earliest stages of the universe, the only things that existed were subatomic particles such as protons, neutrons, and electrons. These particles came together to form the first atoms, which were primarily hydrogen and helium.
The universe was also filled with a hot, dense plasma of particles and radiation, known as the cosmic microwave background radiation.
Hence, as the universe expanded and cooled, these atoms and radiation would play a key role in the formation of galaxies, stars, and the larger structures we see today.
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Which energy transformation occurs in an
operating electric motor?
(1) electrical energy - chemical - Mechanical
(2) mechanical energy - electrical - chemical
(3) chemical energy - electrical - Mechanical
(4) Chemical energy - Mechanical - Electrical
The correct answer is (2) mechanical energy - electrical - chemical.
What is Energy?
Energy is a fundamental property of the universe that allows things to happen or work. It is the ability to do work, cause changes, or produce an effect. Energy can be found in many different forms, including kinetic energy (energy of motion), potential energy (stored energy), thermal energy (heat), electrical energy, chemical energy, nuclear energy, and more.
In an operating electric motor, electrical energy is converted into mechanical energy through electromagnetic interactions, resulting in the motor's mechanical motion. The mechanical energy is then used to perform work, such as turning a shaft or driving a load. In some cases, the motor may also generate electrical energy through processes such as regenerative braking or back-EMF (electromotive force) during deceleration or when acting as a generator.
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A quarterback throws a pass at an angle of 35° above the horizontal with an initial speed of 25 m/s. The ball is caught by the receiver 2.55 seconds later. Determine the distance the ball was thrown.
The distance the ball was thrown is 52.22m by A quarterback throws a pass at an angle of 35° above the horizontal with an initial speed of 25 m/s. The ball is caught by the receiver 2.55 seconds later.
How to calculate distance?Every motion under constant acceleration is projectile motion
Angle above horizontal Ф = 35°, initial speed v1 = 25m/s , time 2.55s
Substituting value in the below equation
x=x₁ + (v₁*cosθ)(t)+1/2 *a*t²
a= 0 as acceleration in horizontal direction is zero
x= 25*cos(35)*2.55
x=52.22 m
Projectile motion is a form of motion in which object influenced when it is launched into the gravitational force from the surface of Earth along a curved path.
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a. How did the residents of donora initially respond?
The Pennsylvanian towns of Donora were struck by a smog at the end of October 1948 that forever altered the way environmental protection was practiced in the country.
During this, 20 people were confirmed dead, according to conservative estimates, while 5900 more people, or 43% of Donora's population, were adversely affected by the smog.
A firetruck and an ambulance from Donora's first responders started responding to calls. These rescue cars had to be led by a man walking in front carrying a torch due to the darkness. Later, when this technique was rendered impossible, firefighters started going door to door to give residents of Donora oxygen. Doctors advised anyone with long-term medical concerns to leave, but as the fog grew thicker, the routes became impassable.
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What happens to the frequency of the mass spring system if length of the spring is
cut into one third.
The frequency of the mass spring system would decrease by a factor of 3 if length of the spring is cut into one third.
What is frequency ?Frequency is described as the number of occurrences of a repeating event per unit of time which is also occasionally referred to as temporal frequency for clarity, and is distinct from angular frequency.
The energy equation is shown as E = hν.
where E = energy,
h = Planck's constant (6.626 x 10 -34 J · s),
and v= frequency.
The energy equation shows a direct relationship between frequency and energy because as frequency increases, energy also increases.
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Which list of components creates a circuit through which an electric current can flow?
A. a battery, insulated wires, a buzzer, and an open switch
B. a generator, two light bulbs, and an open switch
C. a generator, a light bulb, and a closed switch
D. a battery, insulated wires, and a buzzer
A circuit requires a complete loop through which an electric current can flow. Therefore, The correct answer is Option(D).
A battery provides the source of the electric potential difference, and insulated wires allow the current to flow from the battery to the buzzer. The buzzer completes the loop back to the battery. An open switch, such as in options A and B, would break the circuit and prevent the flow of electric current. A closed switch, such as in option C, would complete the circuit. However, option C does not provide a complete circuit with a source of electric potential difference, and therefore cannot create a sustained flow of electric current.
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If enough experimental data supports a hypothesis, then it:
A. Is accepted as true until proven false.
B. Becomes an Observational Law
C. Is proven 100% true.
D. Is falsified.
If enough experimental data supports a hypothesis, it is considered a well-supported scientific theory, but it is not considered to be 100% true or proven. Scientific theories are always open to further investigation and revision based on new evidence. Therefore, option C ("Is proven 100% true") is incorrect.
Option A ("Is accepted as true until proven false") is also incorrect because scientists do not accept a hypothesis as true until it has been rigorously tested and supported by a large body of evidence. Even then, scientists recognize that any scientific theory is subject to revision or falsification if new data or evidence emerges that contradicts it.
Option B ("Becomes an Observational Law") is also incorrect because scientific laws are typically descriptive, rather than explanatory. They describe what happens in a given set of circumstances, but they do not explain why it happens. Hypotheses and theories, on the other hand, attempt to explain why certain phenomena occur, and they are supported by experimental evidence.
Therefore, none of the options are completely accurate, but the most appropriate answer is that the hypothesis becomes a well-supported scientific theory.
what is the statement of objectives in newton's second law using word to investigate, to plot,to compare, to measure
by changing the force and observing the impact on an object's acceleration, one can examine the link between force and acceleration.
What aims does Newton's second law of motion have?In conclusion, Newton's second law gives an explanation for how objects whose forces are out of balance behave. According to the law, when there are imbalanced forces acting on an item, the object will accelerate with an acceleration that is inversely proportional to the mass and directly proportional to the net force.
What is Newton's law supposed to achieve?The student should be able to relate the magnitudes of the various forces acting on an object to its state of motion, particularly the direction of acceleration. The pupil ought to be able to connect the net force.
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the period of a pendulum is measured to be 3m, in the rest frame of the pendulum. What is the period of the pendulum when measured by observer moving at speed of 0-95c with respect to The pendulum ?
Answer:The period of a pendulum, as measured by an observer moving at a relativistic velocity with respect to the pendulum, can be calculated using the concept of time dilation from special relativity.
The formula for time dilation in special relativity is given by:
Δt' = Δt / sqrt(1 - (v^2 / c^2))
where:
Δt' is the time interval measured by the moving observer
Δt is the time interval measured in the rest frame of the pendulum
v is the relative velocity between the pendulum and the moving observer
c is the speed of light in vacuum
In this case, the relative velocity between the pendulum and the moving observer is 0.95c, where c is the speed of light in vacuum (approximately 3 x 10^8 meters per second). Let's assume the period of the pendulum as measured in its rest frame is 3 seconds.
Plugging in the values into the formula:
Δt' = 3 / sqrt(1 - (0.95c)^2 / c^2)
Simplifying the expression:
Δt' = 3 / sqrt(1 - 0.95^2)
Using a calculator to evaluate the square root and simplify further, we get:
Δt' = 3 / sqrt(0.0975)
Δt' = 3 / 0.3125
Δt' ≈ 9.6 seconds
So, the period of the pendulum, as measured by an observer moving at a speed of 0.95c (95% of the speed of light) with respect to the pendulum, would be approximately 9.6 seconds. This demonstrates the concept of time dilation in special relativity, where the observed time interval changes due to relative motion at relativistic velocities.
Explanation:
Why does a stationary bus resist being put into motion?
OA. It has no force acting on it.
OB. It is not accelerating.
OC. It has lost all of its inertia.
OD. It has a large amount of mass.
Answer:
When a passenger is sitting in a stationary bus it is under the law of inertia of rest that is the body resists any change in its state of rest.
Explanation:
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Question 2 of 10
How does the intensity of a sound wave change if the distance from the
source is reduced by a factor of 4?
A. The intensity decreases by a factor of 4.
B. The intensity increases by a factor of 4.
C. The intensity decreases by a factor of 16.
OD. The intensity increases by a factor of 16.
The intensity increases by a factor of 16.
option D.
What is inverse square law?According to the inverse-square law of sound propagation, the intensity of a sound wave decreases proportionally to the square of the distance from the source.
I ∝ 1/r²
where;
r is the distanceI is the intensity of the soundwhen distance from the source is reduced by a factor of 4, the intensity of the sound wave becomes;
I ∝ 1/4²
I ∝ 1/16
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If a→=4i^+7j^-5k^ and b→=3i^+4j^+k^, find the direction cosines of a→-b→.
The direction cosines of a→ - b→ are:
l_x = 1 / √46
l_y = 3 / √46
l_z = -6 / √46
What are the directions?The direction cosines of a vector can be found by dividing the components of the vector by its magnitude.
Here's how you can find the direction cosines of the vector a→ - b→:
Step 1: Subtract the vectors a→ and b→ to get a new vector, let's call it c→:
c→ = a→ - b→
In this case, a→ = 4i^ + 7j^ - 5k^ and b→ = 3i^ + 4j^ + k^, so we can subtract them component-wise:
c_x = 4 - 3 = 1
c_y = 7 - 4 = 3
c_z = -5 - 1 = -6
So, c→ = 1i^ + 3j^ - 6k^.
Step 2: Find the magnitude of vector c→ using the formula:
|c→| = √(c_x^2 + c_y^2 + c_z^2)
Substituting the values we found earlier:
|c→| = √(1^2 + 3^2 + (-6)^2)
|c→| = √(1 + 9 + 36)
|c→| = √46
Step 3: Divide the components of vector c→ by its magnitude to find the direction cosines:
l_x = c_x / |c→|
l_y = c_y / |c→|
l_z = c_z / |c→|
Substituting the values we found earlier:
l_x = 1 / √46
l_y = 3 / √46
l_z = -6 / √46
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the direction cosines of the vector a→ - b→ are (0.155, 0.466, -0.932).
How do we calculate?we first calculate the vector a→ - b→:
a→ - b→ = (4i^ + 7j^ - 5k^) - (3i^ + 4j^ + k^)
= (4-3)i^ + (7-4)j^ + (-5-1)k^
= i^ + 3j^ - 6k^
Next, we find the magnitude of the vector a→ - b→:
|a→ - b→| = √(1^2 + 3^2 + (-6)^2) = √46
We then find the direction cosines of the vector a→ - b→:
cos α = (1/√46) = 0.155
cos β = (3/√46) = 0.466
cos γ = (-6/√46) = -0.932
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How does the ecotourism industry act as an ecosystem service that benefits tourists, the people that live in the area, and the people that work in the industry?
The ecotourism industry can act as an ecosystem service that benefits tourists, local communities, the environment, and the tourism industry itself by promoting sustainable and responsible tourism practices
What is ecotourism?Benefits for tourists: Ecotourism provides a unique experience for tourists by allowing them to explore and appreciate natural environments while supporting sustainable tourism practices. Ecotourism activities also offer educational opportunities for tourists to learn about the local environment and culture.
Benefits for local communities: Ecotourism can provide economic benefits to local communities by creating jobs in the tourism industry and supporting local businesses. It can also encourage the preservation of natural resources and cultural heritage.
Benefits for the environment: Ecotourism can promote the conservation of natural resources and ecosystems by raising awareness and encouraging sustainable tourism practices. It can also support research and monitoring efforts to improve understanding of the environment and its conservation needs.
Benefits for the tourism industry: Ecotourism can create new market opportunities for the tourism industry by offering unique and sustainable travel experiences. It can also improve the industry's reputation and competitiveness by promoting responsible and sustainable tourism practices.
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A flat uniform circular disk (radius = 5.44 m, mass = 150 kg) is initially stationary. The disk is free to rotate in the horizontal plane about a frictionless axis perpendicular to the center of the disk. A 47.0-kg person, standing 1.54 m from the axis, begins to run on the disk in a circular path and has a tangential speed of 2.80 m/s relative to the ground. Find the resulting angular speed (in rad/s) of the disk.
The resulting angular speed of the flat, uniform circular disk is 0.237 rad/s.
What is angular momentum?Angular momentum is a fundamental concept in physics that describes the rotational motion of an object around an axis. It is defined as the product of the moment of inertia of an object and its angular velocity with respect to a chosen axis.
We can use conservation of angular momentum to solve this problem. The initial angular momentum of the disk is zero because it is stationary. The final angular momentum of the system (disk + person) is:
L = Iω
where I is the moment of inertia of the disk and person about the axis of rotation, and ω is the resulting angular speed of the disk.
The moment of inertia of the disk about its axis is:
I_disk = (1/2)mr²
where the disk's radius is r and its mass is m. Substituting the given values, we get:
I_disk = (1/2)(150 kg)(5.44 m)² = 2226.24 kg·m²
The moment of inertia of the person about the axis can be approximated as:
I_person = mr²
where r is the distance from the axis to the person. Substituting the given values, we get:
I_person = (47.0 kg)(1.54 m)² = 109.64 kg·m²
The total moment of inertia of the system is:
I = I_disk + I_person = 2226.24 kg·m² + 109.64 kg·m² = 2335.88 kg·m²
The final angular momentum of the system is:
L = Iω
where ω is the resulting angular speed of the disk. Substituting the given values, we get:
(2335.88 kg·m²)ω = (197.64 kg·m²/s)(2.80 m/s)
Solving for ω, we get:
ω = (197.64 kg·m²/s)(2.80 m/s) / (2335.88 kg·m²) = 0.237 rad/s.
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Suppose the metal sample in Figure 10.2 is immersed in water, is cubical with side 3.0 cm, and has a mass of 54 g.
The force of buoyancy acting on the sample is 2.65 N.
If the sample's supporting string is cut, it will float to the surface of the water.
How to calculate bouyant force?a. The buoyant force acting on the sample can be calculated using the formula Fb = ρVg, where ρ is the density of water, V is the volume of the submerged part of the sample, and g is the acceleration due to gravity. Since the sample is immersed in water, its volume is equal to the volume of water it displaces, which can be calculated using the formula V = l × w × h, where l, w, and h are the dimensions of the submerged part of the sample. Since the sample is cubical, all sides have the same length of 3.0 cm. Thus, the submerged part of the sample has a volume of V = 3.0 cm × 3.0 cm × 3.0 cm = 27.0 cm³ = 0.027 m³. The density of water is ρ = 1000 kg/m³, and the acceleration due to gravity is g = 9.81 m/s². Therefore, the buoyant force acting on the sample is:
Fb = ρVg = 1000 kg/m³ × 0.027 m³ × 9.81 m/s² ≈ 2.65 N
b. The sample will float to the surface of the water if its supporting string is cut. This is because the buoyant force acting on the sample is greater than its weight, which means that there is a net upward force on the sample. This net force causes the sample to accelerate upward, and it will continue to accelerate until it reaches the surface of the water. At the surface, the upward force is balanced by the weight of the sample, and it will float on the water.
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Complete question:
2. Suppose the metal sample in Figure 10.2 is immersed in water, is cubical with side 3.0 cm, and has a mass of 54 g. a. Calculate the buoyant force acting on the sample. b. Describe the behavior of the sample if its supporting string is cut. Explain how you arrive at your answer. balance arm water metal sample water overflow can beaker Figure 10.2 MEASUREMENTS
Find the Peukert constants n and λ for Peukert’s equation for following two measurements available from a constant current discharge experiment of a battery : (i) (t1, I1) = (10, 25) (ii) (t2, I2) = (4,45)
The battery Peukert constants, n and, are around 1.223 and 2.486, respectively.
How many Peukerts can fit?Wilhelm Peukert, a German physicist, proposed Peukert's law in 1897, which quantifies a battery's capacity in terms of the rate of discharge. The battery's useful capacity reduces as the rate of discharge rises. The supplied capacity decreases as discharge rate increases.
C = I⁽⁻ⁿ⁾ * t * λ
log(C) = -n * log(I) + log(λ) + log(t)
log(C1) = -n * log(I1) + log(λ) + log(t1)
log(C1) = -n * log(25) + log(λ) + log(10)
Similarly, for the second measurement, we have:
log(C2) = -n * log(I2) + log(λ) + log(t2)
log(C2) = -n * log(45) + log(λ) + log(4)
log(C1) - log(C2) = -n * (log(25) - log(45)) + log(10/4)
Simplifying, we get:
log(C1/C2) = n * log(45/25) + log(2.5)
Substituting the values, we get:
log(25/45) = n * log(45/25) + log(2.5)
Solving for n, we get:
n = (log(25/45) - log(2.5)) / log(45/25)
n = 1.223
log(C1) = -1.223 * log(25) + log(λ) + log(10)
log(C1) = -1.223 * 1.39794 + log(λ) + 1
Solving for log(λ), we get:
log(λ) = log(C1) + 1.223 * 1.39794 - 1
log(λ) = log(25) + 1.223 * 1.39794 - 1
log(λ) = 0.39794
Therefore, λ = 2.486.
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An incandescent lamp is written: 12 V, 2 A. What is the resistance of the filament of this lamp in working condition?
Answer:
The resistance is 6 ohms
Explanation:
V = 12V
I = 2A
Use ohm's law:
R = V / I
R = 12V / 2A
R = 6 ohms
Starting from its nest, an eagle flies at constant speed for 4.0 min due east, then 4.0 min due north. From there the eagle flies directly to its nest at the same speed.
How long is the eagle in the air? (in minutes)
Answer:
13.6569 minutes
Explanation:
The eagle flies east for 4 minutes and then north for 4 minutes. This creates a right triangle with sides of 4 and 4. You can find the other side of a right triangle (hypotenuse) by using the Pythagorean theorem, a^2 + b^2 = c^2
C is the hypotenuse which is the longest side, and A and B are the other two sides. So C equals 4^2 + 4^2 = c^2. c=5.6569. So the total distance traveled is 4+4+5.6569=13.6569
5. How did your calculated final temperature compare with the actual temperature of the
air-metal mixture? Why or how did you make the prediction that you did?
To calculate the final temperature of an air-metal mixture, we need to use the principle of heat transfer.
The heat transfer equation states that the heat gained by the metal is equal to the heat lost by the air. This equation can be written as:
mcΔT = mairCpΔT
How to make prediction the of the final temperature?To make a prediction of the final temperature, we need to consider factors such as the thermal conductivity of the metal and air, the specific heat capacities of the materials, and the heat transfer coefficients at the metal-air interface. Additionally, the shape and size of the metal object and the surrounding environment can affect the final temperature.
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This string is 5 meters long. What is the measurement of one wavelength? (Just * type the number, not the units)
pic attached below
Using the length of the string and nodes, the wavelength of the string is 2m.
What is the measurement of one wavelength?The relationship between wavelength, length of string, and nodes is a fundamental concept in physics, specifically in the study of waves and vibrations.
In the case of a vibrating string, the wavelength is the distance between two consecutive points in the wave that are in phase, meaning they are at the same point in their cycle of vibration. The length of the string is the distance between the two fixed endpoints of the string that are not vibrating.
The number of nodes, on the other hand, refers to the points along the string that are not vibrating. These points are also known as points of zero displacement. The number of nodes is determined by the frequency of the vibration, which is determined by the tension and mass of the string, as well as the length of the string.
The relationship between these three variables can be described by the formula:
wavelength = 2 x length of string / number of nodes
This equation shows that as the length of the string increases, the wavelength also increases, while the number of nodes decreases. Conversely, if the length of the string decreases, the wavelength also decreases, and the number of nodes increases.
In this problem, the nodes = 5
wavelength = 2 * 5 / 5
wavelength = 2m
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pls help in astronomy didn’t know what subject to put it under
The subject depicted in the attached image is Astronomy and Astrophysics.
Definitely younger than the SunAO main sequence starB-type starsF-type stars (some)Possibly younger than the SunF1 main sequence starG2 main sequence starMO main sequence starDefinitely older than the SunM-type stars (some)M1, 1 Msun red giantM1, 18 Msun red supergiantWhat is Astronomy?Astronomy is the scientific study of celestial objects such as stars, planets, galaxies, and other phenomena that exist outside of Earth's atmosphere.
Astronomers use a variety of methods to observe and study these objects, including telescopes, spacecraft, and computer simulations.
Astronomy is a broad field that includes many different sub-disciplines, such as astrophysics, planetary science, and cosmology.
Astronomers study the physical properties and behavior of celestial objects, such as their composition, temperature, motion, and evolution.
They also seek to understand the structure and history of the universe as a whole.
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What barriers do you currently face that interfere with your personal performance? What are your plans to address these barriers?
I need some examples, help me Guys, please
Personally, the barriers I face that interfere with my performance are:
Lack of motivationLack of resourcesPhysical health issuesPersonal and environmental distractionThese can all be addressed by
Setting clear goalsSeeking support when necessaryDeveloping healthy habitsManaging distractionsMore details on the barriers and how to address themPeople can face various barriers that can interfere with their personal performance. Some of the common barriers that people face include:
Lack of motivation or direction: People may struggle with finding motivation or a clear direction for their goals, which can hinder their personal performance.
Lack of resources: People may face financial or other resource constraints that limit their ability to pursue their goals or develop their skills.
Physical or mental health issues: Physical or mental health issues can impact a person's ability to perform at their best, affecting their energy levels, focus, and overall well-being.
Personal or environmental distractions: People may be distracted by personal or environmental factors such as noise, social media, or family obligations that can interfere with their ability to focus on their goals.
To address these barriers, there are various plans that people can take, such as:
Setting clear goals: By setting specific and measurable goals, people can have a clearer sense of direction and motivation for their personal performance.
Seeking support: People can seek support from friends, family, or professionals to help them overcome resource or health-related barriers.
Developing healthy habits: Practicing healthy habits such as exercise, mindfulness, and good sleep hygiene can improve physical and mental health and increase energy and focus.
Managing distractions: People can create an environment that is conducive to their personal performance by minimizing distractions, prioritizing their time, and creating routines that support their goals.
Overall, addressing these barriers requires a combination of self-reflection, planning, and taking action to overcome obstacles and achieve personal growth and success.
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* Find out the force between the wires 150 cm long and I'm apart) used to connect the battery of a car to the motor? [Note: The Current in the wires in 200 ampere)
Answer:
The force between the wires used to connect the battery of a car to the motor can be calculated using the equation F = I*L, where F is the force, I is the current, and L is the length of the wires. In this case, the force would be calculated as F = 200A * 0.15m = 30N.
A group of hikers hears an echo 4.80 s after shouting. How far away is the mountain that reflected the sound wave? (Assume the speed of sound is 345 m/s.)
Given: v = 341 m/s, t = 2.9 s.
Substitute into equation 2
x = 341(2.9)/2
x = 494.45 m.
What two forms of sound waves are there?The characteristics of sound waves should be the starting point for studying sound. Transverse and longitudinal waves are the two fundamental forms of waves, and they are distinguished by how they move through space.
Particles that are vibrating make up sound waves. These collide with other particles, causing them to vibrate, which allows the sound to escape the source. Your ear drums vibrate as a result of air vibrations, which allows you to perceive sound. This vibration is transformed into messages, which proceed to your brain via a nerve.
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Under a pressure of 862 Pa, a gas has a volume of 752 L. The pressure is increased, without changing the temperature, until the volume is 624 L. What is the new pressure?
Claims that if temperature is kept constant, the end result of both volume and pressure is constant. The new level is 1036 Pa, which is how this can be expressed.
How does pressure work?So either a strong force or a strong force applied over a short area can cause a lot of pressure. When we stand up compared to when we are walking, more of our feet are in proximity to the earth. Pressure would be lower if there was more surface area in contact.
Describe a force?An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude. There are both living things and non-living objects in the concept of a force.
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(c) At what angle of incidence will the light reflected from water (u= 1.3) be completely polarized?
Answer:
When unpolarized light is reflected off a non-metallic surface at a specific angle of incidence, the reflected light becomes polarized. This angle of incidence is known as Brewster's angle and can be calculated using the formula:
tan θp = n
where θp is Brewster's angle and n is the refractive index of the medium the light is passing into.
In this case, the light is passing from air (which has a refractive index of approximately 1) into water with a refractive index of 1.3. Therefore, we can plug in the values into the formula and solve for θp:
tan θp = 1.3
θp = tan^-1(1.3)
Using a calculator, we get θp = approximately 53.1 degrees.
Therefore, light reflected from water will be completely polarized at an angle of incidence of approximately 53.1 degrees.
Sources of error could have come from friction that may result in energy losses during the collision, The gliders may not be perfectly elastic, which means that some energy may be lost during the collision
are these errors random or systematic errors?
Sources of error could have come from small amounts of friction, and glider 2 could have not been totally at rest. These errors are systematic errors.
Are these errors random or systematic?
Answer:
The first set of errors, which include friction and imperfect elasticity, are systematic errors because they arise from consistent factors that affect the measurements in a predictable way. These errors will be present in every trial of the experiment and will cause a consistent deviation from the true value.
The second set of errors, which include small amounts of friction and the initial velocity of glider 2, are also systematic errors because they arise from consistent factors that affect the measurements in a predictable way. These errors will also be present in every trial of the experiment and will cause a consistent deviation from the true value.
Explanation:
A hydraulic system contains one small piston that has a diameter of 1 (one) inch, and a large piston that has an area of 12.56 in. What is the system pressure if the large piston produces a force of 37,775 pounds?
The pressure of the system, that the large piston produces a force of 37775 pounds is 3007.56 pound / in²
How do i determine the pressure of the system?The following data were obtained from the question:
Area of large piston = 12.56 in² Force of large piston = 37775 poundsPressure of system =?Pressure is defined as force per unit area as shown by the following formula
Pressure = Force / Area
Inputting the value of the force and area, we have
Pressure of system = 37775 / 12.56
Pressure of system = 3007.56 pound / in²
Thus, from the calculation made above, we can conclude that the pressure of the system is 3007.56 pound / in²
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A 37-kg
child jumps to the ground from the top of a fence that is 1.6 m
high. You analyze the problem using upward as the positive x
direction
The change in the system kinetic energy during the jump is 576.32 J.
What is kinetic energy?Kinetic energy refers to the energy that an object in motion possesses due to its movement and is influenced by the object's velocity and mass.
Equation:The initial potential energy of the child-Earth system is given by mgh, where m = 37 kg is the mass of the child, g = 9.8 m/s^2 is the acceleration due to gravity, and h = 1.6 m is the height of the fence. Thus, the initial potential energy is (37 kg)(9.8 m/s^2)(1.6 m) = 576.32 J.
At the bottom of the fence, all of the initial potential energy is converted into kinetic energy. Since the child is at rest initially, the initial kinetic energy is zero. Using the law of conservation of energy, the final kinetic energy can be calculated as equal to the initial potential energy, or 576.32 J.
The change in kinetic energy during the jump is therefore:
Final kinetic energy - Initial kinetic energy = 576.32 J - 0 J = 576.32 J.
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The complete question should be:
A 37-kg child jumps to the ground from the top of a fence that is 1.6 m high. You analyze the problem using upward as the positive x direction. Taking x = 0 to be at the bottom of the fence, what are the initial potential energy of the child-Earth system and the change in the system kinetic energy during the jump? Enter your answers numerically separated by a comma.
What is the weight of a body of mass 12kg?