# Form the differential equation of the family of curves represented `c(y + c)^2 = x^3`, where c is a parameter.

Updated On: 13-8-2020

352.7 k+

17.6 k+

Answer

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View AllFrom the differential equation for the family of the curves

a^(2)=(x-c)^(3),

where c is a parameter.

Very Important Questions

In Fig. 4.143,

/_A=/_C E D

, prove that

C A B∼ C E D

. Also, find the value of

x

. (FIGURE)

In Fig. 4.143,

/_A=/_C E D

, prove that

C A B∼ C E D

. Also, find the value of

x

. (FIGURE)

Factorize :

p^3(q-r)^3+q^3(r-p)^3+r^3(p-q)^3

In

NO_(3)^(-)

ion, the number of bond pairs and lone pairs of electrons on nitrogen atom are <br> Thinking process <br> To solve this sequence we must know the structure of

NO_(3)^(-)

ion i.e, <br> <img src="https://d10lpgp6xz60nq.cloudfront.net/physics_images/ARH_NCERT_EXE_CHM_XI_C04_S01_006_Q01.png" width="80%"> <br> Then, cound the bond pairs and lone pairs of electron on nitrogen.

Fungicides and antibiotics are chemicals that

Fungicides and antibiotics are chemicals that

Two kingdom system of classification/artificial sexual system of classification was proposed by a Swedish Biologist

If

A

and

B

are square matrices of order

n

, then prove that

A

and

B

will commute iff

A-lambda\ I

and

B-lambda\ I

commute for every scalar

lambda

If

A

and

B

are square matrices of order

n

, then prove that

A

and

B

will commute iff

A-lambda\ I

and

B-lambda\ I

commute for every scalar

lambda

If

A

and

B

are square matrices of order

n

, then prove that

A

and

B

will commute iff

A-lambda\ I

and

B-lambda\ I

commute for every scalar

lambda

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Formation Of Differential Equations

Form the differential equation of the family of curves represented

c(y + c)^2 = x^3

, where c is a parameter.

Find the differential equation that represents the family of all parabolas having their axis of symmetry with the x-axis.

Solution; general solution and particular solution

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