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Monday, 15 February 2021

python snake game .....


 import pygame

pygame.init()

dis=pygame.display.set_mode((400,300))

pygame.display.update()

pygame.quit()

quit()

import pygame

pygame.init()

dis=pygame.display.set_mode((400,300))

pygame.display.update()

pygame.display.set_caption('Snake game by Edureka')

game_over=False

while not game_over:

    for event in pygame.event.get():

        print(event)   #prints out all the actions that take place on the screen

 

pygame.quit()

quit()

import pygame

pygame.init()

dis=pygame.display.set_mode((400,300))

pygame.display.update()

pygame.display.set_caption('Snake game by Edureka')

game_over=False

while not game_over:

    for event in pygame.event.get():

        if event.type==pygame.QUIT:

            game_over=True

 

pygame.quit()

quit()

import pygame

pygame.init()

dis=pygame.display.set_mode((400,300))

 

pygame.display.set_caption('Snake game by Edureka')

 

blue=(0,0,255)

red=(255,0,0)

 

game_over=False

while not game_over:

    for event in pygame.event.get():

        if event.type==pygame.QUIT:

            game_over=True

    pygame.draw.rect(dis,blue,[200,150,10,10])

    pygame.display.update()

pygame.quit()

quit()

import pygame

 

pygame.init()

 

white = (255, 255, 255)

black = (0, 0, 0)

red = (255, 0, 0)

 

dis = pygame.display.set_mode((800, 600))

pygame.display.set_caption('Snake Game by Edureka')

 

game_over = False

 

x1 = 300

y1 = 300

 

x1_change = 0       

y1_change = 0

 

clock = pygame.time.Clock()

 

while not game_over:

    for event in pygame.event.get():

        if event.type == pygame.QUIT:

            game_over = True

        if event.type == pygame.KEYDOWN:

            if event.key == pygame.K_LEFT:

                x1_change = -10

                y1_change = 0

            elif event.key == pygame.K_RIGHT:

                x1_change = 10

                y1_change = 0

            elif event.key == pygame.K_UP:

                y1_change = -10

                x1_change = 0

            elif event.key == pygame.K_DOWN:

                y1_change = 10

                x1_change = 0

 

    x1 += x1_change

    y1 += y1_change

    dis.fill(white)

    pygame.draw.rect(dis, black, [x1, y1, 10, 10])

 

    pygame.display.update()

 

    clock.tick(30)

 

pygame.quit()

quit()

import pygame

import time

pygame.init()

 

white = (255, 255, 255)

black = (0, 0, 0)

red = (255, 0, 0)

 

dis_width = 800

dis_height  = 600

dis = pygame.display.set_mode((dis_width, dis_width))

pygame.display.set_caption('Snake Game by Edureka')

 

game_over = False

 

x1 = dis_width/2

y1 = dis_height/2

 

snake_block=10

 

x1_change = 0

y1_change = 0

 

clock = pygame.time.Clock()

snake_speed=30

 

font_style = pygame.font.SysFont(None, 50)

 

def message(msg,color):

    mesg = font_style.render(msg, True, color)

    dis.blit(mesg, [dis_width/2, dis_height/2])

 

while not game_over:

    for event in pygame.event.get():

        if event.type == pygame.QUIT:

            game_over = True

        if event.type == pygame.KEYDOWN:

            if event.key == pygame.K_LEFT:

                x1_change = -snake_block

                y1_change = 0

            elif event.key == pygame.K_RIGHT:

                x1_change = snake_block

                y1_change = 0

            elif event.key == pygame.K_UP:

                y1_change = -snake_block

                x1_change = 0

            elif event.key == pygame.K_DOWN:

                y1_change = snake_block

                x1_change = 0

 

    if x1 >= dis_width or x1 < 0 or y1 >= dis_height or y1 < 0:

        game_over = True

 

    x1 += x1_change

    y1 += y1_change

    dis.fill(white)

    pygame.draw.rect(dis, black, [x1, y1, snake_block, snake_block])

 

    pygame.display.update()

 

    clock.tick(snake_speed)

 

message("You lost",red)

pygame.display.update()

time.sleep(2)

 

pygame.quit()

quit()

import pygame

import time

import random

 

pygame.init()

 

white = (255, 255, 255)

black = (0, 0, 0)

red = (255, 0, 0)

blue = (0, 0, 255)

 

dis_width = 800

dis_height = 600

 

dis = pygame.display.set_mode((dis_width, dis_height))

pygame.display.set_caption('Snake Game by Edureka')

 

clock = pygame.time.Clock()

 

snake_block = 10

snake_speed = 30

 

font_style = pygame.font.SysFont(None, 30)

 

 

def message(msg, color):

    mesg = font_style.render(msg, True, color)

    dis.blit(mesg, [dis_width/3, dis_height/3])

 

 

def gameLoop():  # creating a function

    game_over = False

    game_close = False

 

    x1 = dis_width / 2

    y1 = dis_height / 2

 

    x1_change = 0

    y1_change = 0

 

    foodx = round(random.randrange(0, dis_width - snake_block) / 10.0) * 10.0

    foody = round(random.randrange(0, dis_width - snake_block) / 10.0) * 10.0

 

    while not game_over:

 

        while game_close == True:

            dis.fill(white)

            message("You Lost! Press Q-Quit or C-Play Again", red)

            pygame.display.update()

 

            for event in pygame.event.get():

                if event.type == pygame.KEYDOWN:

                    if event.key == pygame.K_q:

                        game_over = True

                        game_close = False

                    if event.key == pygame.K_c:

                        gameLoop()

 

        for event in pygame.event.get():

            if event.type == pygame.QUIT:

                game_over = True

            if event.type == pygame.KEYDOWN:

                if event.key == pygame.K_LEFT:

                    x1_change = -snake_block

                    y1_change = 0

                elif event.key == pygame.K_RIGHT:

                    x1_change = snake_block

                    y1_change = 0

                elif event.key == pygame.K_UP:

                    y1_change = -snake_block

                    x1_change = 0

                elif event.key == pygame.K_DOWN:

                    y1_change = snake_block

                    x1_change = 0

 

        if x1 >= dis_width or x1 < 0 or y1 >= dis_height or y1 < 0:

            game_close = True

 

        x1 += x1_change

        y1 += y1_change

        dis.fill(white)

        pygame.draw.rect(dis, blue, [foodx, foody, snake_block, snake_block])

        pygame.draw.rect(dis, black, [x1, y1, snake_block, snake_block])

        pygame.display.update()

 

        if x1 == foodx and y1 == foody:

            print("Yummy!!")

        clock.tick(snake_speed)

 

    pygame.quit()

    quit()

 

 

gameLoop()

import pygame

import time

import random

 

pygame.init()

 

white = (255, 255, 255)

yellow = (255, 255, 102)

black = (0, 0, 0)

red = (213, 50, 80)

green = (0, 255, 0)

blue = (50, 153, 213)

 

dis_width = 600

dis_height = 400

 

dis = pygame.display.set_mode((dis_width, dis_height))

pygame.display.set_caption('Snake Game by Edureka')

 

clock = pygame.time.Clock()

 

snake_block = 10

snake_speed = 15

 

font_style = pygame.font.SysFont("bahnschrift", 25)

score_font = pygame.font.SysFont("comicsansms", 35)

 

def our_snake(snake_block, snake_list):

    for x in snake_list:

        pygame.draw.rect(dis, black, [x[0], x[1], snake_block, snake_block])

 

 

def message(msg, color):

    mesg = font_style.render(msg, True, color)

    dis.blit(mesg, [dis_width / 6, dis_height / 3])

 

 

def gameLoop():

    game_over = False

    game_close = False

 

    x1 = dis_width / 2

    y1 = dis_height / 2

 

    x1_change = 0

    y1_change = 0

 

    snake_List = []

    Length_of_snake = 1

 

    foodx = round(random.randrange(0, dis_width - snake_block) / 10.0) * 10.0

    foody = round(random.randrange(0, dis_height - snake_block) / 10.0) * 10.0

 

    while not game_over:

 

        while game_close == True:

            dis.fill(blue)

            message("You Lost! Press C-Play Again or Q-Quit", red)

 

            pygame.display.update()

 

            for event in pygame.event.get():

                if event.type == pygame.KEYDOWN:

                    if event.key == pygame.K_q:

                        game_over = True

                        game_close = False

                    if event.key == pygame.K_c:

                        gameLoop()

 

        for event in pygame.event.get():

            if event.type == pygame.QUIT:

                game_over = True

            if event.type == pygame.KEYDOWN:

                if event.key == pygame.K_LEFT:

                    x1_change = -snake_block

                    y1_change = 0

                elif event.key == pygame.K_RIGHT:

                    x1_change = snake_block

                    y1_change = 0

                elif event.key == pygame.K_UP:

                    y1_change = -snake_block

                    x1_change = 0

                elif event.key == pygame.K_DOWN:

                    y1_change = snake_block

                    x1_change = 0

 

        if x1 >= dis_width or x1 < 0 or y1 >= dis_height or y1 < 0:

            game_close = True

        x1 += x1_change

        y1 += y1_change

        dis.fill(blue)

        pygame.draw.rect(dis, green, [foodx, foody, snake_block, snake_block])

        snake_Head = []

        snake_Head.append(x1)

        snake_Head.append(y1)

        snake_List.append(snake_Head)

        if len(snake_List) > Length_of_snake:

            del snake_List[0]

 

        for x in snake_List[:-1]:

            if x == snake_Head:

                game_close = True

 

        our_snake(snake_block, snake_List)

 

 

        pygame.display.update()

 

        if x1 == foodx and y1 == foody:

            foodx = round(random.randrange(0, dis_width - snake_block) / 10.0) * 10.0

            foody = round(random.randrange(0, dis_height - snake_block) / 10.0) * 10.0

            Length_of_snake += 1

 

        clock.tick(snake_speed)

 

    pygame.quit()

    quit()

 

 

gameLoop()


Tuesday, 22 December 2020

function overloading

 


# include<iostream>

using namespace std;

int area(int side)
{
 return side*side;
}

int area(int l , int b)
{
 return l*b;
}

int main()
{

        int (*p1)(int);
        int (*p2)(int,int);

        p1=area;
        p2=area;

        cout<<"Address of area(int)="<<p1<<endl;
        cout<<"Address of area(int,int)="<<p2<<endl;

        cout<<"\n";

        cout<<"Invoking area(int) via p1 "<<p1(20)<<endl;
        cout<<"Invoking area(int,int) via p2 "<<p2(10,20);

        return 0;
}



Hierarchical Inheritance Example.


👇👆👆👆👆👇👇👇👇👇


#include<iostream>


using namespace std;


class Shape

{

protected:

 float width, height;


public:

 void set_data (float a, float b)

 {

  width = a;

  height = b;

 }

};


//inheriting Shape class

class Rectangle: public Shape

{

public:

 float area ()

 {

  return (width * height);

 }

};


//inheriting Shape class

class Triangle: public Shape

{

    public:

        float area ()

        {

            return (width * height / 2);

        }

};


int main ()

{

 Rectangle rect;

 Triangle tri;


 rect.set_data (5,3);

 tri.set_data (2,5);


 cout <<"Area of Rectangle : " <<rect.area() << endl;

 cout <<"Area of Triangle : "<< tri.area() << endl;


 return 0;

}


 

Hybrid Inheritance Example.

 

 

#include<iostream>

using namespace std;

class A
{
    public:
        int l;
        void len()
        {
           cout<<"Lenght : ";
           cin>>l;
        }
};

class B : public A
{
    public:
        int b,c;
       void l_into_b()
       {
           len();
           cout<<"Breadth : ";
           cin>>b;
           c=b*l;
       }
};

class C
{
    public:
        int h;
        void height()
        {
           cout<<"Height : ";
           cin>>h;
        }
};

//Hybrid Inheritance Level
class D : public B , public C
{
    public:
        int res;
        void result()
        {
           l_into_b();
           height();
           res=h*c;

           cout<<"\n";
           cout<<endl<<"Result (l*b*h) : "<<res;
        }
};

int main()
{
    D dObj;
    dObj.result();

    return 0;
}



Merge singly linked list.


#include <iostream>
#include <cstdlib>

using namespace std;

typedef struct linked_list
{
    int data;
    struct linked_list *next;
}
Linked_list;

//for adding node
int add_node(Linked_list **head, int d)
{
    Linked_list *l = new Linked_list;
    if(l == NULL) return 0;

    Linked_list *t = *head;
    l->data = d;
    l->next = NULL;

    if(*head == NULL)
    {
        *head = l;
        return 1;
    }

    while(t->next != NULL)
    {
        t = t->next;
    }

    t->next = l;

    return 1;
}

//print the value which are there in linked list
void print_list(Linked_list *head)
{
    while(head != NULL)
    {
        cout << head->data << " ";
        head = head->next;
    }
    cout << endl;
}

void del_list(Linked_list *head)
{
    while(head != NULL)
    {
        Linked_list *t = head ->next;
        delete head;
        head = t;
    }
}

Linked_list * merge_list(Linked_list *l1, Linked_list *l2)
{
    Linked_list *h = l1, *r = l1, t;

    if(l1 == NULL)
    {
        return l2;
    }

    if(l2 == NULL)
    {
        return l1;
    }

    if(l1->data < l2->data)
    {
        h = r = l1;
        l1 = l1->next;
    }
    else
    {
        h = r = l2;
        l2 = l2->next;
    }

    while(l1->next != NULL && l2->next != NULL)
    {
        if(l1->data < l2->data)
        {
            r->next = l1;
            l1 = l1->next;
            r = r->next;
        }
        else
        {
            r->next = l2;
            l2 = l2->next;
            r = r->next;
        }
    }

    if(l1->next != NULL)
    {
        r->next = l1;
    }

    if(l2->next != NULL)
    {
        r->next = l2;
    }

    return h;
}

//declaration of main method
int main(int argc, char* argv[])
{
    Linked_list *l1 = NULL;
    Linked_list *l2 = NULL;

    for(int i = 0; i < 10; i ++)
    {
        add_node(&l1, i * 3);
    }

    print_list(l1);//it will print first linked list

    for(int i = 0; i < 10; i ++)
    {
        add_node(&l2, i * 7);
    }

    print_list(l2); //it will print 2nd linked list

    Linked_list *h = merge_list(l1, l2);

    print_list(h);

    del_list(h);

 return 0;
}








 

method of overloading

 

//program to show how method overloading works


# include<iostream>


using namespace std;


//area method with one parameter

int area(int side)

{

 return side*side;

}


//area method with two parameter

int area(int l , int b)

{

 return l*b;

}


int main()

{


 int (*para1)(int);

 int (*para2)(int,int);


 para1=area;

 para2=area;


 cout<<"Address of area(int) : "<<(unsigned int)para1<<endl;

 cout<<"Address of area(int,int) : "<<(unsigned int)para2<<endl;


 cout<<"Invoking area(int) via para1 : "<<para1(20)<<endl;

 cout<<"Invoking area(int,int) via para2 : "<<para2(10,20);

}



Monday, 21 December 2020

Minus Operator overloading

 


#include<iostream>


using namespace std;


class MinusOperatorOverloading

{

    int x,y,z;


    public:

    void get_data(int a,int b,int c)

    {

        x = a;

        y = b;

        z = c;

    }


    void operator -()

    {

        x = x - 10;

        y = y - 10;

        z = z - 10;

    }


    void display()

    {

        cout<<"\nx: "<<x;

        cout<<"\ny: "<<y;

        cout<<"\nz: "<<z;

    }

};


int main()

{

    MinusOperatorOverloading oo;

    oo.get_data(53,73,93);

    cout<<"Before overloading:";

    oo.display();


    -oo;


    cout<<"\n\n";

    cout<<"After overloading:";


    oo.display();


    return 0;

}




Multilevel Inheritance Example.


 Multilevel Inheritance Example. 


#include<iostream>
#include<string.h>

using namespace std;

class student
{
    private:
      int rl;
      char nm[20];

    public:
       void read();
       void display();
};

class marks : public student
{
    protected:
      int s1;
      int s2;
      int s3;

    public:
       void getmarks();
       void putmarks();
};

class result : public marks
{
    private:
      int t;
      float p;
      char div[10];

    public:
       void process();
       void printresult();
};

void student::read()
{
    cout<<"Enter Roll no. : ";
    cin>>rl;

    cout<<"Enter Name : ";
    cin>>nm;
}

void student:: display()
{
    cout <<"\nRoll no. : "<<rl<<endl;
    cout<<"Name : "<<nm<<endl;

    cout<<"\n";
}

void marks ::getmarks()
{
    cout<<"Enter marks for 3  subjects : "<<endl;
    cin>>s1>>s2>>s3;
}

void marks ::putmarks()
{
    cout<<"Subject 1 :"<<s1<<endl;
    cout<<"Subject 2 : "<<s2<<endl;
    cout<<"Subject 3 : "<<s3<<endl;
}

void result::process()
{
    t= s1+s2+s3;
    p = t/3.0;
    p>=60?strcpy(div,"First"):p>=50?strcpy(div, "Second"): strcpy(div,"Third");
}

void result::printresult()
{
    cout<<"Total = "<<t<<endl;

    cout<<"\n";

    cout<<"Percentage  = "<<p<<endl;
    cout<<"Division = "<<div<<endl;
}

int main()
{
    result x;

    x.read();
    x.getmarks();
    x.process();
    x.display();
    x.putmarks();
    x.printresult();

    return 0;
}



. Multiple Inheritance Example.

 

#include <iostream>


using namespace std;


class Area

{

    public:

    float area_calc(float l,float b)

    {

        return l*b;

    }

};


class Perimeter

{

    public:

    float peri_calc(float l,float b)

    {

        return 2*(l+b);

    }

};


//Rectangle class is derived from classes Area and Perimeter.

class Rectangle : private Area, private Perimeter

{

    private:

    float length, breadth;


    public:

    Rectangle() : length(0.0), breadth(0.0) { }


    void get_data( )

    {

        cout<<"Enter length: ";

        cin>>length;


        cout<<"Enter breadth: ";

        cin>>breadth;

    }


    float area_calc()

    {

        //Calls area_calc() of class Area and returns it.

        return Area::area_calc(length,breadth);

    }


    float peri_calc()

    {

        //Calls peri_calc() function of class Perimeter and returns it.

        return Perimeter::peri_calc(length,breadth);

    }

};


int main()

{

    Rectangle r;

    r.get_data();


    cout<<"\n\n";


    cout<<"Area = "<<r.area_calc();

    cout<<"\nPerimeter = "<<r.peri_calc();


    return 0;

}





Arithematic ooprations using class

 

dnyaneshwarchakotkar.bogspot.com

#include <iostream>

using namespace std;


//define class

class operations

{

    //member variables

    public:

        int num1,num2;


    //member function or methods

    public:

       void add()

       {

           cout<<"enter two number for addition : ";

           cin>>num1>>num2;

           cout<<"addition = "<<num1+num2;

           cout<<"\n";

       }


        void sub()

       {

           cout<<"enter two number for subtraction : ";

           cin>>num1>>num2;

           cout<<"addition = "<<num1-num2;

           cout<<"\n";

       }


        void mul()

       {

           cout<<"enter two number for multiplication : ";

           cin>>num1>>num2;

           cout<<"addition = "<<num1*num2;

           cout<<"\n";

       }


        void div()

       {

           cout<<"enter two number for division : ";

           cin>>num1>>num2;

           cout<<"addition = "<<(float)num1/num2;

           cout<<"\n";

       }

};

 int main()

 {

     //creation of object

      operations op1;

      op1.add();

      op1.sub();

      op1.mul();

      op1.div();

      return 0;

 }






if you have more source code in simle way join this blog also do like and get the subsciption of tha blog on dnyaneshwarchakotkar.blolgspot.comm



also share the blog link to your friebnd for study,.....!!!!!


Thursday, 10 September 2020

Sample data in html programming adding tags in the programm.

 <!DOCTYPE html>


<!-- saved from url=(0080)file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html -->


<html>

<head>

<meta http-equiv="Content-Type" content="text/html; charset=windows-1252">


<title>mauli creation</title>


</head>


<body>





<h1>


<form actions="" methods""="">


<input type="text" name="" size"100"="">

<br>

<br>


<input type="text" name="">


</form>

 

</h1>

<h1>




</h1><h1> This is mauli creation , Wellcome....</h1>

<

br>


<br>

<br>

<br>

<ul>


<h2> social media </h2>


    <li><a href="file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html#youtube">youtube section </a>

 </li>

<li>

<a href="file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html#whatsup">

 whatsup section </a>

 </li>

<li><a href="file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html#twitter">

 twitter section </a> 

</li>

<li>

<a href="file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html#facebook">

 facebook section </a> 

</li>

<li><a href="file:///H:/Dnyaneshwars%20study%20material/program%20practice/Html/html6%20.html#instagram"> instagram section </a> </li>


</ul>


<br>

<br>

<br>

<br>

<br>

<br>

<br>

<br>

<br>

<br>

<h4>


<p><a name="youtube"> im the youtube their are lot of video for knolege and many more pepose we can eassily access them in various position .</a></p>

</h4>

<br>

<br>

<br>

<p><a name="whatsup"> whatsup is chatting aplication which is use for various reaso in the world for example bessuness point of view and many more . .</a></p>

<br>




<br>


<br>

<br>


<br>


<br>

<p><a name="twitter"> it is used to blogging perose in the world their are many more people are using this featue inn world the can write his thought to people who follow this.</a></p><br>

<br>

<br>

<br>

<br>

<p><a name="facebook"> it is also used for many pepose they can accesss any where using accessing key and one passawared to every here..</a></p><br>

<br>

<br>

<br>

<br>

<p><a name="instagram"> istagram is a applictio based sofatware which is used for the uploading post in that and by our folling perso theyy acan acces  them at their mbile and see it for the any reason.</a></p>

<br>

<h1> mauli caretion youtube chennel </h1>


<p>&lt; img src = "H:\Dnyaneshwars study material\png images\hruta\dnyanu.jpg "&gt;</p>


<h1> Dnyaneshwar image </h1>


<p><img src="./mauli creation_files/dnyanu.jpg"></p>

<p> Plese click on this text 

<!-- href is used to addd the link on the text or statement tat we written after the likk-->


<a href="http://www.youtube.com/">

mauli creation </a>

<br>

<br>

<br>

<br>

</p><p> also click here 

&lt; a href ="http://www.maulicretion.com/"&gt;

 is that my website .


</p></body></html>👨

Wednesday, 26 August 2020

Html basics a;llll

<!doctype html>

<html>

<head>

<title> mauli creation </title>

</head>

<body>


<input radio"" name="yesorno" >


<h1>

<form actions =""Methods"">

<h1> search bar </h1>

<input type = "text"  name="" size "200" ></br></br>

<h2> our tought </h2>

<input type = "text"  name=" mauli creation">

</form> 

<h1>



<h1> This is mauli creation , Wellcome....</h1>

<br>

<br>

<br>

<br>

<ul>

<h2> social media </h2>

    <li><a href = "#youtube"> youtube section </a> </li>

<li><a href = "#whatsup"> whatsup section </a> </li>

<li><a href = "#twitter"> twitter section </a> </li>

<li><a href = "#facebook"> facebook section </a> </li>

<li><a href = "#instagram"> instagram section </a> </li>

</ul>

<ol>

<h2> social media </h2>

    <li><a href = "#youtube"> youtube section </a> </li>

<li><a href = "#whatsup"> whatsup section </a> </li>

<li><a href = "#twitter"> twitter section </a> </li>

<li><a href = "#facebook"> facebook section </a> </li>

<li><a href = "#instagram"> instagram section </a> </li>

</ol>

<br>

<br>

<br>

<br>

<table>

<h2>

<tr>

    <th> instagram </th>

<th> facebook </th>

<th> twitter </th>

<th> whatsup </th>

<th> youtube </th>

</tr> </h2>

<br>

<tr>

    <th> upload pic </th>

<th> upload videos </th>

<th> blogging </th>

<th> massiging </th>

<th> videos all over the world </th>

</tr>

<br>

<tr>

    <th> upload videos </br></th>

<th> upload images </th>

<th> self mat </th>

<th> status </th>

<th> chennels </th>

</tr>

</table>

<br>

<br>

<br>

<br>

<br>

<br>

<h4>

<p><a name = "youtube"> im the youtube their are lot of video for knolege and many more pepose we can eassily access them in various position .</a></p>

</h4>

<br>

<br>

<br>

<p><a name = "whatsup"> whatsup is chatting aplication which is use for various reaso in the world for example bessuness point of view and many more . .</a></p><br>

<br>

<br>

<br>

<br>

<br>

<p><a name = "twitter"> it is used to blogging perose in the world their are many more people are using this featue inn world the can write his thought to people who follow this.</a></p><br>

<br>

<br>

<br>

<br>

<p><a name = "facebook"> it is also used for many pepose they can accesss any where using accessing key and one passawared to every here..</a></p><br>

<br>

<br>

<br>

<br>

<p><a name = "instagram"> istagram is a applictio based sofatware which is used for the uploading post in that and by our folling perso theyy acan acces  them at their mbile and see it for the any reason.</a></p><br>

<h1> mauli caretion youtube chennel </h1>

<p>< img src = "H:\Dnyaneshwars study material\png images\hruta\dnyanu.jpg" ></p>

<h1> Dnyaneshwar image </h1>

<p><img src= "H:\Dnyaneshwars study material\png images\hruta\dnyanu.jpg" width ="360" height="600"></p>

<p> Plese click on this text 

<!-- href is used to addd the link on the text or statement tat we written after the likk-->

<a href="http://www.youtube.com/">

mauli creation </a>

</br>

</br>

</br>

</br>


<p> also click here 

< a href ="http://www.maulicretion.com/">

 is that my website .</a> 


<title> new page 1</title>

<head><p> <img src="mauli creation image logo.png" width="120" height="120" name="mauli creation" ><h1>

<a href="maauli creation>"></a>

audio and video document .</h1></head></p><br>

<p> <h2>Please click here to join the my youtube chennel.</h2></p>


<br><br></br></br></br></br></br>





<body>

<audio controls  autoplay loop draggable="true" >

<source src = "Dard Dilo Ke.mp3" >

</audio>


<br><br><br><br><br><br><br></br></br></br></br></br>

&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;<video controls autoplay loop  draggable="true" width="720" height="360"><br></br></br></br></br><br><br><br><br><br><br><br></br></br></br></br></br>

<source src="hruta new status1.mp4"  >

</video>


<img src="mauli creation image logo.png" controls draggable="true" width="360" height="360">

<body>

<color always="black">

<form actions =""Methods"">

<!-- wew caan add here comment to know what we are typing and writting-->


Your First name :

<input type = "text"  name="" size'100'></br></br>

Your Second name :

<input type = "text"  name="" size"100"></br></br>

Your Last name :

<input type = "text"  name="" size"100"></br></br>

 tell about yourself in brif:</br>

 <textarea rows="10" cols = "100"></textarea>

 </br>

<input type = "Submit"  value ="Submit" >

</br>


Selet atleast one of the option given below:</br>

yes:

<input type = "radio" name = "yesorno" value="">No:

<input type = "radio" name = "yesorno" value="">Both:

<input type = "radio" name = "yesorno" value="">None:

<input type = "radio" name = "yesorno" value=""> &nbsp&nbsp<input type = "Submit"  value ="Submit" >

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

Selet atleast one of the option given below:</br>

&nbsp&nbsp yes:&nbsp&nbsp

<input type = "box" name = "yesorno" color="red" value="">&nbsp&nbsp No: &nbsp&nbsp

<input type = "box" name = "yesorno" value="">&nbsp&nbsp Both: &nbsp&nbsp

<input type = "box" name = "yesorno" value="">&nbsp&nbsp None: &nbsp&nbsp

<input type = "box" name = "yesorno" value="">&nbsp&nbsp&nbsp<input type = "submit"  value ="Submit" >

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

Select two option given below:</br>

yes:

<input type = "radio" name = "yeselseno" value="">No:

<input type = "radio" name = "yesorno" value="">Both:

<input type = "radio" name = "yesorno" value="">None:

<input type = "radio" name = "yesifelseno" value="">&nbsp&nbsp&nbsp<input type = "Submit"  value ="Submit" >

</br>

</form> 

</br>

<br>

<br>

<form type ="" method ="" >

Enter the number from 0 to 50 for your age  : 

<input type = "number" min="0" max ="50"> 

</form>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br>

<br>

</br>

<br>

<br><form>

<input type = "Submit"  value ="submit" >&nbsp&nbsp&nbsp&nbsp&nbsp&nbsp<input type = "radio"  value ="open in youtube chennel click here" >

<br></form>



</color>

</body>


<head>  <h1>boldness and italic ness in the program</h1> </head>

<title>new page 1</title>

<body>

<input type="text"  value="box" width="20" height="100">&nbsp;&nbsp;&nbsp;<input type="submit" name="search" width="50" height="10"><br></br>



&nbsp;&nbsp;&nbsp;<img 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" width="100" height="100"  >&nbsp;&nbsp;&nbsp;<img 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" width="100" height="100"  >&nbsp;&nbsp;&nbsp;<img src="https://images.thequint.com/thequint%2F2019-09%2F9986c216-dce0-4292-b446-e63b4369e372%2FiStock_668374086.jpg?rect=0%2C0%2C3872%2C2178&auto=format%2Ccompress&format=webp&w=480&dpr=2.6" width="100" height="100"  >&nbsp;&nbsp;&nbsp;&nbsp;<img src="https://images.thequint.com/thequint%2F2019-09%2F9986c216-dce0-4292-b446-e63b4369e372%2FiStock_668374086.jpg?rect=0%2C0%2C3872%2C2178&auto=format%2Ccompress&format=webp&w=480&dpr=2.6" width="100" height="100"  >&nbsp;&nbsp;&nbsp;<img src="https://images.thequint.com/thequint%2F2019-09%2F9986c216-dce0-4292-b446-e63b4369e372%2FiStock_668374086.jpg?rect=0%2C0%2C3872%2C2178&auto=format%2Ccompress&format=webp&w=480&dpr=2.6" width="100" height="100"  >&nbsp;&nbsp;<img src="https://images.thequint.com/thequint%2F2019-09%2F9986c216-dce0-4292-b446-e63b4369e372%2FiStock_668374086.jpg?rect=0%2C0%2C3872%2C2178&auto=format%2Ccompress&format=webp&w=480&dpr=2.6" width="100" height="100"  >&nbsp;&nbsp;&nbsp;<img 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" width="100" height="100"  >&nbsp;&nbsp;

<input type="submit" name="Download">


<p> <h2>BOLD<sup>NESS</sup></h2></p>

<p> we put the text and many more <b>thing in the web page as our wish </b></p>

<p> here we use for boldness<strong> the strong atribute or tag</strong> </p>


<P><h2>ITALIC<sub>ness</sub></h2></p>

<p> also &copy;&lt;&gt;&#63; we can make&#8482; text as <i>italic by using i tag for italic text &amp</i>

<p> also we by &nbsp;&nbsp;&nbsp&nbsp; using the <em>em tag we can make text italic.</em></p>


<iframe frameborder ="1" width="1000" height="1000" src="html5.html" name="ouriframe" id="ouriframe">

<br>

<iframe frameborder ="1" width="1000" height="1000" src="html6.html" name="ouriframe" id="ouriframe">


<br>

<p><img src= "H:\Dnyaneshwars study material\png images\hruta\dnyanu.jpg"></p>

<p> Plese click on this text 

<!-- href is used to addd the link on the text or statement tat we written after the likk-->

<a href="" target="ouriframe">

mauli creation </a>


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