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المرجع الالكتروني للمعلوماتية

Grammar

Tenses

Present

Present Simple

Present Continuous

Present Perfect

Present Perfect Continuous

Past

Past Simple

Past Continuous

Past Perfect

Past Perfect Continuous

Future

Future Simple

Future Continuous

Future Perfect

Future Perfect Continuous

Parts Of Speech

Nouns

Countable and uncountable nouns

Verbal nouns

Singular and Plural nouns

Proper nouns

Nouns gender

Nouns definition

Concrete nouns

Abstract nouns

Common nouns

Collective nouns

Definition Of Nouns

Animate and Inanimate nouns

Nouns

Verbs

Stative and dynamic verbs

Finite and nonfinite verbs

To be verbs

Transitive and intransitive verbs

Auxiliary verbs

Modal verbs

Regular and irregular verbs

Action verbs

Verbs

Adverbs

Relative adverbs

Interrogative adverbs

Adverbs of time

Adverbs of place

Adverbs of reason

Adverbs of quantity

Adverbs of manner

Adverbs of frequency

Adverbs of affirmation

Adverbs

Adjectives

Quantitative adjective

Proper adjective

Possessive adjective

Numeral adjective

Interrogative adjective

Distributive adjective

Descriptive adjective

Demonstrative adjective

Pronouns

Subject pronoun

Relative pronoun

Reflexive pronoun

Reciprocal pronoun

Possessive pronoun

Personal pronoun

Interrogative pronoun

Indefinite pronoun

Emphatic pronoun

Distributive pronoun

Demonstrative pronoun

Pronouns

Pre Position

Preposition by function

Time preposition

Reason preposition

Possession preposition

Place preposition

Phrases preposition

Origin preposition

Measure preposition

Direction preposition

Contrast preposition

Agent preposition

Preposition by construction

Simple preposition

Phrase preposition

Double preposition

Compound preposition

prepositions

Conjunctions

Subordinating conjunction

Correlative conjunction

Coordinating conjunction

Conjunctive adverbs

conjunctions

Interjections

Express calling interjection

Phrases

Sentences

Clauses

Part of Speech

Grammar Rules

Passive and Active

Preference

Requests and offers

wishes

Be used to

Some and any

Could have done

Describing people

Giving advices

Possession

Comparative and superlative

Giving Reason

Making Suggestions

Apologizing

Forming questions

Since and for

Directions

Obligation

Adverbials

invitation

Articles

Imaginary condition

Zero conditional

First conditional

Second conditional

Third conditional

Reported speech

Demonstratives

Determiners

Direct and Indirect speech

Linguistics

Phonetics

Phonology

Linguistics fields

Syntax

Morphology

Semantics

pragmatics

History

Writing

Grammar

Phonetics and Phonology

Semiotics

Applied Linguistics

Reading Comprehension

Elementary

Intermediate

Advanced

Teaching Methods

Teaching Strategies

Assessment

قم بتسجيل الدخول اولاً لكي يتسنى لك الاعجاب والتعليق.

FREQUENCY

المؤلف:  Parviz Birjandi

المصدر:  AN INTRODUCTION TO PHONETICS

الجزء والصفحة:  C7-P155

2026-07-29

30

+

-

20

FREQUENCY

Sounds can be produced at a desired frequency by different methods. Sirens emit sound by means of an air blast interrupted by a toothed wheel with 44 teeth. The wheel rotates at 10 revolutions per second to produce 440 interruptions in the air stream every second. Similarly, hitting the A above middle C on a piano causes a string to vibrate at 440 Hz (i.e., fundamental frequency). The sound of the speaker and that of the piano string at the same frequency are different in quality, but correspond closely in pitch. The next higher A on the piano, the note one octave above, has a frequency of 880 Hz, exactly twice as high. Similarly, the notes one and two octaves below have frequencies of 220 and 110 Hz, respectively. Thus, by definition, an octave is the interval between any two notes whose frequencies are in a two-to-one ratio (see figure 7.4).

Figure 7.4: Sound waves with different octaves (Reprinted from Encyclopedia Encarta 2004 © 1993-2003 Microsoft Corporation).

 We perceive frequency as “higher” or “lower” sounds. In the figure above, the frequency of each higher wave is double that of the one below, producing the same note at different frequencies, from 110.00 Hz to 880.00 Hz. Waves propagate at both higher and lower frequencies, but humans are unable to hear them outside of a relatively narrow range (between 15 Hz and 20,000 Hz).

Frequencies of oscillating objects can cover a wide range of values. The tremors of earthquakes may have a frequency of less than one, while the rapid electromagnetic oscillations of gamma rays may have frequencies of 1020 or more. In almost all forms of mechanical vibration, a relationship exists between frequency and the physical dimensions of the vibrating object. Thus, for example, the time required by a pendulum to make one complete swing is partly determined by the length of the pendulum; the frequency or speed of vibration of a string of a musical instrument is partly determined by the length of the string. In each instance, the shorter the object, the higher the frequency of vibration.

 In wave motion of all kinds, the frequency of the wave is usually given in terms of the number of wave crests that pass a given point in a second. The velocity of the wave and its frequency and wavelength are interrelated. The wavelength (the distance between successive wave crests) is inversely proportional to frequency and directly proportional to velocity.

 Frequency is expressed in hertz (Hz); a frequency of one Hz means that there is one cycle or oscillation per second. The unit is named in honor of the German physicist Heinrich Rudolf Hertz, who first demonstrated the nature of electromagnetic wave propagation. Kilohertz (kHz), or thousands of cycles per second, megahertz (MHz), or millions of cycles per second, and gigahertz (GHz), or billions of cycles per second, are employed in describing certain high frequency phenomena, such as radio waves. Radio waves and other types of electromagnetic radiation may be characterized either by their wavelengths, or by their frequencies. Electromagnetic waves of extremely high frequencies, such as light and X rays, are usually described in terms of their wavelength measure, which is often expressed in angstrom units (symbolized as Å meaning hundred-millionths of a cm). An electromagnetic wave that has a wavelength of one Å has a frequency of about three billion GHz.

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