why did united states withdraw from vietnam war
the Army had a fight in unfamiliar territory but with the combination of disadvantages and a loss of public support what to the United States withdrawing from Vietnam
Explanation:
I hope this helps
16.A single disturbance that moves from point to point through a medium is called a period b) periodic wave wavelength pulse 17.When the particles of a medium are vibrating at right angles t0 the direction of energy transport, then the wave is a wave. longitudinal sound standing transverse 18.What is the amplitude of the wave in the diagram on the right? a) 0.03 m b) 0.04 m 0.05 m 0.06 m 19.Sound wave is a type of Longitudinal wave Transverse wave 20.A 10 Hz wave has a 2.2 cm wavelength. The velocity of the wave is a) 4.5 cmls b) 7.8 cmls c) 12 cmls 22 cmls
Water can carry waves, glass can transmit light, and walls can carry sound. The medium is the substance that a wave travels through. A pulse is a single disturbance that moves through a medium.
What is a single disturbance that travels through a medium from point to point?
An isolated disturbance called a pulse travels through a medium from one point to the next.
A recurring disruption in a medium is what?
A wave is an energetic periodic disturbance that propagates outward from a source. Waves can be either mechanical or electromagnetic. Mechanical. Examples -- sound waves, water waves, etc. require a medium for transfer; vacuums cannot be used for transfer.
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a space station, which has a ringed compartment is rotating with initial velocity 0.10 r a d / s 0.10rad/s and angular acceleration 0.01 r a d / s 2 0.01rad/s 2 . what is the space station's angular velocity after 960 960 seconds?
The space station's, which has a ringed compartment is rotating with initial velocity 0.10rad/s and angular acceleration of 0.01rad/s², angular velocity after 960 seconds is 9.7 rad/s.
To find the space station's angular velocity after 960 seconds, we can use the following equation that relates initial angular velocity, angular acceleration, and time:
Final angular velocity (ωf) = Initial angular velocity (ωi) + (angular acceleration × time)
Given:
Initial angular velocity (ωi) = 0.10 rad/s
Angular acceleration = 0.01 rad/s²
Time = 960 seconds
Now, we can plug these values into the equation:
ωf = 0.10 rad/s + (0.01 rad/s² × 960 s)
ωf = 0.10 rad/s + (9.6 rad/s)
ωf = 9.7 rad/s
So, the space station's angular velocity after 960 seconds is 9.7 rad/s.
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When a wire with an electric current i is placed in a magnetic field of strength b it experiences a magnetic force f. What is the direction of f?
The direction of force, when electric current and magnetic field direction given is at 90° to the plane containing current I and Magnetic field B.
What is magnetic force?The force of attraction or repulsion experienced by a magnetic material when it enters the magnetic field.
When a wire with an electric current I is placed in a magnetic field of strength B it experiences a magnetic force F.
According to the Fleming's right hand rule, the direction can be determined by knowing any two parameter's direction.
Thus, The direction of force is at 90° to the plane containing current I and Magnetic field B.
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You serve a volleyball with a mass of 2.1kg the ball leaves your hand with a speed of 30 m/s. What is the kinetic energy of the ball?
Answer:
945 joules
Explanation:
the formula for kenetic energy is:
0.5 × m × v^2
where m is in (kg) ane (v) is in meter per second.
so we can just use the formula;
0.5 × 2.1 × 30^2
so the answer is 945 joules
what would happen if you used very large amplitudes? check your hypothesis by trial. what amplitude did you use? what is the result?
The amplitude of a wave is proportional to the amount of energy it carries. When the amplitude of a wave is increased, the energy carried by the wave also increases. This can result in several potential outcomes, depending on the specific wave system being considered.
In mechanical wave systems, such as a vibrating string or a loudspeaker, using very large amplitude can cause the system to become nonlinear, meaning that the wave behavior deviates from the expected linear relationship between the wave amplitude and energy. Nonlinearities can cause the wave to generate harmonics, which are higher frequency components in the wave spectrum. They can also cause the wave to become distorted, producing a sound that is different from the original waveform. In extreme cases, the system can become mechanically unstable and break or stop functioning altogether.
In electromagnetic wave systems, such as radio waves or light waves, very large amplitudes can cause similar nonlinear distortions. They can also cause unwanted interference with other signals in the system, as well as increase the risk of damage to the transmitting or receiving equipment.
It is important to use appropriate amplitudes for the specific wave system being considered, as excessive amplitudes can result in unwanted side effects and potentially cause damage to the system.
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if the car travels thrice(3times) around the track,who much is the total distance covered?
why does the sky appear blue in the day vs. red during sunset? I’m looking for an answer that explain s using light rays!!
Rayleigh scattering makes the sky appear blue in the day and red during sunset.
A clear, cloudless daytime sky is blue because molecules in the air scatter blue light from the sun more than red light. Sun at sunset, appears red or orange because blue light is scattered from your line of sight.
The white light of the sun is a mixture of all the colors of the rainbow. This was demonstrated by Isaac Newton by using a prism to separate different colors to form a spectrum. Colors of light are distinguished by different wavelengths.
The visible portion of the spectrum ranges from red light with a wavelength of about 720 nm to violet with a wavelength of about 380 nm, with orange, yellow, green, blue, and indigo in between. Her three types of color receptors in the retina of the human eye are most responsive to red, green and blue wavelengths, giving us color vision.
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How does the electrical force relate to the charge of an object?
Answer:
It is directly proportional to the charge
Explanation:
Hope this helps : )
What kind of energy does an electromagnet use to pick up metallic objects?
Answer:
Magnetic energy is used by an electromagnet to pick up metallic objects
Explanation:
An electromagnet generates its own magnetic field in presence of electric current.
As an electric current is induced in an electromagnet , it magnetic dipole arrange themselves in order to behave as a magnet and hence generate magnetic field with a proper north and south. This leads to attraction of metallic object.
Hence, it can be said that Magnetic energy is used by an electromagnet to pick up metallic objects
A package of weather instruments is attached to a weather balloon. The package has a mass of 12.4 kg. The system is released vertically from rest. The weather balloon provides a constant lift force of 122.5 N for 6.00 minutes.
Calculate the magnitude and direction of the instruments acceleration during the first 6 minutes of flight (ignore air resistance).
Answer should be 0.0790m/s^2
Answer:
I don't knowxudnwmKzomw
Explanation:
hairyehducbaoenxinw
A block of wood has A mass of 200g give the mass in kg showing long conversion
Conversion of mass from grams into kg :
\(1kg = 1000g\)\(1g = \dfrac{1}{1000} \: kg\)\(200g = \dfrac{200}{1000} \: kg\)\(200g = 0.2kg\)Using the equation F = mg, where g = 9.8 m/52,
what is the force of gravity acting on a 10 kg
object?
Answer:
The force of gravity acting on a 10 kg object is 98N.
Explanation:
What is gravity?
Gravity is defined as the force of attraction that acts between any two bodies having a mass. On earth, gravity is also defined as the force with which the Earth attracts any object toward its center.How to calculate the force of gravity acting on a body?
The force of gravity acting on a body can be calculated using the equation F = mgwhere F = the force of gravity
m = mass of the object and
g = acceleration due to gravity
It is given that
m = 10 kgg = 9.8 m/s²Putting these values in the equation F = mg, we find
F = 10 kg x 9.8 m/s²
= 98 kgm/s² or 98 N.
Therefore, the force of gravity acting on a 10 kg object is 98N.
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the pieces of ice float on water why
they float on water because the ice has the same mass of water and is density is lighter
Following a lecture on transverse and longitudinal waves, four students make venn diagrams to characterize these waves. which venn diagram is correct? a venn diagram with two intersecting circles. the circle on the left is labeled transverse waves with entries light, can travel through a vacuum, vibrating string, created by a disturbance and medium motion is perpendicular. the circle on the right is labeled longitudinal waves with entries medium motion is parallel, has regions of high and low density, sound and travel faster in a denser medium. the overlapping region has entries has speed and travels through solids. a venn diagram with two intersecting circles. the circle on the left is labeled transverse waves with entries light, can travel through a vacuum, vibrating string and medium motion is perpendicular. the circle on the right is labeled longitudinal waves with entries medium motion is parallel, has regions of high and low density, sound and travel faster in a denser medium. the overlapping region has entries, created by a disturbance, has speed and travels through solids. a venn diagram with two intersecting circles. the circle on the left is labeled transverse waves with entries light, all parts of the electromagnetic spectrum, vibrating string, medium motion is perpendicular. the circle on the right is labeled longitudinal waves with entries medium motion is parallel, has regions of high and low density, sound and can travel through a vacuum. the overlapping region has entries, created by a disturbance, has speed and travels through solids. a venn diagram with two intersecting circles. the circle on the left is labeled transverse waves with entries light, can travel through a vacuum, vibrating string and medium motion is perpendicular. the circle on the right is labeled longitudinal waves with entries medium motion is parallel, has regions of high and low density, all parts of the electromagnetic spectrum and travel faster in a denser medium. the overlapping region has entries, created by a disturban
Venn diagram B is correct. A Venn diagram is a type of graph that uses circles to depict connections between objects or fixed groups of entities.
What Is a Venn Diagram and how does It Work?A Venn diagram is a diagram that uses circles to depict relationships between objects or finite groups of objects. Circles that overlap share characteristics, whereas circles that do not overlap do not.
A Venn diagram with two intersecting circles. the circle on the left is labeled transverse waves with entries light, can travel through a vacuum, vibrating string and medium motion is perpendicular.
The circle on the right is labeled longitudinal waves with entries medium motion is parallel, has regions of high and low density, sound and travel faster in a denser medium.
The overlapping region has entries, created by a disturbance, has speed, and travels through solids.
Hence Venn diagram B is correct
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Which type of matter is likely to absorb the most sound waves
A:hot air
B:metal door
C:foam wall:
D:Loudspeaker
Answer:
im postive its D) loudspeaker
Answer:
foam wall
Explanation:
ap3x
A very long, straight wire carries a current of 26 A in the direction. An electron 1.3 cm from the center of the wire in the direction is moving with a speed of 4.77 x 10 m/s. Find the force on the electron when it moves in the following directions. directly away from the wire Nie 2) NJ 3) NA * parallel to the wire in the direction of the current Ni 5) Nj Nk perpendicular to the wire and tangent to a circle around the wire in the +] direction
The force is acting in the +K direction since it is perpendicular to both the velocity and the magnetic field. Force on electron = 3.08 x 10⁻¹⁷ N
Current I = 26 A
Electron velocity V = 4.77 x 10 m/s
Distance r = 1.3 cm
= 1.3 x 10⁻² m 1.
Find the magnetic field:
Formula used to calculate magnetic field is:
B= μ0×I2πr
Where, μ0 = 4π×10⁻⁷B
= μ0×I2πrB
= 4π×10⁻⁷×26 2π×1.3×10⁻²B
= 2.02 × 10^-5 T2.
Find the force acting on the electron, when it moves in the direction directly away from the wire:
Formula to calculate force on electron is:
F= qVBsinθ
Where,F = Force acting on electron
V = Velocity of electron
B = Magnetic field
q = charge of an electron
θ = Angle between the direction of motion of an electron and direction of the magnetic field that, the electron is moving in a direction directly away from the wire, so it is moving perpendicular to the wire.
Therefore, θ = 90 degrees.
So the force can be calculated as:
F= qVB sin 90
F= qVB
Therefore,F = 1.6×10⁻¹⁹×4.77×10×2.02 × 10⁻⁵
F = 3.08 x 10⁻¹⁷ N3.
Find the force acting on the electron, when it moves in the direction parallel to the wire in the direction of the current:
the electron is moving parallel to the wire, so the angle between the direction of motion of the electron and direction of the magnetic field is 0 degrees.
So the force can be calculated as:
F= qVBsinθ
F = 0N₄.
Find the force acting on the electron, when it moves in the direction perpendicular to the wire and tangent to a circle around the wire in the +J direction:
Here, the angle between the direction of motion of the electron and direction of the magnetic field is 90 degrees.
So,θ = 90 degrees
Therefore, the force on the electron can be calculated as:
F= qVB sin 90
F= qVB
Therefore,F = 1.6×10⁻¹⁹ ×4.77×10×2.02 × 10⁻⁵ F
= 3.08 x 10⁻¹⁷ N
The force is acting in the +K direction since it is perpendicular to both the velocity and the magnetic field.
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it is observed that in water the meniscus in the capillary tube is higher than the meniscus in the beaker,while in mercury the meniscus in the capillary tube is lower tha the meniscus in the beaker.Explain these observations
The adhesion forces between mercury and glass are far weaker than the cohesive forces between mercury atoms causing the meniscus in the capillary tube to be lower than the meniscus in the beaker.
What is surface tension?
The force operating at a border between two phases is measured as surface tension.
Surface tension at liquid-air interfaces is caused by the higher attraction of liquid molecules to each other than air molecules.
Due to the relatively strong attraction of water. Hence molecules of water have high surface tension.
Because the water wets the glass and seeps up the tube's side when it is contained in a glass tube, the meniscus of the water has a concave form.
The cohesive forces between mercury atoms, on the other hand, are far stronger than the adhesion forces between mercury and glass.
The meniscus in the capillary tube is, therefore, higher than the meniscus in the beaker, but with mercury, the meniscus in the capillary tube is lower than the meniscus in the beaker.
Hence, the meniscus in the capillary tube is lower than the meniscus in the beaker
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A Bugatti Veyron went from 0 to 60 mph in 2. 5 seconds. What isthe mass of the vehicle if the force used to move the car was10,000 N?
The mass of the Bugatti Veyron is approximately 1496 kilograms. This can be determined using Newton's second law of motion, F = ma, where the force (F) is 10,000 N.
The acceleration (a) can be calculated as 60 mph converted to meters per second (26.82 m/s) divided by the time (t) of 2.5 seconds. Therefore, the mass (m) is F/a = 10,000 N / 26.82 m/s = approximately 373 kg. However, this value is only the mass of the force used to move the car. Adding the weight of the car itself, the total mass of the Bugatti Veyron is estimated to be around 1496 kilograms.
Newton's second law of motion states that the force applied to an object is equal to the product of its mass and acceleration (F = ma). In this case, the force used to move the car is given as 10,000 N. To determine the mass, we need to calculate the acceleration first. The acceleration can be obtained by dividing the change in velocity (60 mph) by the time taken (2.5 seconds). After converting the velocity to meters per second (26.82 m/s), we can substitute the values into the equation F = ma to solve for mass (m). The resulting mass is only the additional mass due to the applied force, so we need to consider the weight of the car itself. By adding the estimated weight of the Bugatti Veyron, which is around 1123 kg, to the calculated mass, we arrive at a total mass of approximately 1496 kilograms.
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Here is what you can say if the crewmates saw you get someone.
Well let me tell you guys. Everything is made of atoms. THe thing is atoms don't touch. And humans are made of atoms. So technically we never touch.SO to answer your question no I did not slice white in half in electrical.
Answer:
ahh yes you are so smart and I hope you get a good job when you are older
Un avión se mueve horizontalmente a 50 m/s y a una altura de 2.0 km. Desde el avión se dé deja caer un objeto denso. (use g= 9.8 m/s 2). Calcule. A) ¿tres segundos después de haber soltado el objeto. ¿Este habrá descendido? B) la distancia horizontal recomienda por el objeto a los 3 segundos? C) ¿Qué tiempo emplea el objeto en llegar al suelo? D) la distancia horizontal recorrida por el objeto desde que fue soltado hasta llegar al suelo?
Answer:
Haz tu mejor esfuerzo, ok
Explanation:
A 12 V car battery dies not so much because its voltage drops but because chemical reactions increase its internal resistance. A good battery connected with jumper cables can both start the engine and recharge the dead battery. Consider the automotive circuit of the figure(Figure_1). How much current could the good battery alone drive through the starter motor? Express your answer with the appropriate units. How much current is the dead battery alone able to drive through the starter motor? Express your answer with the appropriate units. With the jumper cables attached, how much current passes through the starter motor? Express your answer with the appropriate units. With the jumper cables attached, how much current passes through the dead battery? Express your answer with the appropriate units. With the jumper cables attached, in which direction current passes through the dead battery?
The amount of current that the good battery alone can drive through the starter motor depends on the specific battery and starter motor used, but it is typically around 100-200 amps. Therefore, the current passes through the dead battery in the opposite direction of its normal operation.
The dead battery alone is not able to drive any current through the starter motor because its internal resistance is too high.
With the jumper cables attached, the current passing through the starter motor is the sum of the current provided by both batteries. Assuming both batteries are fully charged and in good condition, the total current could be up to 400 amps or more.
With the jumper cables attached, the dead battery will receive some of the current from the good battery, but the amount depends on the resistance of the dead battery. Assuming the resistance is not too high, the dead battery could receive up to several hundred amps of current.
With the jumper cables attached, current flows from the good battery through the jumper cables, through the dead battery, and then back through the other jumper cable to the starter motor.
1. How much current could the good battery alone drive through the starter motor?
Assuming the good battery has a voltage of 12 V, and the starter motor has a resistance (R_motor), you can use Ohm's Law to find the current:
I = V / R_motor
where I is the current, V is the voltage, and R_motor is the resistance of the starter motor.
2. How much current is the dead battery alone able to drive through the starter motor?
Since the dead battery has a high internal resistance (R_dead_battery) due to chemical reactions, its voltage drops, and it cannot provide sufficient current. We can still use Ohm's Law to calculate the current:
I = V / (R_motor + R_dead_battery)
3. With the jumper cables attached, how much current passes through the starter motor?
When the jumper cables connect the good battery to the dead battery and the starter motor, the total resistance in the circuit is reduced. Let's assume the good battery's internal resistance is R_good_battery, and the resistance of the jumper cables is negligible. Now, the equivalent resistance is given by:
R_eq = (R_good_battery * R_dead_battery) / (R_good_battery + R_dead_battery)
So, the current through the starter motor with jumper cables is:
I = V / (R_motor + R_eq)
4. With the jumper cables attached, how much current passes through the dead battery?
The current passing through the dead battery can be found using Kirchhoff's Current Law, which states that the sum of currents entering a junction equals the sum of currents leaving the junction. Since the dead battery is connected in parallel with the good battery, the current passing through the dead battery is the same as the current passing through the good battery.
5. With the jumper cables attached, in which direction current passes through the dead battery?
Since the good battery is providing current to start the engine and charge the dead battery, the current will flow from the good battery to the dead battery, in the direction opposite to the current flow when the dead battery was functioning normally.
Remember to express all current values in Amperes (A) as the appropriate units.
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During the spin cycle the wash machine that cloths stick to the outer wall the barrel as it spins at a rate as high as 1950 rpm the radius of the barrel inside the wash machine is 0.5 m what is the speed of the clothes as a spin in the barrel?
The linear speed of the clothes as a spin in the barrel is 102.1 m/s.
What is the linear speed of the clothes?
The linear speed of the clothes is the measure of the change of displacement of the clothes with time.
Mathematically, the formula for linear speed is given as;
v = ωr
where;
v is the linear speed of the clothesω is the angular speed of the clothesr is the radius of the barrelThe angular speed of the wash machine is given as;
ω = 1950 rpm = 1950 rev/min x 2π rad/rev x 1 min/60 s = 204.2 rad/s
v = 204.2 rad/s x 0.5 m
v = 102.1 m/s
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a sample o aluminum is put in 10.5 mL of water. if the water rises to 13.5 mL when the aluminum is added, what is the density of the aluminum if it has a mass of 8.1 g
Answer:
The answer is 2.7 g/mLExplanation:
The density of a substance can be found by using the formula
\(density = \frac{mass}{volume} \\ \)
volume = final volume of water - initial volume of water
volume = 13.5 - 10.5 = 3 mL
From the question we have
\(density = \frac{8.1}{3} \\ \)
We have the final answer as
2.7 g/mLHope this helps you
can you help me with some of these questions
Answer:
well u better check the quality of the attachment, first.
all I can see is printer, house, red car and cyan blue bar sadly
Help with these please
Answer:
I'll just give short and simple explanation .
Explanation:
when the distance between the masses are doubled but the masses remain the same then,
the gravitational force between two masses decrease by four times when the distance between them is doubled.
hope this helped you
any confusion then comment it.
Convert the following temperatures.
a. 75 K to degrees Fahrenheit
b. 96°F to degrees Celsius
A solid right circular cylinder of a substance has a radius 10. 0 cm and a height 12. 0 cm. The mass of the cylinder is 4. 00 kg. What is the density of the substance?
The density of the substance is 1.06 g/cm³.
What is density?The mass-to-volume ratio of a substance is known as its density.
It is represented as
Density = Mass/Volume
Given,
Radius = 10 cm
Height = 12 cm
Mass = 4 kg = 4000 g
We know that the volume(V) of a solid right circular cylinder is πr²h.
Putting the given values, we get
V = (22/7)(10)²(12), {π = 22/7}
V = (22×1200)/7
V = 3771.4 cm³
Now substituting the values of mass and volume in the formula for density,
Density = 4000/3771.4 g/cm³
Density = 1.06 g/cm³
Therefore, the density of the substance is 1.06 g/cm³.
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How does a sound wave transfer energy to your ears ?
Answer:
A. Particles in air move in circles as the wave moves forward.
B. Particles in air move forward but not backward as the wave moves
forward.
C. Particles in air move up and down as the wave moves forward.
✔ D. Particles in air move forward and backward as the wave moves
forward.
Explanation:
The waves transfer energy from the source of the sound, e.g. a drum, to its surroundings. Your ear detects sound waves when vibrating air particles cause your ear drum to vibrate. The bigger the vibrations the louder the sound.
Answer:
Sound waves travel at 342 m/s through the air and faster through liquids and solids. The waves transfer energy from the source of the sound, e.g. a drum, to its surroundings. your ear detects sound waves when vibrating air particles cause your eardrum to vibrate. The bigger vibrations the louder the sound.
Explanation:
Part A
The initial velocity of a car moving along a straight path was 0 meters/second. After 10 seconds, it reached a velocity of 25 meters/second.
Calculate the car's average acceleration during this time period.
Answer:
2.5 m/s²
Explanation:
Using the formula, v = u + at ( v = Final velocity; u = Initial velocity; t = Time; a = Acceleration)
25 = 0 + 10a
a = 25/10 = 2.5 m/s²